• 제목/요약/키워드: Energy Consumption Reduction

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착의량별 실내설정온도에 따른 난방에너지 및 온실가스 저감량 산정 연구 (A Study on Estimating Reduction of Heating Energy and CO2 by Indoor Setting Temperature with Clo)

  • 윤종호;이철성;김효중;박재완;신우철
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2009년도 춘계학술발표대회 논문집
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    • pp.115-120
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    • 2009
  • The studies for mechanical performance development have been examined to reduce energy consumption in building construction field. However, The energy consumption using in building for heating is impacted by not only system performance but also PMV particularly at temperature and clo. Most energy using in building part is mainly consumed for heating and cooling to keep comfort temperature. Heating energy consumption is bigger than cooling energy in Korea because of temperature difference in winter in comparison with summer at apartment building. This means that energy consumption can be changed by occupancy's comfort setting temperature in apartment building. This study evaluate actual comfort temperature range by clo and examined heating energy consumption by Esp-r and CO2 reduction possibility. The results show that keeping ASHRAE standards can reduce heating energy up to 23%; also, wearing underclothes with ASHRAE standard can reduce heating energy up to 47.8%. Option 4 showing Maximum CO2 emission reduction indicates that kerosene. LNG and electricity can reduce 1.5t, 1.7t, 2.46t respectively in comparison with option 2.

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패시브 하우스 디자인 요소를 적용한 농촌지역 단독주거건물의 난방에너지 모니터링 연구 (A Study on Heating Energy Monitoring of a Rural Detached House Applying Passive House Design Components)

  • 조경민;이태구;한영해
    • KIEAE Journal
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    • 제13권2호
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    • pp.39-46
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    • 2013
  • Recently, the field of construction is putting a variety of effort into reducing CO2, since global warming is being accelerated due to climate changes and the increase of greenhouse gas. For reduction of CO2 in the field of construction, it is required to make plans to cut down heating energy of buildings and especially, it is urgently needed to cut down energy of residential buildings in rural area where occupies the majority of consumption of petroleum-based energy sources. Therefore, this research compared and analyzed the actual energy consumption, by evaluating energy performance of a detached house applying passive house design components for reduction of energy. As the result, energy consumption showed remarkable differences, according to the operation of a heat recovery ventilation unit which is one of passive house design components, and building energy consumption displayed remarkable differences, too, depending on the difference of airtightness performance during building energy simulation conducted in process of design. Based on these results, the importance of airtightness performance of passive house was verified. The result of the actual measurement of energy consumption demonstrated that LNG was most economical amongst several heat resources yielded, on the basis of LPG source energy consumption measured within a certain period of time, and it was followed by kerosene. LPG was analyzed to have a low economic efficiency, when used for heating.

기존 농촌주택과 패시브형 주택의 에너지 요구량 비교분석 - PHPP분석을 통한 주택의 기밀성 및 창호성능 분석을 중심으로 (An Analysis of the Building Energy Demand of Rural House and Passive type House - An Analysis of the Airtightness and Window system Performance according to using PHPP)

  • 조경민;이태구;김주수
    • KIEAE Journal
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    • 제11권4호
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    • pp.55-61
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    • 2011
  • Due to global warming issues caused by climate changes which are internationally being highlighted, recently, there are lots of efforts under way to reduce energy consumption in various fields. Currently, 25 percent of energy consumption in Korea are being generated from buildings and especially, nearly 54 percent of them are being consumed by households. This study, therefore, aims to consider energy consumption status in the existing rural houses and analyze structure system performance, window system performance and air-permeability of domestic passive-type buildings using PHPP which is an analysis program of building energy to improve energy consumption problems in rural areas. Then, energy reduction plans in rural houses were proposed, by comparing and analyzing energy reduction of the existing rural houses, based on these data.

The Effectiveness of New Power Generation and Energy Demand Reduction to Achieve Greenhouse Gas Reduction Goals in Building Area

