화학공정 내 폐증기를 활용한 MVR 및 TVR 연구
The MVR was theoretically modeled by performing the polytropic process, and the polytropic coefficient was estimated by using the performance curve provided by the manufacturers. The TVR was investigated by applying the conservation equations to the movement of fluids inside the TVR. The size of the...
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Published in | 설비공학 논문집, 27(4) Vol. 27; no. 4; pp. 201 - 206 |
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Main Authors | , , |
Format | Journal Article |
Language | Korean |
Published |
대한설비공학회
2015
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Subjects | |
Online Access | Get full text |
ISSN | 1229-6422 2465-7611 |
DOI | 10.6110/KJACR.2015.27.4.201 |
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Abstract | The MVR was theoretically modeled by performing the polytropic process, and the polytropic coefficient was estimated by using the performance curve provided by the manufacturers. The TVR was investigated by applying the conservation equations to the movement of fluids inside the TVR. The size of the nozzle and diffuser was determined. Theoretical MVR and TVR modeling was verified by comparing the results of the model with the available design data. Besides, the effects of multi-staging of the MVR on power consumption, and the effects of suction and primary pressure on the sizing of TVR were investigated. |
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AbstractList | The MVR was theoretically modeled by performing the polytropic process, and the polytropic coefficient was estimated by using the performance curve provided by the manufacturers. The TVR was investigated by applying the conservation equations to the movement of fluids inside the TVR. The size of the nozzle and diffuser was determined. Theoretical MVR and TVR modeling was verified by comparing the results of the model with the available design data. Besides, the effects of multi-staging of the MVR on power consumption, and the effects of suction and primary pressure on the sizing of TVR were investigated. KCI Citation Count: 2 The MVR was theoretically modeled by performing the polytropic process, and the polytropic coefficient was estimated by using the performance curve provided by the manufacturers. The TVR was investigated by applying the conservation equations to the movement of fluids inside the TVR. The size of the nozzle and diffuser was determined. Theoretical MVR and TVR modeling was verified by comparing the results of the model with the available design data. Besides, the effects of multi-staging of the MVR on power consumption, and the effects of suction and primary pressure on the sizing of TVR were investigated. |
Author | 윤린(Rin Yun) 이창민(Chang Min Lee) 임정열(Jeong Yeol Lim) |
Author_xml | – sequence: 1 fullname: 이창민(Chang Min Lee) – sequence: 2 fullname: 임정열(Jeong Yeol Lim) – sequence: 3 fullname: 윤린(Rin Yun) |
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DocumentTitleAlternate | Investigation of MVR and TVR in Chemical Processes by Using Waste Steam |
DocumentTitle_FL | Investigation of MVR and TVR in Chemical Processes by Using Waste Steam |
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EndPage | 206 |
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Keywords | Compressor(압축기) TVR(열적 증기 재압축) Ejector(이젝터) MVR(기계적 증기 재압축) Recompression(재압축) |
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PublicationTitleAlternate | Korean journal of air-conditioning and refrigeration engineering |
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Title | 화학공정 내 폐증기를 활용한 MVR 및 TVR 연구 |
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