• Title/Summary/Keyword: 장수명 주택

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A Comparative Study on the Life Cycle Cost of Wall Type Apartment and Beam-Column Structural Apartment (생애주기비용 분석을 통한 벽식 구조 공동주택과 장수명 공동주택의 경제성 비교 연구)

  • Lee, Jeehee;Kim, Kyuree;Son, JeongWook;Yi, June-Seong
    • Korean Journal of Construction Engineering and Management
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    • v.15 no.6
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    • pp.35-43
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    • 2014
  • Ministry of Land, Infrastructure and Transport (MOLIT) promote long-life housing to reduce social costs generated by poorly considered rebuilding and extend the life-span of housing. Long-life housing has advantages of durability, floor plan variability, efficient maintenance and ease of remodeling because it is a beam-column structure building. However, long-life housing requires somewhat higher initial construction cost than wall type apartments. It makes increase of long-life housing more difficult. In this study, we compare between wall-type apartment and beam-column structure apartment from Life-Cycle Cost's viewpoint. As a result of the study, long-life housing incurs 18% higher initial cost than wall type apartment, but is 7% more economical than wall type apartment in terms of Life Cycle Cost. Therefore, it is shown that long-life housing could be a beneficial alternative to traditional wall type apartments.

100년 가는 장수명 아파트 개발-미래 주거 문화 개선.건설 기술 선진화

  • Kim, Hye-Yeong
    • 주택과사람들
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    • s.219
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    • pp.62-63
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    • 2008
  • 최근 지속 가능한 개발이 도시 및 주택 정책의 중요한 과제로 떠오르면서 주거 문화에도 많은 변화가 요구되고 있다. 그중 미래 주택 문화 개선의 첫걸음으로 제시되는 것이 바로 공동 주택의 장수명화다. 세계적인 추세에 따라 국내에서도 지속적인 삶을 영위할 수 있는 100년 주택 건설을 목표로 기술 개발에 힘쓰고 있다.

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A Comparative Study between Korean and Japanese System concerning Long-Life Housing (한.일 장수명 공동주택관련 제도 비교 연구)

  • Lee, Bo-Ra;Hwang, Eun-Kyoung;Kim, Soo-Am
    • Proceeding of Spring/Autumn Annual Conference of KHA
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    • 2006.11a
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    • pp.448-451
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    • 2006
  • Multi-residential housing in Korea has many problems basically because maintenance, management, and remodelling have been done without considering building elapse and residents' needs. Residential open building has been suggested as one of the solutions. Even though the techniques have been actively developed for residential open building in Japan and the Netherlands, some obstacles are still existing. Especially in Korea, due to the lack of studies for facilitating residential open building, the development and popularization of residential open building are delayed. With the concern that the facilitation of process and systems is as important as technical development, the evaluation of process and systems is needed for promoting residential open building. As result, strong investigation of current situation can offer basic foundation to facilitate residential open building. The purpose of this study is to propose plans to facilitate residential open building in Korea through a comparative study between Korean and Japanese system.

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Infill-system Development for Long-Life Housing with Durability & Flexibility: Focused on the Constructing and Evaluating Application of Mock-up House (내구성 및 가변성을 갖는 장수명 공동주택의 가변요소 시스템 개발 : 실험주택 건립 및 적용성 평가를 중심으로)

  • Cheong, So-Yi;Park, Joon-Young;Chun, Young-Soo
    • Land and Housing Review
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    • v.2 no.4
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    • pp.397-406
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    • 2011
  • This research aims to develop various infill-systems for practically applying to long-life housing with 100-year durability and flexibility as a strategy for realizing sustainable residential environment. Especially, the developed infill-systems & technologies were concentrated to the mock-up house applied with the standard model of long-life housing, and their in-situ applicability by a phase, experts' consultation, and questionnaire survey were also evaluated. This research was executed to divide by 3 phases. In the First phase infill-systems for a housing unit of $84m^2$ exclusive use area as well as a support of whole structure and infill-systems including dry wall, and windows were constructed, and their in-situ applicability were evaluated. In the Second phase vertical integration of upper and lower housing units of $50m^2$ and $40m^2$ exclusive use area was investigated the first in domestic for 3 housing units of $50m^2$ exclusive use area. In addition, various infill-systems including the horizontal expansion of $50m^2$ and $10m^2$ exclusive use areas were also constructed and evaluated on their in-situ applicability. In the third phase diverse performance tests and field investigation for in-situ verifying of dry Ondol, developed this research, were executed to improve their practicability. Inner dry walls were taken apart, moved and re-constructed for verifying their practicability to investigate 3R-Reduce, Reuse and Recycle-realization too.

