Recent Advancements in Ventilation Systems Used to Decrease Energy Consumption in Buildings—Literature Review
The need for healthy indoor conditions, the energy crisis, and environmental concerns make building ventilation systems very important today. The elements of ventilation systems to reduce energy intensity are constantly the subject of much scientific research. The most recent articles published in t...
Saved in:
Published in | Energies (Basel) Vol. 16; no. 4; p. 1853 |
---|---|
Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Basel
MDPI AG
01.02.2023
|
Subjects | |
Online Access | Get full text |
ISSN | 1996-1073 1996-1073 |
DOI | 10.3390/en16041853 |
Cover
Loading…
Abstract | The need for healthy indoor conditions, the energy crisis, and environmental concerns make building ventilation systems very important today. The elements of ventilation systems to reduce energy intensity are constantly the subject of much scientific research. The most recent articles published in the last three years are analyzed in this paper. Publications focused on the topic of reducing energy consumption in ventilation systems were selected and divided into five key research areas: (1) the aspect of the airtightness of buildings and its importance for the energy consumption, (2) the methods and effects of implementing the concept of demand-controlled ventilation in buildings with different functions, (3) the possibilities of the technical application of decentralized ventilation systems, (4) the use of earth-to-air heat exchangers, (5) the efficiency of exchangers in exhaust air heat-recovery systems. The multitude of innovative technologies and rapid technological advances are reflected in articles that appear constantly and prompt a constant updating of knowledge. This review constitutes a relevant contribution to recognizing current advancements in ventilation systems and may be helpful to many scientists in the field. |
---|---|
AbstractList | The need for healthy indoor conditions, the energy crisis, and environmental concerns make building ventilation systems very important today. The elements of ventilation systems to reduce energy intensity are constantly the subject of much scientific research. The most recent articles published in the last three years are analyzed in this paper. Publications focused on the topic of reducing energy consumption in ventilation systems were selected and divided into five key research areas: (1) the aspect of the airtightness of buildings and its importance for the energy consumption, (2) the methods and effects of implementing the concept of demand-controlled ventilation in buildings with different functions, (3) the possibilities of the technical application of decentralized ventilation systems, (4) the use of earth-to-air heat exchangers, (5) the efficiency of exchangers in exhaust air heat-recovery systems. The multitude of innovative technologies and rapid technological advances are reflected in articles that appear constantly and prompt a constant updating of knowledge. This review constitutes a relevant contribution to recognizing current advancements in ventilation systems and may be helpful to many scientists in the field. |
Audience | Academic |
Author | Dudkiewicz, Edyta Amanowicz, Łukasz Ratajczak, Katarzyna |
Author_xml | – sequence: 1 givenname: Łukasz orcidid: 0000-0002-2903-3805 surname: Amanowicz fullname: Amanowicz, Łukasz – sequence: 2 givenname: Katarzyna orcidid: 0000-0002-6950-8262 surname: Ratajczak fullname: Ratajczak, Katarzyna – sequence: 3 givenname: Edyta orcidid: 0000-0002-6276-5290 surname: Dudkiewicz fullname: Dudkiewicz, Edyta |
BookMark | eNptkdFuFCEUhompibXtjU9A4p3JVtjDDMPlurbaZBOTWr0lLHPYsJmBFZiavfMh-oQ-iXRXo2mEC35O_u_PgfOSnIQYkJBXnF0CKPYWA2-Z4F0Dz8gpV6qdcSbh5B_9glzkvGV1AXAAOCXxFi2GQhf9vQkWx6oz9YF-rcIPpvgY6Od9Ljhm-iVjT0uk79EmNBnpVcC02dNlDHkadwdvRd9Nfuh92OSfPx5WvmAyZUpIb_He4_dz8tyZIePF7_OM3F1f3S0_zlafPtwsF6uZBWBl1qm1ULxVCA1jXSOkqzdusF07aYUwfdOC6RnveucaaBmKzvEOWmBMzecMzsjNMbaPZqt3yY8m7XU0Xh8KMW20ScXbAXWnZNO2wrK5dWLtjHGN5Y_Z6x6cbbBmvT5m7VL8NmEuehunFGr3ei6lEorxRlXX5dG1MTXUBxdLMrbuHkdv66Ccr_WFFMAFl7KrADsCNsWcEzptfTl8eAX9oDnTj1PVf6dakTdPkD8v-4_5F7cApLw |
CitedBy_id | crossref_primary_10_3390_buildings14010028 crossref_primary_10_1016_j_jobe_2023_108034 crossref_primary_10_3390_en16165886 crossref_primary_10_3390_en18020411 crossref_primary_10_1016_j_buildenv_2023_110903 crossref_primary_10_1016_j_buildenv_2023_110947 crossref_primary_10_1002_cli2_70009 crossref_primary_10_3390_en16124634 crossref_primary_10_1016_j_jobe_2024_111606 crossref_primary_10_3390_su16020783 crossref_primary_10_1016_j_energy_2024_132579 crossref_primary_10_3390_resources12090100 crossref_primary_10_1016_j_jobe_2024_111547 crossref_primary_10_1016_j_enbuild_2023_113174 crossref_primary_10_1016_j_egyr_2024_02_011 crossref_primary_10_3390_en16176254 crossref_primary_10_1016_j_heliyon_2024_e32869 crossref_primary_10_1155_2024_6620850 crossref_primary_10_3390_buildings14041077 crossref_primary_10_1088_2515_7620_ace613 crossref_primary_10_3390_en17030656 crossref_primary_10_3390_en16083456 crossref_primary_10_3390_ma17123042 crossref_primary_10_3390_su16072790 crossref_primary_10_3390_en16176370 crossref_primary_10_4028_p_QS2lqy crossref_primary_10_1016_j_enbuild_2024_114338 crossref_primary_10_1088_1755_1315_1380_1_012015 crossref_primary_10_54355_tbus_4_2_2024_0060 crossref_primary_10_1016_j_seta_2024_103862 crossref_primary_10_1016_j_jobe_2024_111713 crossref_primary_10_3390_atmos14071113 crossref_primary_10_1016_j_buildenv_2024_111769 crossref_primary_10_3390_buildings14020400 crossref_primary_10_1002_adsu_202400385 crossref_primary_10_1016_j_ijft_2024_100812 crossref_primary_10_3390_su16041401 crossref_primary_10_1016_j_applthermaleng_2024_123872 crossref_primary_10_1016_j_est_2023_110021 crossref_primary_10_3390_su151512097 crossref_primary_10_1016_j_buildenv_2023_111150 crossref_primary_10_2298_TSCI230124123J |
