인공어초용 재생골재 콘크리트의 최적 배합설계 모델

The Purpose of this study is to recycle the waste concrete, which is generated in huge quantities, from construction works. in order to achieve this goal, it is important to determine the compressive strength, workability, slump, and ultrasonic velocity of recycled aggregate concrete. Thus, several...

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Published inHan-guk haeyang gonghak hoeji (Online) Vol. 18; no. 1; pp. 53 - 62
Main Authors 홍종현(CHONG-HYUN HONG), 김문훈(MOON-HOON KIM), 우광성(KWANG-SUNG WOO), 고성현(SUNG-HYUN GHO)
Format Journal Article
LanguageKorean
Published 한국해양공학회 2004
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Abstract The Purpose of this study is to recycle the waste concrete, which is generated in huge quantities, from construction works. in order to achieve this goal, it is important to determine the compressive strength, workability, slump, and ultrasonic velocity of recycled aggregate concrete. Thus, several experiment parameters are considered, such as water-cement ratios, sand percentage, and fine aggregate composition ratios, in order to apply the recycled aggregate concrete to pre-cast artificial fishing reefs. From the results, it has been shown that the proper mix designs for reef concrete are W/C=45%, S/a=50%, SR50:SN50 in recycled sand and natural sand mix combination case, W/C=45%, S/a=50%, SC50:SN50 in crushed sand and natural sand mix combination case, W/C=45%, S/a=50%, SR50:SC50 in recycled sand and crushd sand mix combination case. Also, this study shows that the shape and surface roughness of fine aggregate particles have an effect on the strength, slump, ultrasonic velocity of tested concrete, and the compressive strength ratios of 7days' and 90days' curing ages of recycled aggregate concrete are about 70% and 110% of 28days' curing age.
AbstractList The purpose of this study is to recycle the waste concrete, which is generated in huge quantities, from construction works. In order to achieve this goal, it is important to determine the compressive strength, workability, slump, and ultrasonic velocity of recycled aggregate concrete. Thus, several experiment parameters are considered, such as water-cement ratios, sand percentage, and fine aggregate composition ratios, in order to apply the recycled aggregate concrete to pre-cast artificial fishing reefs. From the results, it has been shown that the proper mix designs for reef concrete are W/C=45%, S/a=50%, SR50:SN50 in recycled sand and natural sand mix combination case, W/C=45%, S/a=50%, SC50:SN50 in crushed sand and natural sand mix combination case, W/C=45%, S/a=50%, SR50:SC50 in recycled sand and crushed sand mix combination case. Also, this study shows that the shape and surface roughness of fine aggregate particles have an effect on the strength, slump, ultrasonic velocity of tested concrete, and the compressive strength ratios of 7days' and 90days' curing ages of recycled aggregate concrete are about 70% and 110% of 28days' curing age.1. 서 론근래에 들어 연근해 어장에 대한 바다목장화 사업이 본격화되고 있다. 바다목장화 사업의 일환인 인공어초 사업의 중요성이 더욱 부각되고 있는 시점이다. 인공어초는 해중에 고기집 역할을 하도록 형상과 재질을 자연초에 가깝게 인위적으로 제조한 해중 구조물이다. 이러한 인공어초를 넣어둔 바다에는 식물성 플랑크톤과 동물성 플랑크톤이 집중발생 하게 되는 것은 물론, 어초의 음영효과, 와류효과 및 도피처효과가 극대화되어 새로운 어장을 형성하면서 어획량이 2배 이상 증가하는 효과가 있다(이종렬 등, 2002). 국내의 일반어초는 14종이 지정되어 있고, 현재 시설되고 있는 인공어초의 99%가 콘크리트 인공어초이다. 따라서, 방대한 양의 콘크리트가 어초 조성을 목적으로 대량 소비되고 있고 이에따른 골재채취와 관련한 환경문제가 제기되고 있다. 한편, 산업폐기물을 인공어초로 재활용하려는 시도가 최근에 이루어지고 있는데 폐선박을 인공어초로 재활용하는 사례가 대표적인 예이다. 건설폐기물도 인공어초로 재활용될 가능성이 매우 KCI Citation Count: 4
The Purpose of this study is to recycle the waste concrete, which is generated in huge quantities, from construction works. in order to achieve this goal, it is important to determine the compressive strength, workability, slump, and ultrasonic velocity of recycled aggregate concrete. Thus, several experiment parameters are considered, such as water-cement ratios, sand percentage, and fine aggregate composition ratios, in order to apply the recycled aggregate concrete to pre-cast artificial fishing reefs. From the results, it has been shown that the proper mix designs for reef concrete are W/C=45%, S/a=50%, SR50:SN50 in recycled sand and natural sand mix combination case, W/C=45%, S/a=50%, SC50:SN50 in crushed sand and natural sand mix combination case, W/C=45%, S/a=50%, SR50:SC50 in recycled sand and crushd sand mix combination case. Also, this study shows that the shape and surface roughness of fine aggregate particles have an effect on the strength, slump, ultrasonic velocity of tested concrete, and the compressive strength ratios of 7days' and 90days' curing ages of recycled aggregate concrete are about 70% and 110% of 28days' curing age.
Author 홍종현(CHONG-HYUN HONG)
고성현(SUNG-HYUN GHO)
김문훈(MOON-HOON KIM)
우광성(KWANG-SUNG WOO)
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  fullname: 고성현(SUNG-HYUN GHO)
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DocumentTitleAlternate Optimal Mix Design Model of Recycled Aggregate Concrete for Artificial Fishing Reefs
DocumentTitle_FL Optimal Mix Design Model of Recycled Aggregate Concrete for Artificial Fishing Reefs
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Keywords Precast Artificial Fishing Reefs 인공어초
Mix Design Model 배합설계모델
Recycled Aggregate Concrete 재생골재 콘크리트
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Title 인공어초용 재생골재 콘크리트의 최적 배합설계 모델
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