Constructing Mock-up House and Evaluating Field Application for Development of Standard Long-Life Housing Model (장수명 공동주택 표준모델 개발을 위한 실험주택 건립과 현장적용성 평가)

  • Chin, Ju-Won;Jang, Han-Doo;Choi, Kyoung-Lyoul;Park, Joon-Young
    • Proceeding of Spring/Autumn Annual Conference of KHA
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    • 2008.11a
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    • pp.167-172
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    • 2008
  • The ultimate objective of this research is to develop the technologies for the construction of 100-year housing as the first task for improving housing environments. The technological development of 100-year housing makes it possible to advance construction technologies and part development, to develop long-life housing with durability and Flexibility responding to customers' needs for future living space. At first, for this purpose, the applications according to the types of the Standard Model of Long-life Housing are proposed to respond to the life-cycle of near-future demographic and social structure, and the construction of the Mock-up House execute based on the location selected during the 2nd year and the basic plan. Then the Standard Model of Long-life Housing are advanced and proposed through evaluating the field applicability of the Mock-Up House.

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Flexible Unit Floor Plan of Off-Site Construction Housing Considering Long-Lasting Housing Certification System (장수명주택 인증을 고려한 OSC공법 주택의 가변형 평면계획 연구)

  • Lee, Ji-Eun;Roh, Jeong-Yeol;Kwon, Soo-Hye;Kim, Seung-Mo
    • Land and Housing Review
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    • v.12 no.4
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    • pp.103-117
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    • 2021
  • With the current rapid changes in population and technology, the long-lastig housing certification system is a means of prolonging the physical and functional lifespan of a building. The certification requires differentiation between the structure and infill elements to allow for variability and ease of repairs. This works well with prefabricated houses so this study investigated the possibility of applying the long-lastig housing certification requirements to apartment construction using off-site construction (OSC) methods focused on the installation of bathrooms (plumbing and toilet) that differ from the traditional wet method. This study examined three different sized floor plans at 22 m2, 46 m2, and a combined one resulting in 69 m2. The larger 69 m2 plan utilized a removeable non-load bearing wall to increase flexibility in the layout of the floorplan. The apartments are constructed of steel reinforced concrete composite columns on a 9 m × 10.5 m grid with integrated slabs. The exterior and interior infill walls are all non-load bearing with some containing plumbing. This separation of the structure and infill walls can help meet some of the criteria in the long-lastig housing certification, particularly with the ease of repairs. Technologies that facilitate the replacement of infill elements that contain plumbing and other building services can benefit the nation by reducing carbon emissions and therefore tax incentives should be introduced to increase the adoption of the proposed construction methods.

A Study on design method of the environmental Interface of Long Life Housing (장수명 공동주택 인터페이스의 친환경적 설계방향에 관한 연구)

  • Son, Young Min;Wang, Woo Chul;Choi, Young Ho
    • KIEAE Journal
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    • v.9 no.3
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    • pp.3-12
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    • 2009
  • The purpose of this study is to suggest ways to design for the environmental Interface of Long Life Housing. Research, improving the performance of the interface, is underway at the research organization of Long Life Housing. Infill system should accommodate the various changes in the space. So dismantlement, replacement, and repair of the act are essential. In this process, A lot of substance, which can damage or spoil the environment, may be produced. However, the eco-friendly aspects of the interface design of infill system is not made in the approach or evaluation. Therefore, this paper is to analyze the problem of Interface of Long Life Housing in terms of eco-friendly, and it try to find a design method, complemented in the next research.