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        검색결과 5

        1.
        2015.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        A rapid urbanization has increased the portion of paved layer that results in the change of water circulation system. This change leads to frequent events of flooding, drought, and urban heat island. To resolve these issues, permeable pavement system based on Low Impact Development (LID) concept is being applied to international urban areas. Therefore it is necessary to establish a rational design procedure for the permeable pavement system that reflects our environmental conditions. iDue to inherent characteristics of permeable pavement system, water infiltrates thorough the layers so it may reduce the bearing capacity of sub-layers. In this study, an effort was made to investigate the effectiveness of geogrid reinforced crushed stone subbase layer based on field experimental program along with a limited numerical analysis. It reveals that geogrid reinforced sections improve the bearing capacity by close to 20%. In addition, a light weight deflectomenter (LWDT) appears to be promising for the compaction quality control of crushed stone subbase layer in order to construct qualified permeable pavement systems.
        4,000원
        3.
        2005.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        도로공사과정에서 발생되는 현장 발생암은 경제성을 고려하여 도로용 재료로 활용되고 있으나 풍화속도가 빠른 퇴적암 골재의 경우 품질기준 적합성 여부를 판단하기 곤란한 경우가 많이 있다. 본 연구는 현장에서 발생된 이암계 퇴적암을 보조기층용 재료로 활용하였을 때 문제점을 고찰한 것이다. 그 결과 마모율은 품질기준을 만족하였으나, 27.5~16mm 입도 범위에서 중량감소율은 편마암 및 사암의 경우 20~30%이었으나 이암계 퇴적암은 47%로 매우 높은 값을 나타내었다. 골재의 안정성 시험결과에서는 편마암 및 사암에 비하여 이암계 혼합석이 매우 높게 나타났으며, 동결 및 건조에 의한 촉진 풍화시험에 의한 중량감소율에서도 편마암 및 사암계 혼합석 3.8~21%에 대하여 이암계 혼합석은 58%를 나타내어 빠른 풍화특성을 나타내었다.
        4,000원
        5.
        2016.10 KCI 등재 서비스 종료(열람 제한)
        Recycling of incineration ash generated from domestic waste incinerators is important from environmental and energy conversation aspects. The main components of bottom ash are CaO, Al2O3, SiO2, P2O5, MgO, and Fe2O3, similar to geological components. However, it also contains heavy metal ions such as Cu2+, Pb2+, and Cr6+. The ash material was sintered at 1100 ~ 1150oC by adding pink kaolin to stabilize those heavy metals. The study analyzed the crystal phase and absorption rates of the sintered material for application as a sub-base layer material for roads and conducted tests for the requirements for sub-base layer materials for roads, such as CBR test, quantity of abrasion, and liquid limit. Considering the plasticity, water absorption, and compressive strength of the road base, the mixture with 76wt% bottom ash and 24wt% pink kaolin after sintering at 1,120oC, showed CBR test result of 33.0, quantity of abrasion of 30.3, and liquid limit of NP (no plasticity). These result indicated the possibility of using bottom ash as a sub-base layer material, which satisfied requirements of the standard specification for road construction.