• 제목/요약/키워드: leadership in energy and environmental design (LEED)

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대규모 동계스포츠 및 집회시설의 친환경계획요소 분석 (Analysis of Sustainable Building Design Element in Winter Sports Stadia and Convention Centre)

  • 최동호;양정훈;석호태
    • 한국공간구조학회논문집
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    • 제9권3호
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    • pp.49-58
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    • 2009
  • 본 논문은 대공간에 적용된 친환경 계획요소 검토와 친환경요소기술의 적용성을 외국의 사례연구를 통해 분석함으로서 국내 친환경건축물 활성화와 설계기술 향상에 기여할 기초자료를 도출하고자 하였다. 본 연구에서는 2010년 동계올림픽 개최에 즈음하여 최근 완공된 캐나다 동계스포츠시설 2곳과 컨벤션센터 1곳을 대상으로 이들 대공간에 적용된 친환경계획요소를 소개하고, 이들 대공간에 적용된 친환경 건축기법을 LEED Green Building Rating System평가항목을 기준으로 분석하였다.

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국내 친환경 건축물 인증제도 평가항목의 중요도 분석 - 공동주택 인증심사기준 중심으로 - (Analyzing the Weight of Assessment Criteria in Korea Green Building Certification System - Focused on Certification Standards for Multi-unit Apartment Projects -)

  • 최여진;이상춘
    • KIEAE Journal
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    • 제12권1호
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    • pp.83-90
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    • 2012
  • Over the world, social demands and concerns of energy and resource depletions and environmental conservation have resulted in many researches and applications on sustainable development and construction. In order to support these demands and concerns, international green building certification systems such as LEED(Leadership in Energy and Environmental Design) and BREEAM(Building Research Establishment Environmental Assessment Method) were developed. In Korea, the green building certification system was introduced in 2000 and widely applied to all types of new buildings in order to induce the diffusion of sustainable buildings on May, 2010. This paper investigates the importance of assessment criteria on multi-unit apartment projects among certification rating systems using the AHP(Analytic Hierarchy Process) method and suggests a new direction on certification assessment standards. For applying the AHP method, the survey of staffs in green building certification consulting companies and architectural design companies was conducted via e-mail. As a result, criteria like energy, indoor environment, land use, pollution control, and ecological environment among 9 main ones turned out important on assessing green building certification at multi-unit apartment projects, while criteria like water resource, transportation, maintenance management, and material and resource did relatively unimportant.

그린캠퍼스를 위한 국내.외 대학시설관리(FM) 비교분석 - 에너지관리 중심 - (A Comparative Analysis of Domestic and Foreign Universities' Facility Management for Green Campus - Focusing on the Energy Management -)

  • 신은영;김준하
    • 교육시설 논문지
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    • 제19권1호
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    • pp.45-53
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    • 2012
  • Recently, as the environment issue has been stand out, people's interests in energy consumption of the building have been increased as well. Especially, university has been classified as the one of the main causes of excessive energy consumption. Therefore, domestic and foreign universities are trying to build a green campus in an attempt for sustainable development. Since early 2000s, foreign universities have been aware that one of the main causes of global warming is an excessive consumption of energy in universities. Accordingly, they adopted various energy management programs for the conservation. Ultimately, enforcing energy conservation and using alternative energy resulted in lower expense and it was a great help for the universities. On the other hand, excessive consumption of energy in domestic universities has been considered as serious, which led them to become the second main energy consumers in 2010. However, it seems people do not truly recognize the impotance of energy management, therefore, relatively little attention has been paid to this matter. Based on Leadership in Energy & Environmental Design(LEED) rating systems for on-campus building operation and maintenance, this research suggests the evaluation standard to effectively analyze the energy management activity with the best practices conducted in foreign universities and to solve the problem of campus facilities management in domestic universities. The result shows that domestic universities do not have a designated task force for effective energy management and the lack of energy professionals hinders for the long term development. Therefore, domestic universities should recognize the seriousness of the excessive energy consumption and develop low carbon green campus through proactive management practices since this is very essential for domestic universities to get more competitive in this global era.

의료시설의 친환경적 실내환경 조성을 위한 국내 친환경건축물 인증기준 개발에 관한 기초연구 (A Basic Study of the Development of Indoor Environment Assessment Items for Eco-Friendly Indoor Environment of Hospital)

  • 임태섭
    • 한국실내디자인학회논문집
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    • 제16권4호
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    • pp.47-53
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    • 2007
  • As more serious environmental problems of buildings, many researchers have recognized the importance of preserving the environment where we live as well as a necessity of developing architecture with eco-environmentally. As a result, our country and some advanced countries have tried to solve these problems in that developed green building assessment tools for estimating environmental performance of buildings. Among many kinds of buildings, hospital which have been relation with human beings has been laking in basic raw materials of researching hospital's environment. Especially, there are few materials about indoor environment of hospital. So, the facilities of patients not only have to depend on the quality of natural environment but be also taken into account of patients. The purpose of this study is to prepare the basic data to develop the items of indoor environmental assessment for hospital to improve the quality of hospital's indoor environment. To come to a conclusion, we used a method of comparing domestic green building certification criteria, LEED v.2.2 and GBTool 2005. Then, we analyzed them for the case studies. Consequently, we could grasp basic data to assist in effecting domestic green building certification criteria for hopital. Furthermore, we have made a progressive research about setting grades of it.

Case Studies on Space Zoning and Passive Façade Strategies for Green Laboratories

  • Kim, Jinho
    • Architectural research
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    • 제22권2호
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    • pp.41-52
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    • 2020
  • Laboratory buildings with specialized equipment and ventilation systems pose challenges in terms of efficient energy use and initial construction costs. Additionally, lab spaces should have flexible and efficient layouts and provide a comfortable indoor research environment. Therefore, this study aims to identify the correlation between the facade of a building and its interior layout from case studies of energy-efficient research labs and to propose passive energy design strategies for the establishment of an optimal research environment. The case studies in this paper were selected from the American Institute of Architects Committee on the Environment Top Ten Projects and Leadership in Energy and Environmental Design (LEED) certified research lab projects. In this paper, the passive design strategies of space zoning, façade design devices to control heating and cooling loads were analyzed. Additionally, the relationships between these strategies and the interior lab layouts, lab support spaces, offices, and circulation areas were examined. The following four conclusions were drawn from the analysis of various cases: 1) space zoning for grouping areas with similar energy requirements is performed to concentrate similar heating and cooling demands to simplify the HVAC loads. 2) Public areas such as corridor, atrium, or courtyard can serve as buffer zones that employ passive solar design to minimize the mechanical energy load. 3) A balanced window-to-wall ratio (WWR), exterior shading devices, and natural ventilation systems are applied according to the space programming energy requirements to minimize the dependence on mechanical service. 4) Lastly, typical laboratory space zoning categories can be revised, reversed, and even reconfigured to minimize the energy load and adjust to the site context. This study can provide deep insights into various design strategies employed for construction of green laboratories along with intuitive arrangement of various building components such as laboratory spaces, lab support spaces, office spaces, and common public areas. The key findings of this study can contribute towards creating improved designs of laboratory facilities with reduced carbon footprint and greenhouse emissions.