The Experts below are selected from a list of 16983 Experts worldwide ranked by ideXlab platform
Seungjun Roh - One of the best experts on this subject based on the ideXlab platform.
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the development of Apartment House life cycle co2 simple assessment system using standard Apartment Houses of south korea
Renewable & Sustainable Energy Reviews, 2011Co-Authors: Sungho Tae, Sungwoo Shin, Jeehwan Woo, Seungjun RohAbstract:This study classified the life cycle of buildings into a construction stage, an operation stage, a maintenance stage and a dissolution/disposal stage, and proposed a CO2 assessment method for each stage for the purpose of creating a simple life cycle CO2 assessment system for Apartment Houses. Specifically in the construction stage, major construction materials that are the source of more than 80% of CO2 emissions produced during building construction were selected, and a method of evaluating CO2 emissions for five standard Apartment Houses was proposed. In addition, amounts of CO2 emissions generated during the building operation stage and the maintenance stage were calculated based on the "Green Home Certification System" and the "Apartment House Building Long Term Repair Plan and Repair Rate" of the Korean Ministry of Land, Transportation and Maritime Affairs. For the dissolution/disposal stage, a CO2 assessment method was proposed that would enter into a database the amount of oil used by disposal equipment and other related types of machines, and analyze the process of waste treatment. Also, the potential of applying a simple assessment program was evaluated in connection with a life cycle CO2 assessment simulation utilizing an actual Apartment building. Consequently, the results of a building life cycle CO2 assessment using standard Apartment Houses as proposed in this study indicated a figure of 14,013.66Â ton-CO2. That figure is similar to 11,640.00Â ton-CO2 for existing Apartment Houses. In particular, the results of material production in the construction stage and CO2 calculation in the maintenance stage indicated significant results closely approximating the 80% of CO2 emissions attributed to construction material production noted earlier in this study at first.
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the development of environmental load evaluation system of a standard korean Apartment House
Renewable & Sustainable Energy Reviews, 2011Co-Authors: Sungwoo Shin, Sungho Tae, Jeehwan Woo, Seungjun RohAbstract:The purpose of this study is to develop a simple method to assess the amount of carbon dioxide (CO2) emitted during the production of construction materials used in the construction of a standard Korean Apartment House. This study is part of a wider effort to develop a system for evaluating the environmental load of construction during architectural planning and basic design phases. We formulated models of a standard Korean Apartment House and a super high-rise Apartment House, based on five reference floor plans for "green homes" provided by the Korean government. We identified major construction materials that account for over 80% of the CO2 emission that occurs during construction and built a database to evaluate the environmental loads of these materials according to House types described in terms of area, block type, combination of living units, or number of floors. We used the information in this database to develop technology to assess the amounts of CO2 that are emitted during the production of construction materials used to build residential Apartment Houses in Korea.
Sungwoo Shin - One of the best experts on this subject based on the ideXlab platform.
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assessment of ghg emission reduction performance for certification criteria of korea green building scheme g seed focusing on materials and resources category
Advanced Materials Research, 2014Co-Authors: Sungwoo ShinAbstract:The purpose of this study is to assess greenHouse gas (GHG) emission reduction performance among certification criteria constituting “materials and resources” category, as a part of study that configures weighted values of categories for the Korea Green Building Scheme (G-SEED). For this purpose, the subjects of assessment were classified into “reference Apartment House” newly constructed without application of certification criteria and “assessed Apartment House” newly constructed with reflection of certification criteria. In addition, direct and indirect GHG emission reduction performance of the assessed Apartment House was assessed from life cycle perspective in comparison to the reference Apartment House, reflecting the purpose of assessment according to certification criteria within the “materials and resources” category. As a result, GHG emission reduction performance of “displaying carbon emission of material” and “recycling” were deduced to be extremely excellent. GHG emission reduction performance of “flexibility” and “reducing food waste” ware analyzed to be relatively satisfactory. On one hand, GHG emission reduction performance of “appropriateness of measure to reduce furniture materials” and “use of eco-friendly products” ware assessed to be relatively insufficient.