Cites_doi | 10.1016/j.applthermaleng.2022.118851 10.3390/en15010105 10.1016/j.applthermaleng.2021.117832 10.15199/9.2021.12.2 10.1016/j.measen.2022.100402 10.1016/j.ijheatmasstransfer.2018.12.144 10.1016/j.geothermics.2022.102442 10.3390/en15051898 10.3390/en11123322 10.1016/j.energy.2022.123818 10.1177/0143624420904344 10.1016/j.applthermaleng.2021.117923 10.1016/j.jobe.2022.105331 10.3390/en14237985 10.1016/j.rser.2019.109469 10.1016/j.renene.2021.05.004 10.1016/j.apenergy.2021.117201 10.1016/j.enconman.2022.115774 10.1051/e3sconf/202017205005 10.1016/j.enbuild.2021.111257 10.1016/j.applthermaleng.2022.118292 10.1016/j.tsep.2017.10.018 10.3390/en13226010 10.3390/en14010127 10.3390/en15176110 10.3390/en15186522 10.1016/j.geothermics.2021.102288 10.1007/s12273-021-0854-z 10.12911/22998993/152124 10.1016/j.apenergy.2020.114638 10.1016/j.jclepro.2022.131605 10.3390/w15010191 10.1051/e3sconf/20184400078 10.1051/e3sconf/202017205004 10.3390/s22114056 10.1080/23744731.2021.1977588 10.1016/j.renene.2022.05.076 10.3390/en15093116 10.1016/j.applthermaleng.2022.118066 10.3390/coatings12071021 10.1016/j.jobe.2020.101545 10.1016/j.enbuild.2021.111732 10.1016/j.jobe.2022.104455 10.3390/su13158453 10.1016/j.enbuild.2022.112170 10.1016/j.energy.2020.119175 10.1016/j.est.2021.103367 10.1016/j.apenergy.2021.118443 10.1016/j.enbuild.2019.109574 10.1016/j.buildenv.2019.106632 10.1016/j.rser.2022.112417 10.1016/j.geothermics.2020.101896 10.1016/j.apenergy.2020.115493 10.1016/j.enbuild.2021.110838 10.1016/j.enbuild.2020.110689 10.3390/en15197032 10.1016/j.applthermaleng.2022.118686 10.3390/en16020934 10.15199/9.2022.4.1 10.3390/app122010214 10.1016/j.renene.2020.05.125 10.3390/su13084438 10.1016/j.buildenv.2022.109455 10.1016/j.buildenv.2020.107413 10.1016/j.enbuild.2022.112097 10.3390/en14082035 10.1016/j.jobe.2022.104977 10.1016/j.jobe.2022.104404 10.3390/app12189313 10.3390/en14061759 10.1080/10789669.2007.10390957 10.1088/1361-6498/abfc97 10.1177/0143624419850005 10.3390/en14196367 10.1016/j.jobe.2020.101663 10.1016/j.energy.2022.123783 10.1016/j.buildenv.2021.108380 10.1016/j.apenergy.2018.05.096 10.3390/en15093215 10.3390/en14248217 10.1016/j.jaridenv.2020.104215 10.3390/en15082878 10.1016/j.solener.2021.10.029 10.1016/j.egyr.2022.02.126 10.3390/en14238159 10.1016/j.buildenv.2021.108668 10.1080/10256016.2022.2047960 10.3390/en12091677 10.1016/j.applthermaleng.2022.118148 10.1088/1757-899X/609/4/042062 10.4209/aaqr.210337 10.1016/j.buildenv.2022.109542 10.1016/j.enbuild.2020.110427 10.1016/j.enbuild.2019.03.019 10.29354/diag/141913 10.1016/j.enbuild.2018.06.015 10.1016/j.enbuild.2021.111532 10.1016/j.rser.2020.110049 10.1016/j.enbuild.2022.112236 10.1016/j.applthermaleng.2020.116152 10.1016/j.buildenv.2022.109435 10.3390/en14061519 10.1016/j.jobe.2020.101183 10.3390/en14041176 10.1051/e3sconf/202017205007 10.1016/j.geothermics.2021.102313 10.3390/buildings12030378 10.1115/1.4052855 10.1093/ijlct/ctac040 10.1016/j.est.2022.104037 10.1016/j.rser.2021.111921 10.1016/j.jobe.2020.102009 |
ContentType | Journal Article |
Copyright | COPYRIGHT 2023 MDPI AG 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. |
Copyright_xml | – notice: COPYRIGHT 2023 MDPI AG – notice: 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. |
DBID | AAYXX CITATION ABUWG AFKRA AZQEC BENPR CCPQU COVID DWQXO PHGZM PHGZT PIMPY PKEHL PQEST PQQKQ PQUKI PRINS DOA |
DOI | 10.3390/en16041853 |
DatabaseName | CrossRef ProQuest Central (Alumni) ProQuest Central UK/Ireland ProQuest Central Essentials ProQuest Central ProQuest One Community College Coronavirus Research Database ProQuest Central Korea ProQuest Central Premium ProQuest One Academic Publicly Available Content Database ProQuest One Academic Middle East (New) ProQuest One Academic Eastern Edition (DO NOT USE) ProQuest One Academic ProQuest One Academic UKI Edition ProQuest Central China DOAJ Directory of Open Access Journals |
DatabaseTitle | CrossRef Publicly Available Content Database ProQuest One Academic Middle East (New) ProQuest Central Essentials ProQuest One Academic Eastern Edition Coronavirus Research Database ProQuest Central (Alumni Edition) ProQuest One Community College ProQuest Central China ProQuest Central ProQuest One Academic UKI Edition ProQuest Central Korea ProQuest Central (New) ProQuest One Academic ProQuest One Academic (New) |
DatabaseTitleList | Publicly Available Content Database CrossRef |
Database_xml | – sequence: 1 dbid: DOA name: DOAJ Directory of Open Access Journals url: https://www.doaj.org/ sourceTypes: Open Website – sequence: 2 dbid: BENPR name: ProQuest Central url: https://www.proquest.com/central sourceTypes: Aggregation Database |
DeliveryMethod | fulltext_linktorsrc |
Discipline | Engineering |
EISSN | 1996-1073 |
ExternalDocumentID | oai_doaj_org_article_8975664c02cf4bfaaf5c1ad01bd3fc5e A743141778 10_3390_en16041853 |
GeographicLocations | Poland |
GeographicLocations_xml | – name: Poland |
GroupedDBID | 29G 2WC 2XV 5GY 5VS 7XC 8FE 8FG 8FH AADQD AAHBH AAYXX ABDBF ACUHS ADBBV ADMLS AENEX AFKRA AFZYC ALMA_UNASSIGNED_HOLDINGS BCNDV BENPR CCPQU CITATION CS3 DU5 EBS ESX FRP GROUPED_DOAJ GX1 I-F IAO ITC KQ8 L6V L8X MODMG M~E OK1 OVT P2P PHGZM PHGZT PIMPY PROAC TR2 TUS PMFND ABUWG AZQEC COVID DWQXO PKEHL PQEST PQQKQ PQUKI PRINS PUEGO |
ID | FETCH-LOGICAL-c330t-89b49169e35008547f9161ae6bf7c44ad563ad018dff5360e48f183630092203 |
IEDL.DBID | BENPR |
ISSN | 1996-1073 |
IngestDate | Wed Aug 27 01:27:06 EDT 2025 Mon Jun 30 07:32:31 EDT 2025 Tue Jun 10 20:58:37 EDT 2025 Thu Apr 24 22:56:53 EDT 2025 Tue Jul 01 01:58:51 EDT 2025 |
IsDoiOpenAccess | true |
IsOpenAccess | true |
IsPeerReviewed | true |
IsScholarly | true |