  • Park, Seong-Cheol;Kim, Hwan-Yong;Song, Young-Hak
    • Architectural research
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    • 제18권2호
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    • pp.59-64
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    • 2016
  • Since the massive power outages that hit across the nation in September 2011, a growing imbalance between energy supply and demand has led to a severe backup power shortage. To overcome the energy crisis which is annually repeated, a policy change for deriving energy supply from renewable energy sources and a demand reduction strategy has become essential. Buildings account for 18% of total energy consumption and have great potential for energy efficiency improvements; it is an area considered to be a highly effective target for reducing energy demand by improving buildings' energy efficiency. In this regard, retrofitting buildings to promoting environmental conservation and energy reduction through the reuse of existing buildings can be very effective and essential for reducing maintenance costs and increasing economic output through energy savings. In this study, we compared the energy reduction efficiency of national power energy consumption by unit production volume based on thermal power generation, renewable energy power generation, and initial and operating costs for a building retrofit. The unit production was found to be 13,181GWh/trillion won for bituminous coal-fired power generation, and 5,395GWh/trillion won for LNG power generation, implying that LNG power generation seemed to be disadvantageous in terms of unit production compared to bituminous coal-fired power generation, which was attributable to a difference in unit production price. The unit production from green retrofitting increased to 38,121GWh/trillion won due to the reduced energy consumption and benefits of greenhouse gas reduction costs. Renewable energy producing no greenhouse gas emissions during power generation and showed the highest unit production of 75,638GWh/trillion won, about 5.74 times more effective than bituminous coal-fired power generation.

국내 공동주택 부문의 친환경건축 인증 평가 항목 및 사례 분석 (The Analysis on the Evaluation Items of Korea Green Building Certification Criteria by the Case Studies of Collective Housing)

  • 김창성
    • KIEAE Journal
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    • 제13권2호
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    • pp.93-100
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    • 2013
  • Many countries have made their best to protect the earth from global warming and to find solutions for the reduction of carbon dioxide emittion and energy consumption. Especially, buildings have emitted over 40% of carbon dioxide against whole quantities emitted to the earth. Therefore, the reduction of carbon dioxide emitted from buildings require to save the earth environment. Energy consumption of buildings in Korea has reached 24% of total energy quantities, and energy consumption of collective housing has been continuously increasing. So, Korea government has also executed the Green Building Certification Criteria(GBCC). The GBCC evaluates the 8 types of buildings - collective housing, office, school, etc - to certificate the green building. In this paper, the evaluation items of collective housing in GBCC were reviewed to be used as the reference data for future revisions by the case studies. According to the results of this study, current version of GBCC requires additional revisions about the evaluations of energy consumption monitoring, commissioning and existing building.

실별 전력 소비패턴에 의거한 온실가스 감축 잠재량 산정 - 서울대학교 관악 캠퍼스를 대상으로 - (A Case Study of GHG Reduction Based on Electricity Consumption Pattern of Individual Rooms : In case of Seoul National University)

  • 김석영;박문서;이현수;김수영;정혜진
    • 한국건설관리학회논문집
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    • 제14권4호
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    • pp.55-64
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    • 2013
  • 온실가스 에너지 목표관리제가 시행됨에 따라, 해당 사업장은 2020년까지 온실가스 배출 전망치 대비 30% 이상을 의무적으로 감축해야 한다. 에너지소비의 큰 비중을 차지하는 대학교 부문 역시 온실가스 감축이 요구됨에도 불구하고, 교육기관의 특성 상 에너지 절감에 투자할 수 있는 예산은 한정적이므로 고가의 대응책 적용에는 한계가 따른다. 따라서 본 연구는 서울대학교 관악캠퍼스를 대상으로 실 레벨에서 쉽게 적용 가능한 저가의 에너지감축 방안을 도출하고, 이를 통한 최대감축잠재량을 산정하는 사례연구를 목적으로 한다. 먼저, 관악캠퍼스 내 표본이 될 11개 용도의 실을 뽑아 1월 1일부터 7월 31일까지 에너지소비량을 매일 실측하였고, 실별 전력기기 계수 조사를 통해 실용도별 표준모형을 구축하였으며, 사용자 인터뷰와 설문 및 행정조사를 통해 전력소비패턴을 분석함으로써 실용도 표준모형 기반의 기기별 소비전력량을 산출하였다. 이를 기반으로, 32개의 감축기술 및 실천프로그램을 도출하여 실용도 표준모형에 적용하고 각 프로그램별 최대감축비율을 기기별 소비전력량에 곱해 기기별 최대감축량을 유도함으로써, 실별 월별 최대감축량과 관악캠퍼스 최대감축잠재량을 산정하였다. 그 결과, 본 연구가 제안한 감축기술 및 실천프로그램의 적용 시 1월부터 7월까지 약 $5,311tCO_2$-eq 즉 동일기간 관악캠퍼스 전체 에너지 사용량의 12.66%에 해당되는 양을 감축할 수 있으며, 2016년까지 서울대학교 필요감축량의 24.48%를 감축할 수 있는 것으로 조사되었다.