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the development of Apartment House life cycle co2 simple assessment system using standard Apartment Houses of south korea
Renewable & Sustainable Energy Reviews, 2011Co-Authors: Sungho Tae, Sungwoo Shin, Jeehwan Woo, Seungjun RohAbstract:This study classified the life cycle of buildings into a construction stage, an operation stage, a maintenance stage and a dissolution/disposal stage, and proposed a CO2 assessment method for each stage for the purpose of creating a simple life cycle CO2 assessment system for Apartment Houses. Specifically in the construction stage, major construction materials that are the source of more than 80% of CO2 emissions produced during building construction were selected, and a method of evaluating CO2 emissions for five standard Apartment Houses was proposed. In addition, amounts of CO2 emissions generated during the building operation stage and the maintenance stage were calculated based on the "Green Home Certification System" and the "Apartment House Building Long Term Repair Plan and Repair Rate" of the Korean Ministry of Land, Transportation and Maritime Affairs. For the dissolution/disposal stage, a CO2 assessment method was proposed that would enter into a database the amount of oil used by disposal equipment and other related types of machines, and analyze the process of waste treatment. Also, the potential of applying a simple assessment program was evaluated in connection with a life cycle CO2 assessment simulation utilizing an actual Apartment building. Consequently, the results of a building life cycle CO2 assessment using standard Apartment Houses as proposed in this study indicated a figure of 14,013.66Â ton-CO2. That figure is similar to 11,640.00Â ton-CO2 for existing Apartment Houses. In particular, the results of material production in the construction stage and CO2 calculation in the maintenance stage indicated significant results closely approximating the 80% of CO2 emissions attributed to construction material production noted earlier in this study at first.
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the development of environmental load evaluation system of a standard korean Apartment House
Renewable & Sustainable Energy Reviews, 2011Co-Authors: Sungwoo Shin, Sungho Tae, Jeehwan Woo, Seungjun RohAbstract:The purpose of this study is to develop a simple method to assess the amount of carbon dioxide (CO2) emitted during the production of construction materials used in the construction of a standard Korean Apartment House. This study is part of a wider effort to develop a system for evaluating the environmental load of construction during architectural planning and basic design phases. We formulated models of a standard Korean Apartment House and a super high-rise Apartment House, based on five reference floor plans for "green homes" provided by the Korean government. We identified major construction materials that account for over 80% of the CO2 emission that occurs during construction and built a database to evaluate the environmental loads of these materials according to House types described in terms of area, block type, combination of living units, or number of floors. We used the information in this database to develop technology to assess the amounts of CO2 that are emitted during the production of construction materials used to build residential Apartment Houses in Korea.
Sungho Tae - One of the best experts on this subject based on the ideXlab platform.
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the development of Apartment House life cycle co2 simple assessment system using standard Apartment Houses of south korea
Renewable & Sustainable Energy Reviews, 2011Co-Authors: Sungho Tae, Sungwoo Shin, Jeehwan Woo, Seungjun RohAbstract:This study classified the life cycle of buildings into a construction stage, an operation stage, a maintenance stage and a dissolution/disposal stage, and proposed a CO2 assessment method for each stage for the purpose of creating a simple life cycle CO2 assessment system for Apartment Houses. Specifically in the construction stage, major construction materials that are the source of more than 80% of CO2 emissions produced during building construction were selected, and a method of evaluating CO2 emissions for five standard Apartment Houses was proposed. In addition, amounts of CO2 emissions generated during the building operation stage and the maintenance stage were calculated based on the "Green Home Certification System" and the "Apartment House Building Long Term Repair Plan and Repair Rate" of the Korean Ministry of Land, Transportation and Maritime Affairs. For the dissolution/disposal stage, a CO2 assessment method was proposed that would enter into a database the amount of oil used by disposal equipment and other related types of machines, and analyze the process of waste treatment. Also, the potential of applying a simple assessment program was evaluated in connection with a life cycle CO2 assessment simulation utilizing an actual Apartment building. Consequently, the results of a building life cycle CO2 assessment using standard Apartment Houses as proposed in this study indicated a figure of 14,013.66Â ton-CO2. That figure is similar to 11,640.00Â ton-CO2 for existing Apartment Houses. In particular, the results of material production in the construction stage and CO2 calculation in the maintenance stage indicated significant results closely approximating the 80% of CO2 emissions attributed to construction material production noted earlier in this study at first.
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the development of environmental load evaluation system of a standard korean Apartment House
Renewable & Sustainable Energy Reviews, 2011Co-Authors: Sungwoo Shin, Sungho Tae, Jeehwan Woo, Seungjun RohAbstract:The purpose of this study is to develop a simple method to assess the amount of carbon dioxide (CO2) emitted during the production of construction materials used in the construction of a standard Korean Apartment House. This study is part of a wider effort to develop a system for evaluating the environmental load of construction during architectural planning and basic design phases. We formulated models of a standard Korean Apartment House and a super high-rise Apartment House, based on five reference floor plans for "green homes" provided by the Korean government. We identified major construction materials that account for over 80% of the CO2 emission that occurs during construction and built a database to evaluate the environmental loads of these materials according to House types described in terms of area, block type, combination of living units, or number of floors. We used the information in this database to develop technology to assess the amounts of CO2 that are emitted during the production of construction materials used to build residential Apartment Houses in Korea.
Jeehwan Woo - One of the best experts on this subject based on the ideXlab platform.