Issue | 4 |
Language | English |
License | https://creativecommons.org/licenses/by/4.0 |
LinkModel | DirectLink |
MergedId | FETCHMERGED-LOGICAL-c330t-89b49169e35008547f9161ae6bf7c44ad563ad018dff5360e48f183630092203 |
Notes | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 14 |
ORCID | 0000-0002-2903-3805 0000-0002-6950-8262 0000-0002-6276-5290 |
OpenAccessLink | https://www.proquest.com/docview/2779490159?pq-origsite=%requestingapplication% |
PQID | 2779490159 |
PQPubID | 2032402 |
ParticipantIDs | doaj_primary_oai_doaj_org_article_8975664c02cf4bfaaf5c1ad01bd3fc5e proquest_journals_2779490159 gale_infotracacademiconefile_A743141778 crossref_citationtrail_10_3390_en16041853 crossref_primary_10_3390_en16041853 |
ProviderPackageCode | CITATION AAYXX |
PublicationCentury | 2000 |
PublicationDate | 2023-02-01 |
PublicationDateYYYYMMDD | 2023-02-01 |
PublicationDate_xml | – month: 02 year: 2023 text: 2023-02-01 day: 01 |
PublicationDecade | 2020 |
PublicationPlace | Basel |
PublicationPlace_xml | – name: Basel |
PublicationTitle | Energies (Basel) |
PublicationYear | 2023 |
Publisher | MDPI AG |
Publisher_xml | – name: MDPI AG |
References | Long (ref_92) 2022; 48 Jia (ref_122) 2022; 210 Shin (ref_47) 2021; 187 Long (ref_93) 2021; 230 Ratajczak (ref_53) 2022; 22 Ratajczak (ref_55) 2020; 206 ref_14 ref_11 ref_99 ref_130 ref_10 (ref_61) 2020; 32 Bonato (ref_57) 2020; 29 Barreto (ref_117) 2022; 8 ref_16 Astrain (ref_124) 2022; 309 Mou (ref_43) 2022; 23 Radlak (ref_75) 2006; 319 Amanowicz (ref_1) 2017; 48 Ratajczak (ref_63) 2020; 227 ref_23 Bai (ref_118) 2022; 162 Altendorf (ref_51) 2022; 58 Meiss (ref_32) 2022; 223 Delwati (ref_34) 2018; 174 Chen (ref_114) 2022; 268 Abadi (ref_129) 2022; 256 ref_28 ref_27 Merzkirch (ref_56) 2019; 18 Liu (ref_38) 2022; 224 (ref_6) 2022; 23 Barrutieta (ref_116) 2022; 62 Ratajczak (ref_40) 2022; 1 Taal (ref_50) 2020; 174 Ramalho (ref_85) 2022; 54 ref_72 Shahrzad (ref_71) 2022; 204 Heim (ref_29) 2020; 41 Radlak (ref_74) 2005; 310 Tang (ref_113) 2022; 265 Dehnert (ref_52) 2021; 41 ref_79 Meiss (ref_15) 2019; 191 ref_78 Ahmed (ref_98) 2022; 99 ref_77 Liu (ref_120) 2022; 52 ref_73 Carbonare (ref_64) 2021; 206 Amanowicz (ref_2) 2021; 6 Liu (ref_19) 2021; 215 Simson (ref_22) 2020; 172 Cho (ref_112) 2022; 213 Astrain (ref_123) 2022; 204 Lu (ref_33) 2022; 223 ref_81 Catalina (ref_62) 2019; 64 Wolf (ref_45) 2022; 209 Russell (ref_3) 2007; 13 Alaidroos (ref_37) 2022; 15 Soares (ref_84) 2021; 253 Zheng (ref_31) 2020; 132 (ref_26) 2019; 116 Haddad (ref_41) 2021; 238 Gao (ref_86) 2022; 250 Spodyniuk (ref_5) 2021; 22 (ref_8) 2020; 5 Amanowicz (ref_102) 2020; 88 (ref_9) 2022; 2 ref_58 Meiss (ref_25) 2021; 20 Pekdogan (ref_68) 2021; 35 ref_54 Li (ref_91) 2021; 175 Long (ref_90) 2022; 207 Lu (ref_49) 2020; 263 Dudkiewicz (ref_17) 2022; 9 Filis (ref_59) 2021; 234 Zemitis (ref_69) 2020; 2 ref_60 Pekdogan (ref_70) 2021; 44 Kowalski (ref_126) 2020; 22 Nitijevskis (ref_24) 2020; 172 Bandurski (ref_39) 2021; 1 ref_67 ref_66 ref_65 Long (ref_87) 2022; 214 Long (ref_88) 2022; 250 Qi (ref_107) 2022; 98 Cholewa (ref_13) 2022; 352 Dudkiewicz (ref_4) 2017; 3 (ref_82) 2018; 11 Bai (ref_89) 2022; 193 Mihalakakou (ref_83) 2022; 155 Wei (ref_95) 2020; 276 Qi (ref_106) 2021; 183 ref_115 Amanowicz (ref_105) 2018; 5 ref_119 Amanowicz (ref_103) 2020; 158 Kowalski (ref_12) 2018; 44 Belloufi (ref_97) 2022; 104 Johansson (ref_128) 2020; 41 Li (ref_109) 2022; 265 Shuailing (ref_121) 2022; 207 Xu (ref_125) 2022; 17 Sakhri (ref_96) 2020; 180 Pacak (ref_80) 2019; 133 Kalbasi (ref_127) 2020; 32 Amanowicz (ref_104) 2018; 226 Abuimara (ref_36) 2022; 28 Moujalled (ref_21) 2021; 250 Verbeke (ref_20) 2020; 172 ref_108 (ref_7) 2020; 6 Yang (ref_46) 2019; 609 Pouranian (ref_94) 2021; 299 Banister (ref_18) 2022; 58 ref_44 ref_100 ref_42 ref_101 Liu (ref_111) 2022; 268 ref_48 Johansson (ref_35) 2022; 21 Radlak (ref_76) 2009; 94 Gurubalan (ref_110) 2022; 14 Moujalled (ref_30) 2022; 52 |
References_xml | – volume: 214 start-page: 118851 year: 2022 ident: ref_87 article-title: Numerical Simulation of Diurnal and Annual Performance of Coupled Solar Chimney with Earth-to-Air Heat Exchanger System publication-title: Appl. Therm. Eng. doi: 10.1016/j.applthermaleng.2022.118851 – ident: ref_99 doi: 10.3390/en15010105 – volume: 204 start-page: 117832 year: 2022 ident: ref_123 article-title: Annual Energy Performance of a Thermoelectric Heat Pump Combined with a Heat Recovery Unit to HVAC One Passive House Dwelling publication-title: Appl. Therm. Eng. doi: 10.1016/j.applthermaleng.2021.117832 – volume: 1 start-page: 14 year: 2021 ident: ref_39 article-title: Różnica Między Obliczeniowym i Pomiarowym Wykorzystaniem Energii Do Ogrzewania w Budynkach Wielorodzinnych publication-title: Ciepłownictwo Ogrzew. Went. doi: 10.15199/9.2021.12.2 – volume: 23 start-page: 100402 year: 2022 ident: ref_43 article-title: Computational Fluid Dynamics Modelling of Airflow and Carbon Dioxide Distribution inside a Seminar Room for Sensor Placement publication-title: Meas. Sens. doi: 10.1016/j.measen.2022.100402 – volume: 133 start-page: 842 year: 2019 ident: ref_80 article-title: Analysis of Power Demand Calculation for Freeze Prevention Methods of Counter-Flow Heat Exchangers Used in Energy Recovery from Exhaust Air publication-title: Int. J. Heat Mass Transf. doi: 10.1016/j.ijheatmasstransfer.2018.12.144 – volume: 104 start-page: 102442 year: 2022 ident: ref_97 article-title: Transient Assessment of an Earth Air Heat Exchanger in Warm Climatic Conditions publication-title: Geothermics doi: 10.1016/j.geothermics.2022.102442 – volume: 2 start-page: 23 year: 2022 ident: ref_9 article-title: Prawdopodobieństwo przenoszenia wirusa SARS-CoV-2 drogą powietrzną w pomieszczeniach wentylowanych publication-title: Instal – ident: ref_100 doi: 10.3390/en15051898 – ident: ref_16 doi: 10.3390/en11123322 – volume: 250 start-page: 123818 year: 2022 ident: ref_88 article-title: Natural Ventilation Performance of Solar Chimney with and without Earth-Air Heat Exchanger during Transition Seasons publication-title: Energy doi: 10.1016/j.energy.2022.123818 – volume: 41 start-page: 681 year: 2020 ident: ref_29 article-title: Modelling Building Infiltration Using the Airflow Network Model Approach Calibrated by Air-Tightness Test Results and Leak Detection publication-title: Build. Serv. Eng. Res. Technol. doi: 10.1177/0143624420904344 – volume: 204 start-page: 117923 year: 2022 ident: ref_71 article-title: Parametric Optimization of Multifunctional Integrated Climate-Responsive Opaque and Ventilated Façades Using CFD Simulations publication-title: Appl. Therm. Eng. doi: 10.1016/j.applthermaleng.2021.117923 – volume: 62 start-page: 105331 year: 2022 ident: ref_116 article-title: Use of Sunspaces to Obtain Energy Savings by Preheating the Intake Air of the Ventilation System: Analysis of Its Main Characteristics in the Different Spanish Climate Zones publication-title: J. Build. Eng. doi: 10.1016/j.jobe.2022.105331 – ident: ref_11 doi: 10.3390/en14237985 – volume: 116 start-page: 109469 year: 2019 ident: ref_26 article-title: Air Infiltrations and Energy Demand for Residential Low Energy Buildings in Warm Climates publication-title: Renew. Sustain. Energy Rev. doi: 10.1016/j.rser.2019.109469 – volume: 175 start-page: 486 year: 2021 ident: ref_91 article-title: An Experimental Investigation on the Passive Ventilation and Cooling Performance of an Integrated Solar Chimney and Earth–Air Heat Exchanger publication-title: Renew. Energy doi: 10.1016/j.renene.2021.05.004 – volume: 299 start-page: 117201 year: 2021 ident: ref_94 article-title: Performance Assessment of Solar Chimney Coupled with Earth-to-Air Heat Exchanger: A Passive Alternative for an Indoor Swimming Pool Ventilation in Hot-Arid Climate publication-title: Appl. Energy doi: 10.1016/j.apenergy.2021.117201 – volume: 265 start-page: 115774 year: 2022 ident: ref_113 article-title: Performance Prediction of a Novel Double-Glazing PV Curtain Wall System Combined with an Air Handling Unit Using Exhaust Cooling and Heat Recovery Technology publication-title: Energy Convers. Manag. doi: 10.1016/j.enconman.2022.115774 – volume: 172 start-page: 05005 year: 2020 ident: ref_20 article-title: A Prospective Study on the Evolution of Airtightness in 41 Low Energy Dwellings publication-title: E3S Web Conf. doi: 10.1051/e3sconf/202017205005 – volume: 250 start-page: 111257 year: 2021 ident: ref_21 article-title: Mid-Term and Long-Term Changes in Building Airtightness: A Field Study on Low-Energy Houses publication-title: Energy Build. doi: 10.1016/j.enbuild.2021.111257 – volume: 210 start-page: 118292 year: 2022 ident: ref_122 article-title: The Applicability and Energy Consumption of a Parallel-Loop Exhaust Air Heat Pump for Environment Control in Ultra-Low Energy Building publication-title: Appl. Therm. Eng. doi: 10.1016/j.applthermaleng.2022.118292 – volume: 5 start-page: 44 year: 2018 ident: ref_105 article-title: Validation of CFD Model for Simulation of Multi-Pipe Earth-to-Air Heat Exchangers (EAHEs) Flow Performance publication-title: Therm. Sci. Eng. Prog. doi: 10.1016/j.tsep.2017.10.018 – ident: ref_60 doi: 10.3390/en13226010 – ident: ref_23 doi: 10.3390/en14010127 – ident: ref_81 doi: 10.3390/en15176110 – ident: ref_10 doi: 10.3390/en15186522 – volume: 98 start-page: 102288 year: 2022 ident: ref_107 article-title: Structural Optimization of Multi-Pipe Earth to Air Heat Exchanger in Greenhouse publication-title: Geothermics doi: 10.1016/j.geothermics.2021.102288 – volume: 15 start-page: 1067 year: 2022 ident: ref_37 article-title: Evaluation of the Performance of Demand Control Ventilation System for School Buildings Located in the Hot Climate of Saudi Arabia publication-title: Build. Simul. doi: 10.1007/s12273-021-0854-z – volume: 319 start-page: 205 year: 2006 ident: ref_75 article-title: The Experiences Concerning Energy Audits in Low Energy Consuming Buildings publication-title: Zesz. Nauk. Inż. Śr. Politech. Opol. – volume: 23 start-page: 25 year: 2022 ident: ref_6 article-title: Air Filtration and Sterilization in Ventilation Systems According to the New Paradigm publication-title: J. Ecol. Eng. doi: 10.12911/22998993/152124 – volume: 263 start-page: 114638 year: 2020 ident: ref_49 article-title: A Novel Simulation-Based Framework for Sensor Error Impact Analysis in Smart Building Systems: A Case Study for a Demand-Controlled Ventilation System publication-title: Appl. Energy doi: 10.1016/j.apenergy.2020.114638 – volume: 6 start-page: 46 year: 2021 ident: ref_2 article-title: Praktyczne aspekty projektowania energooszczędnych systemów wentylacyjnych publication-title: Rynek Instal. – volume: 352 start-page: 131605 year: 2022 ident: ref_13 article-title: An Easy and Widely Applicable Forecast Control for Heating Systems in Existing and New Buildings: First Field Experiences publication-title: J. Clean. Prod. doi: 10.1016/j.jclepro.2022.131605 – ident: ref_14 doi: 10.3390/w15010191 – volume: 44 start-page: 00078 year: 2018 ident: ref_12 article-title: Airtightness Test of Single-Family Building and Calculation Result of the Energy Need for Heating in Polish Conditions publication-title: E3S Web Conf. doi: 10.1051/e3sconf/20184400078 – volume: 172 start-page: 05004 year: 2020 ident: ref_22 article-title: The Impact of Infiltration on Heating Systems Dimensioning in Estonian Climate publication-title: E3S Web Conf. doi: 10.1051/e3sconf/202017205004 – ident: ref_44 doi: 10.3390/s22114056 – volume: 28 start-page: 275 year: 2022 ident: ref_36 article-title: Exploring the Adequacy of Mechanical Ventilation for Acceptable