Simultaneous water and energy saving of wet cooling towers, modeling for a sample building

  • Ataei, Abtin;Choi, Jun-Ki;Hamidzadeh, Zeinab;Bagheri, Navid
    • Advances in environmental research
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    • 제4권3호
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    • pp.173-181
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    • 2015
  • This article outlines a case study of water and energy savings in a typical building through a modelling process and analysis of simultaneous water-energy saving measures. Wet cooling towers are one of the most important equipments in buildings with a considerable amount of water and energy consumption. A variety of methods are provided to reduce water and energy consumption in these facilities. In this paper, thorough the modeling of a typical building, water and energy consumption are measured. Then, After application of modern methods known to be effective in saving water and energy, including the ozone treatment for cooling towers and shade installation for windows, i.e. fins and overhangs, the amount of water and energy saving are compared with the base case using the Simergy model. The annual water consumption of the building, by more than 50% reduction, has been reached to 500 cubic meters from 1024 cubic meters. The annual electric energy consumption has been decreased from 405,178 kWh to 340,944 kWh, which is about 16%. After modeling, monthly peak of electrical energy consumption of 49,428 has dropped to 40,562 kWh. The reduction of 18% in the monthly peak can largely reduce the expenses of electricity consumption at peak.

전국 중학교 시설의 에너지 사용실태 분석 연구 (A Study on Analysis of Energy Consumption of the Middle School Facilities in Korea)

  • 윤종호;신우철;조진일;박재완;김효중
    • KIEAE Journal
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    • 제10권4호
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    • pp.45-50
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    • 2010
  • This study for middle school facilities is second following the study of the energy consumption of primary school facilities. There is not on the analysis of the current energy usage for middle school facilities in nations to set goals of energy reduction. Therefore, The purpose of this study is to present various analysis result of energy consumption which is a statistical analysis of domestic middle school facilities in South Korea. As a consequence, each average energy consumption at the domestic middle school facilities analyzed as following after changing as unit 'kWh' only for comparison with every energy source. It represents that the energy consumption of electric power was 183.7MWh(70.2%), gas consumption for heating was 46.5MWh(17.8%), oil consumption was 26.5MWh(10.1%), district energy was 5.1MWh(1.9%). This result describes that consumption of electric power was large greatly and it reflects the expectation that it will climb the demand regarding this energy in the future. In additionally, it analyzed average energy consumption with $74.4kWh/m^2$ by the unit area of air-conditioning and the district which has large energy consumption was Seoul with $91.6kWh/m^2$.

물류센터의 에너지 효율 개선 방안에 관한 연구 (A Study on the Improvement of Energy Efficiency in Warehouses)

  • 선종근;류호상
    • 조명전기설비학회논문지
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    • 제26권6호
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    • pp.66-72
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    • 2012
  • The main sources of energy consumption in warehouses are MHE(Material Handling Equipment), HVAC(Heating, Ventilating and Air Conditioning) and Lighting. Warehouses in advanced countries raise energy efficiencies with energy consumption diagnosis, technology development and systematic management and improvements for MHE, HVAC and Illuminating, etc. They have managed illuminating system, air conditioning, motor driven system, air circulation method, dock facility, layout, AS/RS, conveyor system and battery management, etc. Ansong Pyeongtaek area investigation resulted that 43.9[%] of enterprises are managing partly energy consumption source. But the data resulted with not substantial management of energy consumption but passive management for only electric bill curtailment. Therefore through survey research & visiting interviews of some companies in Ansong Pyeongtaek area, we understood the status of energy consumption source management and proposed energy efficiency methods on the basis of that results.

건축물의 외피성능 및 실내온도에 따른 에너지 사용량에 관한 연구 (Study on Energy Consumption according to Building Envelope Performance and Indoor Temperature)

  • 유호천;강현구
    • 한국태양에너지학회 논문집
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    • 제31권3호
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    • pp.101-108
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    • 2011
  • This study aims to suggest an energy consumption improvement plan for university buildings through an analysis of energy consumption. Upon a simulation of subject building to interpret energy consumption, it was found that 154.07kWh/$m^2$ of energy is consumpted annually. Improvement of design elements can cut down the energy consumption to 135.61kWh/$m^2$ according to an energy reduction analysis related to envelope performance improvement. Additional improvement of lights and heat exchanger can curtail annual energy consumption to 108.32kWh/$m^2$. Also, an analysis of energy consumption while increasing indoor temperature gradually showed that the two factors are in proportion. $6^{\circ}C$ higher temperature requires over twice of the current energy. Based on this survey result, performance improvement due to building management and envelope elements which influence to building cooling and heating loads can curtail building energy consumption.