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the development of Apartment House life cycle co2 simple assessment system using standard Apartment Houses of south korea
Renewable & Sustainable Energy Reviews, 2011Co-Authors: Sungho Tae, Sungwoo Shin, Jeehwan Woo, Seungjun RohAbstract:This study classified the life cycle of buildings into a construction stage, an operation stage, a maintenance stage and a dissolution/disposal stage, and proposed a CO2 assessment method for each stage for the purpose of creating a simple life cycle CO2 assessment system for Apartment Houses. Specifically in the construction stage, major construction materials that are the source of more than 80% of CO2 emissions produced during building construction were selected, and a method of evaluating CO2 emissions for five standard Apartment Houses was proposed. In addition, amounts of CO2 emissions generated during the building operation stage and the maintenance stage were calculated based on the "Green Home Certification System" and the "Apartment House Building Long Term Repair Plan and Repair Rate" of the Korean Ministry of Land, Transportation and Maritime Affairs. For the dissolution/disposal stage, a CO2 assessment method was proposed that would enter into a database the amount of oil used by disposal equipment and other related types of machines, and analyze the process of waste treatment. Also, the potential of applying a simple assessment program was evaluated in connection with a life cycle CO2 assessment simulation utilizing an actual Apartment building. Consequently, the results of a building life cycle CO2 assessment using standard Apartment Houses as proposed in this study indicated a figure of 14,013.66Â ton-CO2. That figure is similar to 11,640.00Â ton-CO2 for existing Apartment Houses. In particular, the results of material production in the construction stage and CO2 calculation in the maintenance stage indicated significant results closely approximating the 80% of CO2 emissions attributed to construction material production noted earlier in this study at first.
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the development of environmental load evaluation system of a standard korean Apartment House
Renewable & Sustainable Energy Reviews, 2011Co-Authors: Sungwoo Shin, Sungho Tae, Jeehwan Woo, Seungjun RohAbstract:The purpose of this study is to develop a simple method to assess the amount of carbon dioxide (CO2) emitted during the production of construction materials used in the construction of a standard Korean Apartment House. This study is part of a wider effort to develop a system for evaluating the environmental load of construction during architectural planning and basic design phases. We formulated models of a standard Korean Apartment House and a super high-rise Apartment House, based on five reference floor plans for "green homes" provided by the Korean government. We identified major construction materials that account for over 80% of the CO2 emission that occurs during construction and built a database to evaluate the environmental loads of these materials according to House types described in terms of area, block type, combination of living units, or number of floors. We used the information in this database to develop technology to assess the amounts of CO2 that are emitted during the production of construction materials used to build residential Apartment Houses in Korea.
Špaček Miroslav - One of the best experts on this subject based on the ideXlab platform.
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Apartment House with barrier-free Apartments
Vysoké učení technické v Brně. Fakulta stavební, 2018Co-Authors: Špaček MiroslavAbstract:The topic of bachelor´s thesis is design four storey Apartment House with barrier-free Apartments. The building is four storey, roofed hipped roof. The fourth floor is residential attic. The building is located on plot of number 3800/32 in the village Velke Mezirici, cadastral area Velke Mezirici. The vertical constructions are designed from aerated concrete block Ytong and there are insulated with contact insulation systém ETICS. Horizontal constructions are designed large format precast floor slabs Ytong. The roofing is done using timber roof truss. Part of the design is thermal assessment, accustic assessment and fire safety assessment
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Apartment House with barrier-free Apartments
Vysoké učení technické v Brně. Fakulta stavební, 2018Co-Authors: Špaček MiroslavAbstract:Předmětem bakalářské práce je návrh čtyřpodlažního bytového domu s bezbariérovými byty. Objekt je čtyřpodlažní, zastřešený valbovou střechou. Čtvrté nadzemní podlaží je obytné podkroví. Stavba je umístěna v obci Velké Meziříčí na pozemku parcelního čísla 3800/32, katastrálního území Velké Meziříčí. Svislé konstrukce jsou navrhnuty z pórobetonových tvárnic Ytong a jsou zatepleny kontaktním zateplovacím systémem ETICS. Vodorovné konstrukce jsou navrženy velkoformátové stropní dílce Ytong. Zastřešení je provedeno pomocí dřevěného krovu. Součást návrhu je tepelně technické posouzení, akustické posouzení a požárně bezpečnostní posouzení.The topic of bachelor´s thesis is design four storey Apartment House with barrier-free Apartments. The building is four storey, roofed hipped roof. The fourth floor is residential attic. The building is located on plot of number 3800/32 in the village Velke Mezirici, cadastral area Velke Mezirici. The vertical constructions are designed from aerated concrete block Ytong and there are insulated with contact insulation systém ETICS. Horizontal constructions are designed large format precast floor slabs Ytong. The roofing is done using timber roof truss. Part of the design is thermal assessment, accustic assessment and fire safety assessment.