Indoor Air Quality in Office Buildings publication-title: Sci. Technol. Built Environ. doi: 10.1080/23744731.2021.1977588 – volume: 193 start-page: 1001 year: 2022 ident: ref_89 article-title: Experimental Investigation of Natural Ventilation Characteristics of a Solar Chimney Coupled with Earth-Air Heat Exchanger (SCEAHE) System in Summer and Winter publication-title: Renew. Energy doi: 10.1016/j.renene.2022.05.076 – ident: ref_115 doi: 10.3390/en15093116 – volume: 207 start-page: 118066 year: 2022 ident: ref_121 article-title: Performance of a Mechanically-Driven Loop Heat Pipe Heat Recovery System publication-title: Appl. Therm. Eng. doi: 10.1016/j.applthermaleng.2022.118066 – ident: ref_78 doi: 10.3390/coatings12071021 – volume: 32 start-page: 101545 year: 2020 ident: ref_127 article-title: Energy Usage Reduction in an Air Handling Unit by Incorporating Two Heat Recovery Units publication-title: J. Build. Eng. doi: 10.1016/j.jobe.2020.101545 – volume: 256 start-page: 111732 year: 2022 ident: ref_129 article-title: Experimental Investigation of Condensation in Energy Recovery Ventilators publication-title: Energy Build. doi: 10.1016/j.enbuild.2021.111732 – volume: 52 start-page: 104455 year: 2022 ident: ref_30 article-title: Uncertainty in Building Fan Pressurization Tests: Review and Gaps in Research publication-title: J. Build. Eng. doi: 10.1016/j.jobe.2022.104455 – ident: ref_58 doi: 10.3390/su13158453 – volume: 310 start-page: 141 year: 2005 ident: ref_74 article-title: Application of Environmental Energy in Modern Solutions of Passive Buildings Based on ISOMAX System publication-title: Zesz. Nauk. Inż. Śr. Politech. Opol. – volume: 268 start-page: 112170 year: 2022 ident: ref_114 article-title: Energy Saving Potential of Passive Dehumidification System Combined with Energy Recovery Ventilation Using Renewable Energy publication-title: Energy Build. doi: 10.1016/j.enbuild.2022.112170 – volume: 215 start-page: 119175 year: 2021 ident: ref_19 article-title: Energy Saving Potential for Space Heating in Chinese Airport Terminals: The Impact of Air Infiltration publication-title: Energy doi: 10.1016/j.energy.2020.119175 – volume: 44 start-page: 103367 year: 2021 ident: ref_70 article-title: Experimental Investigation on Heat Transfer and Air Flow Behavior of Latent Heat Storage Unit in a Facade Integrated Ventilation System publication-title: J. Energy Storage doi: 10.1016/j.est.2021.103367 – volume: 309 start-page: 118443 year: 2022 ident: ref_124 article-title: Optimal Combination of an Air-to-Air Thermoelectric Heat Pump with a Heat Recovery System to HVAC a Passive House Dwelling publication-title: Appl. Energy doi: 10.1016/j.apenergy.2021.118443 – volume: 206 start-page: 109574 year: 2020 ident: ref_55 article-title: Energy Consumption Decreasing Strategy for Indoor Swimming Pools—Decentralized Ventilation System with a Heat Pump publication-title: Energy Build. doi: 10.1016/j.enbuild.2019.109574 – volume: 174 start-page: 106632 year: 2020 ident: ref_50 article-title: Fault Detection and Diagnosis for Indoor Air Quality in DCV Systems: Application of 4S3F Method and Effects of DBN Probabilities publication-title: Build. Environ. doi: 10.1016/j.buildenv.2019.106632 – volume: 94 start-page: 77 year: 2009 ident: ref_76 article-title: System pozyskiwania ciepła dla potrzeb ogrzewania i wentylacji obiektów publication-title: Zesz. Nauk. Mech. Politech. Opol. – volume: 18 start-page: 19 year: 2019 ident: ref_56 article-title: Primary Energy Used in Centralised and Decentralised Ventilation Systems Measured in Field Tests in Residential Buildings publication-title: Int. J. Vent. – volume: 162 start-page: 112417 year: 2022 ident: ref_118 article-title: A Review of Heat Recovery Technologies and Their Frost Control for Residential Building Ventilation in Cold Climate Regions publication-title: Renew. Sustain. Energy Rev. doi: 10.1016/j.rser.2022.112417 – volume: 88 start-page: 101896 year: 2020 ident: ref_102 article-title: Thermal Performance of Multi-Pipe Earth-to-Air Heat Exchangers Considering the Non-Uniform Distribution of Air between Parallel Pipes publication-title: Geothermics doi: 10.1016/j.geothermics.2020.101896 – volume: 276 start-page: 115493 year: 2020 ident: ref_95 article-title: Field Experiments on the Cooling Capability of Earth-to-Air Heat Exchangers in Hot and Humid Climate publication-title: Appl. Energy doi: 10.1016/j.apenergy.2020.115493 – volume: 238 start-page: 110838 year: 2021 ident: ref_41 article-title: On the Potential of Demand-Controlled Ventilation System to Enhance Indoor Air Quality and Thermal Condition in Australian School Classrooms publication-title: Energy Build. doi: 10.1016/j.enbuild.2021.110838 – volume: 234 start-page: 110689 year: 2021 ident: ref_59 article-title: The Impact of Wind Pressure and Stack Effect on the Performance of Room Ventilation Units with Heat Recovery publication-title: Energy Build. doi: 10.1016/j.enbuild.2020.110689 – ident: ref_66 doi: 10.3390/en15197032 – volume: 213 start-page: 118686 year: 2022 ident: ref_112 article-title: Development of Empirical Models to Predict Latent Heat Exchange Performance for Hollow Fiber Membrane-Based Ventilation System publication-title: Appl. Therm. Eng. doi: 10.1016/j.applthermaleng.2022.118686 – ident: ref_130 doi: 10.3390/en16020934 – volume: 1 start-page: 5 year: 2022 ident: ref_40 article-title: Rozbieżności Między Obliczeniowym i Zmierzonym Zużyciem Energii Do Ogrzewania i Przygotowania Ciepłej Wody Użytkowej Na Przykładzie Budynków Jednorodzinnych publication-title: Ciepłownictwo Ogrzew. Went. doi: 10.15199/9.2022.4.1 – volume: 48 start-page: 72 year: 2017 ident: ref_1 article-title: Zasady projektowania systemów wentylacji budynków energooszczędnych publication-title: Ciepłownictwo