• Title/Summary/Keyword: 주택의 에너지 효율

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The Study of Financing for Energy Efficiency Homes (주택 에너지효율향상을 위한 재정지원 방안에 관한 연구)

  • Park, Kihyun
    • KIEAE Journal
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    • v.12 no.6
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    • pp.63-68
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    • 2012
  • The aim of this study is to evaluate current policies and suggest the way of overcome financial impediments to the energy efficiency function of residential buildings. Based on this analysis the paper enumerates policy recommendations for enhancing how energy efficiency is addressed in building codes and other policies for residential buildings. For achieving this goal, this study conducts the cost-benefit analysis to measure total energy savings and associated total cost. The results of study shows that the cost is greater than the benefit from 1st to 4th year but the benefit will be greater than the cost for the rest of the year. In addition, this study designs a financial support method and an implementation mechanism. Investment from the capital market will take place with the government's interest subsidy. Home retrofit will be undertaken with low interest rate with 2.5% and the return will be paid by a monthly energy bill. The results of this study provides some useful insights for the policy design, including the importance of developing information tools for providing appropriate information to households.

Energy efficiency retrofit package plan for existing buildings (기존 건축물의 에너지 효율화 리트로핏 패키지 방안)

  • Kim, Su Min;Cho, Hyun Mi
    • Land and Housing Review
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    • v.11 no.1
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    • pp.95-101
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    • 2020
  • In the past few decades, the global population growth and rapid economic development have resulted in significant increases in building energy consumption. To reduce greenhouse-gas emissions and building energy consumption, building materials and energy technologies must be optimized. Building retrofitting is a more efficient method than reconstruction to improve the building energy performance. In order to improve the energy performance of existing buildings, this study proposed energy-efficiency retrofit plans and derived cost-effective retrofit plan. The energy efficient retrofit method is achieved through the packaging of energy technology and the energy and cost reduction effect of the energy efficiency retrofit package are analyzed. As a result of the study, the energy-efficiency retrofit package showed an energy reduction effect of up to 60% or more and a construction cost reduction of about 30%. This study argues that optimal energy and construction cost reduction of existing buildings are possible through the packaging of energy efficiency technology.

A Study on Design Methodology of the Advanced Home Automation System (차세대 주택자동화시스템 설계 방법론에 대한 연구)

  • Ko, Yun-Seok
    • The Journal of the Korea institute of electronic communication sciences
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    • v.8 no.12
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    • pp.1857-1864
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    • 2013
  • In 21 century, it is difficult to define the limit of home automation, Recently, based on the advanced digital communication technology and necessity, The scope of the home automation has widened to home energy management, integrated reading of home and home health care etc. beyond the existing home automation. However, those methodologies reduce the efficiency and economy, and make it harder to realize a compact home automation because those methodologies are proposed independently without a unified standard. Therefore, this paper investigates and analyzes these methodologies, and then proposes an advanced home automation system that enables a compact design and improves the efficiency and economics of the home automation system based on the analyzed result.

A Study on the Correlation of Certification system for the Green Building in Korea (국내 친환경건축물관련 인증제도의 연관성에 관한 연구)

  • Moon, Mi-Seon;Jung, Ji-Na;Ka, Cham-Hee;Lee, Jin-Sook;Tae, Choon-Seob
    • 한국태양에너지학회:학술대회논문집
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    • 2011.04a
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    • pp.263-268
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    • 2011
  • Presently, various building certification systems are being enforced in Korea. However, people are in confusion and have an aptitude to waste time and money because these certification systems for buildings have very similar criteria. After investigating the foreign certification systems and domestic certification systems for the building, it is required that some of similar building certification systems are integrated.

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The Regressive Causal Structure of Heating Energy Consumption Affected by Household Income and Housing Characteristics (소득수준과 주택특성에 따른 난방에너지 소비의 역진적 인과구조)

  • Choi, Mack Joong;Chung, I Re
    • Journal of Korea Planning Association
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    • v.53 no.6
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    • pp.101-116
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    • 2018
  • Paying an attention to the issue of energy poverty of low-income households and ensuing regressivity of energy consumption, this study empirically analyzes the effects of both household and housing characteristics on heating energy consumption in an integrated way and identifies their causal structure based on the 2016 Korea Housing Survey data provided by the Korean government. Multiple regression analysis shows that household income and deteriorated level of housing, such as age and degree of cracks have positive effects and floor area of housing has a negative effect on the heating energy consumption per unit area of housing (HECPUH). Path analyses further reveal that the direct effect of household income on HECPUH is offset by the indirect effects that are mediated by deteriorated level and floor area of housing, making the total effect statistically insignificant. As a result, there is no significant difference in HECPUH across all income strata, implying that low-income (high-income) households pay more (less) heating costs relative to their income level, since they reside in the houses with relatively low (high) energy efficiency. To deal with this regressive causal structure of energy consumption, a policy option is recommended to improve energy efficiency of low-income housing through the government assistance in its maintenance and repair.