Ogrzew. Went. – ident: ref_79 doi: 10.3390/app122010214 – volume: 158 start-page: 585 year: 2020 ident: ref_103 article-title: Approximated Flow Characteristics of Multi-Pipe Earth-to-Air Heat Exchangers for Thermal Analysis under Variable Airflow Conditions publication-title: Renew. Energy doi: 10.1016/j.renene.2020.05.125 – ident: ref_73 doi: 10.3390/su13084438 – volume: 223 start-page: 109455 year: 2022 ident: ref_33 article-title: Advances in Research and Applications of CO2-Based Demand-Controlled Ventilation in Commercial Buildings: A Critical Review of Control Strategies and Performance Evaluation publication-title: Build. Environ. doi: 10.1016/j.buildenv.2022.109455 – volume: 187 start-page: 107413 year: 2021 ident: ref_47 article-title: A Study on Changes in Occupants’ Thermal Sensation Owing to CO2 Concentration Using PMV and TSV publication-title: Build. Environ. doi: 10.1016/j.buildenv.2020.107413 – volume: 265 start-page: 112097 year: 2022 ident: ref_109 article-title: A Review of Air-to-Air Membrane Energy Recovery Technology for Building Ventilation publication-title: Energy Build. doi: 10.1016/j.enbuild.2022.112097 – ident: ref_54 doi: 10.3390/en14082035 – volume: 58 start-page: 104977 year: 2022 ident: ref_18 article-title: Energy and Emissions Effects of Airtightness for Six Non-Residential Buildings in Canada with Comparison to Contemporary Limits and Assumptions publication-title: J. Build. Eng. doi: 10.1016/j.jobe.2022.104977 – volume: 52 start-page: 104404 year: 2022 ident: ref_120 article-title: Experimental Study of Ventilation System with Heat Recovery Integrated by Pump-Driven Loop Heat Pipe and Heat Pump publication-title: J. Build. Eng. doi: 10.1016/j.jobe.2022.104404 – ident: ref_77 doi: 10.3390/app12189313 – ident: ref_119 doi: 10.3390/en14061759 – volume: 13 start-page: 325 year: 2007 ident: ref_3 article-title: Review of Residential Ventilation Technologies publication-title: HVACR Res. doi: 10.1080/10789669.2007.10390957 – volume: 41 start-page: S109 year: 2021 ident: ref_52 article-title: Radon Protection in Apartments Using a Ventilation System Wireless-Controlled by Radon Activity Concentration publication-title: J. Radiol. Prot. doi: 10.1088/1361-6498/abfc97 – volume: 41 start-page: 46 year: 2020 ident: ref_128 article-title: Determining the Impact of Air-Side Cleaning for Heat Exchangers in Ventilation Systems publication-title: Build. Serv. Eng. Res. Technol. doi: 10.1177/0143624419850005 – volume: 21 start-page: 35 year: 2022 ident: ref_35 article-title: The Impact of a DCV-System on the IAQ, Energy Use, and Moisture Safety in Apartments—A Case Study publication-title: Int. J. Vent. – volume: 22 start-page: 940 year: 2020 ident: ref_126 article-title: Waste Heat Recovery by Electric Heat Pump from Exhausted Ventilating Air for Domestic Hot Water in Multi-Family Residential Buildings publication-title: Rocz. Ochr. Śr. – ident: ref_28 doi: 10.3390/en14196367 – volume: 32 start-page: 101663 year: 2020 ident: ref_61 article-title: Improvement of Indoor Air Quality by Way of Using Decentralised Ventilation publication-title: J. Build. Eng. doi: 10.1016/j.jobe.2020.101663 – volume: 250 start-page: 123783 year: 2022 ident: ref_86 article-title: Thermal Potential Improvement of an Earth-Air Heat Exchanger (EAHE) by Employing Backfilling for Deep Underground Emergency Ventilation publication-title: Energy doi: 10.1016/j.energy.2022.123783 – volume: 206 start-page: 108380 year: 2021 ident: ref_64 article-title: Design and Implementation of an Occupant-Centered Self-Learning Controller for Decentralized Residential Ventilation Systems publication-title: Build. Environ. doi: 10.1016/j.buildenv.2021.108380 – volume: 54 start-page: 102838 year: 2022 ident: ref_85 article-title: Accessing the Thermal Performance of Earth–Air Heat Exchangers Surrounded by Galvanized Structures publication-title: Sustain. Energy Technol. Assess. – volume: 226 start-page: 849 year: 2018 ident: ref_104 article-title: Influence of Geometrical Parameters on the Flow Characteristics of Multi-Pipe Earth-to-Air Heat Exchangers—Experimental and CFD Investigations publication-title: Appl. Energy doi: 10.1016/j.apenergy.2018.05.096 – volume: 3 start-page: 66 year: 2017 ident: ref_4 article-title: Natural and Mechanical Ventilation of Industrial Halls publication-title: Nowocz. Hale – ident: ref_101 doi: 10.3390/en15093215 – ident: ref_72 doi: 10.3390/en14248217 – volume: 5 start-page: 17 year: 2020 ident: ref_8 article-title: Przegląd zaleceń dla instalacji wentylacyjnych i klimatyzacyjnych w związku z zagrożeniem koronawirusem SARS-CoV-2 i chorobą COVID-19 publication-title: Instal – volume: 180 start-page: 104215 year: 2020 ident: ref_96 article-title: Experimental Investigation of the Performance of Earth-to-Air Heat Exchangers in Arid Environments publication-title: J. Arid Environ. doi: 10.1016/j.jaridenv.2020.104215 – ident: ref_48 doi: 10.3390/en15082878 – volume: 230 start-page: 109 year: 2021 ident: ref_93 article-title: Numerical Investigation of the Working Mechanisms of Solar Chimney Coupled with Earth-to-Air Heat Exchanger (SCEAHE) publication-title: Sol. Energy doi: 10.1016/j.solener.2021.10.029 – volume: 2 start-page: 120 year: 2020 ident: ref_69 article-title: Heat Recovery Efficiency of Local Decentralized Ventilation Device at Various Pressure Differences publication-title: Mag. Civ. Eng. – volume: 8 start-page: 3289 year: 2022 ident: ref_117 article-title: An Innovative Window Heat Recovery (WHR) System with Heat Pipe Technology: Analytical, CFD, Experimental Analysis and Building Retrofit Performance publication-title: Energy Rep. doi: 10.1016/j.egyr.2022.02.126 – volume: 64 start-page: 9 year: 2019 ident: ref_62 article-title: Indoor Air Quality Assessment in a Classroom Using a Heat