A Study on the Estimation of Additional Cost for the Certification of Zero Energy Apartment Buildings (공동주택 제로에너지빌딩 인증을 위한 적정가산비 산정에 관한 연구)

  • Sa, Yong-gi;Haan, Chan Hoon
    • Korean Journal of Construction Engineering and Management
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    • v.20 no.5
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    • pp.21-30
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    • 2019
  • Environmental and energy issues such as abnormal climate and depletion of fossil fuel due to global warming have emerged as a critical task to threaten human survival. As a result, interest in the Zero Energy Building is increasing as it is an innovative building that can significantly contribute to building energy reduction and greenhouse gas reduction. In the market, however, the added cost of construction is a major stumbling block to the revitalization of the Zero Energy certification. In this study, general private apartment complexes were selected for research, detailed elements for Zero Energy certification were presented based on the construction criteria for eco-friendly houses from the initial design stage, and the cost efficiency analysis of the components for certification were presented. It has been analyzed that only Grade 3 certification can be implemented in apartments due to technical level and physical limitations. Also, after reviewing the cost trend during the lifecycle cost, all expenses can be recovered within 13 years after completion only in the case of grade 5 of the Zero Energy Building. The additional costs proposed in the present study are reflected appropriately in the review of projects for apartments scheduled for order in the future to contribute to the revitalization of the Zero Energy Building certification.

BIM Energy Efficiency Plan for Verification of Building Envelop Energy Code of Housing in USA - Based on the NYC Energy Conservation Code - (미국 공동주택의 건물 외피 에너지코드 검증을 위한 BIM 에너지 계획 방안 -뉴욕시 에너지 코드를 기준으로-)

  • Heo, Jinwoo
    • The Journal of the Convergence on Culture Technology
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    • v.8 no.4
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    • pp.313-322
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    • 2022
  • The number of architects who adopt BIM(Building Information Modeling) as the design method are gradually increasing because of its productivity and efficiency. Climate Change and Global Warming lead to legislation of new energy regulations and strengthen existing ones. The current architectural design methods (2D CAD) take a lot of time and effort to verify energy codes and are hard to adjust according to the design changes. The purpose of this study is to show the effectiveness of the BIM in building envelop energy modeling of the housing project. In the process of design method change, We could contribute to increasing productivity and efficiency in building energy verification through BIM because the updated value could be calculated simultaneously without information omission or recalculation process. The procedure for the study is as follows. Using BIM of the Goldin at Essex Crosing Housing Project by Revit 2011 as a case model, this study analyze the criteria for energy plan to conform to the energy code in NYC. The result value from the setting of the Revit model is compared with the reference value required by the NYC Energy Code. Finally, the data from BIM are entered into COMckeck, the energy verification program provided by U.S. Department of Energy, to check whether the building envelope energy performance conforms to NYC Energy Code.

An Empirical Study of Hot Water Supply Patterns and Peak Time in Apartment Housing with District Heating System (공동주택의 급탕부하 지속시간 및 부하 패턴에 관한 실증연구)

  • Kim, Sung-Min;Chung, Kwang-Seop;Kim, Young-Il
    • Journal of Energy Engineering
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    • v.21 no.4
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    • pp.435-443
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    • 2012
  • The combination of space shortage and the high population density concentrated in urban areas of South Korea has resulted in the growth of large-scale high-rise residential complexes, naturally affecting water and hot water usage patterns as well. But the current designs for water and hot water supply in South Korea rely mostly on international design standards and data calculated on site due to the severe shortage of basic data in relation to actual use, which result in the frequent problem of the under-or over-design of water and hot water supply. The following study measures the hot water supplier's conditions and the user's heat usage to realize the amount of time required for hot water supply load generation and the pattern of actual use in order to create basic data for effective hot water supply facility design and maintenance.