Recovery Ventilation Unit publication-title: Rom. J. Phys. – ident: ref_65 doi: 10.3390/en14238159 – volume: 209 start-page: 108668 year: 2022 ident: ref_45 article-title: A Methodology for the Selection of Pollutants for Ensuring Good Indoor Air Quality Using the De-Trended Cross-Correlation Function publication-title: Build. Environ. doi: 10.1016/j.buildenv.2021.108668 – volume: 6 start-page: 28 year: 2020 ident: ref_7 article-title: Redukcja rozprzestrzeniania koronawirusa SARS-CoV-2 i choroby COVID-19 poprzez instalacje wentylacyjne i klimatyzacyjne publication-title: Instal – volume: 58 start-page: 195 year: 2022 ident: ref_51 article-title: Decentralised Ventilation Efficiency for Indoor Radon Reduction Considering Different Environmental Parameters publication-title: Isot. Environ. Health Stud. doi: 10.1080/10256016.2022.2047960 – ident: ref_27 doi: 10.3390/en12091677 – volume: 207 start-page: 118148 year: 2022 ident: ref_90 article-title: Investigation on the Cooling Performance of a Buoyancy Driven Earth-Air Heat Exchanger System and the Impact on Indoor Thermal Environment publication-title: Appl. Therm. Eng. doi: 10.1016/j.applthermaleng.2022.118148 – volume: 609 start-page: 042062 year: 2019 ident: ref_46 article-title: Demand-Controlled Ventilation: Do Different User Groups Require Different CO 2 -Setpoints? publication-title: IOP Conf. Ser. Mater. Sci. Eng. doi: 10.1088/1757-899X/609/4/042062 – volume: 22 start-page: 210337 year: 2022 ident: ref_53 article-title: Ventilation Strategy for Proper IAQ in Existing Nurseries Buildings—Lesson Learned from the Research during COVID-19 Pandemic publication-title: Aerosol Air Qual. Res. doi: 10.4209/aaqr.210337 – volume: 9 start-page: 84 year: 2022 ident: ref_17 article-title: Analiza energetyczna wydajności stropu grzewczego na przykładzie budynku mieszkalnego w Niemczech, Polsce i Ukrainie publication-title: Mater. Bud. – volume: 224 start-page: 109542 year: 2022 ident: ref_38 article-title: Heat Recovery Ventilation Design Limitations Due to LHC for Different Ventilation Strategies in ZEB publication-title: Build. Environ. doi: 10.1016/j.buildenv.2022.109542 – volume: 227 start-page: 110427 year: 2020 ident: ref_63 article-title: Assessment of the Air Streams Mixing in Wall-Type Heat Recovery Units for Ventilation of Existing and Refurbishing Buildings toward Low Energy Buildings publication-title: Energy Build. doi: 10.1016/j.enbuild.2020.110427 – volume: 191 start-page: 187 year: 2019 ident: ref_15 article-title: Air Infiltration Monitoring Using Thermography and Neural Networks publication-title: Energy Build. doi: 10.1016/j.enbuild.2019.03.019 – volume: 22 start-page: 91 year: 2021 ident: ref_5 article-title: Diagnosis of Damage to the Ventilation System publication-title: Diagnostyka doi: 10.29354/diag/141913 – volume: 174 start-page: 111 year: 2018 ident: ref_34 article-title: Impact of Demand Controlled Ventilation on System Performance and Energy Use publication-title: Energy Build. doi: 10.1016/j.enbuild.2018.06.015 – volume: 20 start-page: 258 year: 2021 ident: ref_25 article-title: Airtightness and Energy Impact of Air Infiltration in Residential Buildings in Spain publication-title: Int. J. Vent. – volume: 253 start-page: 111532 year: 2021 ident: ref_84 article-title: Advances in Standalone and Hybrid Earth-Air Heat Exchanger (EAHE) Systems for Buildings: A Review publication-title: Energy Build. doi: 10.1016/j.enbuild.2021.111532 – volume: 132 start-page: 110049 year: 2020 ident: ref_31 article-title: A Practical Review of Alternatives to the Steady Pressurisation Method for Determining Building Airtightness publication-title: Renew. Sustain. Energy Rev. doi: 10.1016/j.rser.2020.110049 – volume: 268 start-page: 112236 year: 2022 ident: ref_111 article-title: Development and Optimization of Highly Efficient Heat Recoveries for Low Carbon Residential Buildings publication-title: Energy Build. doi: 10.1016/j.enbuild.2022.112236 – volume: 183 start-page: 116152 year: 2021 ident: ref_106 article-title: Comparative Analysis of Earth to Air Heat Exchanger Configurations Based on Uniformity and Thermal Performance publication-title: Appl. Therm. Eng. doi: 10.1016/j.applthermaleng.2020.116152 – volume: 223 start-page: 109435 year: 2022 ident: ref_32 article-title: An Envelope Airtightness Predictive Model for Residential Buildings in Spain publication-title: Build. Environ. doi: 10.1016/j.buildenv.2022.109435 – volume: 11 start-page: 26 year: 2018 ident: ref_82 article-title: Możliwość wykorzystania odzysku ciepła z powietrza wywiewanego z suszarni zbóż publication-title: Instal – ident: ref_108 doi: 10.3390/en14061519 – volume: 29 start-page: 101183 year: 2020 ident: ref_57 article-title: Modelling and Simulation-Based Analysis of a Façade-Integrated Decentralized Ventilation Unit publication-title: J. Build. Eng. doi: 10.1016/j.jobe.2020.101183 – ident: ref_67 doi: 10.3390/en14041176 – volume: 172 start-page: 05007 year: 2020 ident: ref_24 article-title: Overview of Large Building Testing in Baltic Countries publication-title: E3S Web Conf. doi: 10.1051/e3sconf/202017205007 – volume: 99 start-page: 102313 year: 2022 ident: ref_98 article-title: Thermal Performance of Building-Integrated Horizontal Earth-Air Heat Exchanger in a Subtropical Hot Humid Climate publication-title: Geothermics doi: 10.1016/j.geothermics.2021.102313 – ident: ref_42 doi: 10.3390/buildings12030378 – volume: 14 start-page: 051015 year: 2022 ident: ref_110 article-title: Performance Improvement of Membrane Energy Exchanger Using Ultrasound for Heating, Ventilation, and Air Conditioning Application publication-title: J. Therm. Sci. Eng. Appl. doi: 10.1115/1.4052855 – volume: 17 start-page: 611 year: 2022 ident: ref_125 article-title: Ecopump: A Novel Thermoelectric Heat Pump/Heat Recovery Ventilator System for Domestic Building Applications publication-title: Int. J. Low-Carbon Technol. doi: 10.1093/ijlct/ctac040 – volume: 48 start-page: 104037 year: 2022 ident: ref_92 article-title: Benefits of Integrating Phase-Change Material with Solar Chimney and Earth-to-Air Heat Exchanger System for Passive Ventilation and Cooling in Summer publication-title: J. Energy Storage doi: 10.1016/j.est.2022.104037 – volume: 155 start-page: 111921 year: 2022 ident: ref_83 article-title: Applications of Earth-to-Air Heat Exchangers: A Holistic Review publication-title: Renew. Sustain. Energy Rev. doi: 10.1016/j.rser.2021.111921 – volume: 35 start-page: 102009 year: 2021 ident: ref_68 article-title: Experimental Investigation of a Decentralized Heat Recovery Ventilation System publication-title: J. Build. Eng. doi: 10.1016/j.jobe.2020.102009 |
SSID | ssj0000331333 |
Score | 2.453839 |
Snippet | The need for healthy indoor conditions, the energy crisis, and environmental concerns make building ventilation systems very important today. The elements of... |
SourceID | doaj proquest gale crossref |
SourceType | Open Website Aggregation Database Enrichment Source Index Database |
StartPage | 1853 |
SubjectTerms | Air leakage Airports airtightness Buildings DCV Energy conservation Energy consumption Energy efficiency Energy use Green buildings Heat exchangers heat recovery Heat recovery systems Heating Heating, cooling and ventilation Humidity Indoor air quality Insulation Literature reviews Methods thermal performance of buildings Ventilation |
SummonAdditionalLinks | – databaseName: DOAJ Directory of Open Access Journals dbid: DOA link: http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwrV1LS8QwEA6yJz2IT1xfBBTEQ9m2k76Oq-6yiHpS8RaSNAFBuuKud3-Ev9Bf4kzSXVdQvHhrSwrpZB7fpJNvGDumzfvM2gQNyTlMUEqIFKg0AlVbjeuvU00b-tc3-ehOXD5kDwutvqgmLNADB8H1yqpAxCFMnBontFPKZSZRdZzoGpzJLHlfjHkLyZT3wQCYfEHgIwXM63u2SfKYmFrgWwTyRP2_uWMfY4ZrbLUFh7wfJrXOlmyzwVYWKAM32RhxHsYJ3g__7v0BNf7Y8Huq-gl1bbxlIed3E1vz6ZhfeGg4sXzgD_rxc3_s0vsKevWs7Yw9-Xh7v5qzLPPw12CL3Q4Ht-ejqG2aEBmAeBqVlRYI-SoLGcEpUTi8S5TNtSuMEKrOciDxlbVzGeSxFaVDsybmrSpNY9hmnWbc2B3G86rMCjBQ4QUm0anOLXUmz61DDKRj1WWnMzlK0xKKU1-LJ4mJBclcfsm8y47mY58DjcaPo85oOeYjiPraP0CFkK1CyL8UostOaDElGShOx6j2nAF-FFFdyT5hJpEURdll-7P1lq3lTmRaoIYSSKp2_2M2e2yZGtSHOu991pm-vNoDhDFTfeg19hPQ6_G_ priority: 102 providerName: Directory of Open Access Journals |
Title | Recent Advancements in Ventilation Systems Used to Decrease Energy Consumption in Buildings—Literature Review |
URI | https://www.proquest.com/docview/2779490159 https://doaj.org/article/8975664c02cf4bfaaf5c1ad01bd3fc5e |
Volume | 16 |
hasFullText | 1 |
inHoldings | 1 |
isFullTextHit | |
isPrint | |
link | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwfV3NbtQwEB7R7QUOiF-xtKwsgYQ4RE1iO3FOaLfstkJQIdSivVm2YyMklJRme-cheEKehBnHuwUJuET5saXY4xl_M7a_AXhBwXvpfYGKFAI6KIpnhpsy46b1FuVvS0sB_fdn1emFeLuW6xRwG9K2yq1NjIa67R3FyI_KGmvS5NW8vvyWUdYoWl1NKTT2YB9NsJIT2F8szz583EVZcs7RCeMjLylH__7Id0WVE2ML_2MmioT9_zLLca5Z3YO7CSSy-SjV-3DLdw_gzm_UgQ-hR7yH8wWbj2v48aAa-9KxT7T7Z9zfxhIbObsYfMs2PXsTIeLg2TIe-GPH8fhltBlUdZEyZA8_v_94t2NbZuPqwSM4Xy3Pj0-zlDwhc5znm0w1ViD0azyXBKtEHfCpML6yoXZCmFZWKI-8UG0Ikle5FyqgehMDV1OWOX8Mk67v_BNgVaNkzR1v8Aad6dJWnjKUVz4gFrK5mcKrbT9ql4jFKb_FV40OBvW5vunzKTzflb0c6TT-WmpB4tiVIArs-KK_-qyTRmnV1AhFhctLF4QNxgTpCmqRbXlw0k_hJQlTk6Li7ziTzhtgo4jySs8JO4mirtUUDrfy1kmDB30z3p7-__MB3KYU9ONO7kOYbK6u_TMEKhs7gz21OpmlMTmL7j5eT9bFLz9T6_w |
linkProvider | ProQuest |
linkToHtml | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwtV3NbtQwEB6V9gAcEL_qQgFLgBCHqImdPx8Q2m232tLtCqEt6s2yHRshoaQ0ixA3HoLX4KV4EmacZAsScOtts3GixDOe-caZ-QbgKW3eZ84luJC8xwClFJEWmkdCV86g_A03tKF_vMhnJ-nr0-x0A34MtTCUVjnYxGCoq8bSHvkuL_BKcl7y1dmniLpG0dfVoYVGpxZH7usXDNnal4f7KN9nnB9Ml3uzqO8qEFmM3VdRKU2KmEg6kRHeSAuPR4l2ufGFTVNdZTk-aJyUlfeZyGOXlh71nqipJOexwNtegS1EGRIX0dZkunjzdr2pEwuBMZ_oaFCFkPGuq5M8JoIY8YfjC_0B_uUFgms7uAk3ekzKxp0S3YINV9-G678xFd6BBuEluic27lIGQl0c-1Czd5Rs1KXTsZ78nJ20rmKrhu0HRNo6Ng31hWwvVHsGE0WXTvqG3O3Pb9_na3Jn1n2suAvLy5jVe7BZN7XbBpbLMiuEFRJ_YOzOTe6oIXruPEIvE-sRvBjmUdmex5zaaXxUGM_QnKuLOR_Bk_XYs46946-jJiSO9Qhi3A5_NOfvVb-AVSkLRL6pjbn1qfFa-8wm9EamEt5mbgTPSZiK7AI-jtV9eQO-FDFsqTFBtTQpinIEO4O8VW8wWnWh3vf_f_oxXJ0tj-dqfrg4egDXOGKuLol8BzZX55_dQ8RIK_Oo10wG6pLXwi89cSLw |
linkToPdf | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwtV3NbtQwEB6VrYTgUPGrblvAEiDEIdrEdv4OFdrt7qqlZVWhFvVmxY6NkFDSNosQNx6Cl-F1-iTMJM4WJODW22bjRInHM_ONM_MNwAvavI-tjVCRnMMAJRNBIQoeiKK0GuWvuaYN_XeLZP9Uvj2Lz9bgZ18LQ2mVvU1sDXVZG9ojH_EUryTnlY-cT4s4ns7fnF8E1EGKvrT27TS6JXJov33F8K3ZPZiirF9yPp-d7O0HvsNAYDCOXwZZriXio9yKmLCHTB0eRYVNtEuNlEUZJ_jQYZSVzsUiCa3MHOoA0VTlnIcCb3sL1lN0itkA1iezxfH71QZPKATGf6KjRBUiD0e2ipKQyGLEH06w7RXwL4_Qurn5Pdjw-JSNuwV1H9Zs9QDu_sZa-BBqhJroqti4Sx9oa-TYp4p9oMSjLrWOeSJ0dtrYki1rNm3RaWPZrK01ZHtt5WdrrujSiW_O3Vx9_3G0Inpm3YeLR3ByE7P6GAZVXdlNYEmexakwIscfGMdznVhqjp5YhzBMh8UQXvfzqIznNKfWGp8VxjY05-p6zofwfDX2vGPy-OuoCYljNYLYt9s_6suPyiuzyvIUUbA0ITdOalcULjYRvZEuhTOxHcIrEqYiG4GPYwpf6oAvRWxbakywTUZpmg1hp5e38sajUddLfev_p5_BbdQBdXSwONyGOxzhV5dPvgOD5eUX-wTh0lI_9QuTgbphVfgFkjwnHA |
openUrl | ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=Recent+Advancements+in+Ventilation+Systems+Used+to+Decrease+Energy+Consumption+in+Buildings%E2%80%94Literature+Review&rft.jtitle=Energies+%28Basel%29&rft.au=Amanowicz%2C+%C5%81ukasz&rft.au=Ratajczak%2C+Katarzyna&rft.au=Dudkiewicz%2C+Edyta&rft.date=2023-02-01&rft.pub=MDPI+AG&rft.eissn=1996-1073&rft.volume=16&rft.issue=4&rft.spage=1853&rft_id=info:doi/10.3390%2Fen16041853&rft.externalDBID=HAS_PDF_LINK |
thumbnail_l | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=1996-1073&client=summon |
thumbnail_m | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=1996-1073&client=summon |
thumbnail_s | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=1996-1073&client=summon |