• Title/Summary/Keyword: 난방에너지

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The Analysis of the Heating Energy in Apartment Houses with Pilotis (공동주택에서 필로티 세대의 난방에너지 분석)

  • Ahn, Min-Hee;Choi, Chang-Ho;Lee, Hyeon-Woo;Cho, Min-Kwan
    • Journal of the Korean Solar Energy Society
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    • v.26 no.1
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    • pp.99-104
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    • 2006
  • This paper presents an analysis of heating energy for apartment houses in apartment building, paying special attention on the effect of pilotis which is increasing recently. A four-zone model composed of one conditioned and three unconditioned space is developed in this study. IES VE is adopted to estimate heating energy. Especially, we used Apache module for a heating energy calculated. The predicted result shows fairly good agreements with the available measured data and simulation data. Heating energy needed for an apartment located on the pilotis floors is far greater compared with the case of intermediate floors. Insulation thickness of walls, floors and underground structure appears to be a dominant factor affecting heating energy, which leads to needs of revision of the related regulation. It is finally concluded that the location dependent, severe imbalance in heating energy should be improved and reflected in the policy making process and the design standards.

An Effectiveness Analysis of Integrated Demand Management for Cooling Energy Service (냉방에너지서비스 측면에서 통합수요관리 정책추진 효과분석)

  • Lee, Woo-Nam;Park, Jong-Bae;Shin, Joong-Rin;Cho, Ki-Seon;Kim, Hyeong-Jung;Chae, Myung-Suk
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.583_584
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    • 2009
  • 본 논문은 난방에너지부문에 통합수요관리정책을 추진할 경우의 효과를 분석하기 위해서 난방기술별 비교우위 및 난방방식간의 전환효과를 분석하였다. 냉방공급방식으로는 전기냉방, 가스냉방, 빙축열 냉방을 채택하였으며, 동일한 냉방서비스 공급에 대한 1차에너지소비량, 이산화탄소배출량, 그리고 연료비용을 비교분석하였다. 또한, 에너지원별 에너지가격정책에 따른 가격왜곡현상의 유무에 따른 영향을 시나리오에 기초하여 분석하였다. 본 연구의 시나리오 분석을 통해, 전기냉방수요의 20%를 가스냉방수요로 전환할 경우에 연간 3,141억원의 사회적 편익이 발생할 수 있음을 확인하였다.

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에너지(3) - 버려지는 빗물.하수, 모으면 "돈" 되네

  • 대한설비건설협회
    • 월간 기계설비
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    • s.243
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    • pp.58-61
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    • 2010
  • 서울시 강동구청은 버려지는 빗물과 하수를 모아 청소용수나 온수 난방에너지로 재활용해 재해 예방은 물론 환경도 살리고 예산 절감 효과까지 톡톡히 보고 있다. 강동구청은 강동어린이회관 옥상에 '빗물은행'을 설치하여 1톤당 1,280원의 예산을 절감하고 있다. 더 나아가 오는 11월에는 조경수나 청소용수, 화장실용수로 사용할 수 있도록 대규모 빗물관리시설을 가동할 계획이다. 강동구는 또 지난해 9월 버려지는 하수를 이용한 하수열에너지 시스템을 전국 최초로 강동어린이 회관에 설치하여 온수와 난방 연료로 사용하고 있다. 이러한 예산절감 효과에 힘입어 강동구는 앞으로 강동아트센터를 비롯한 공공시설 및 민간시설에 빗물집수시설을 설치, 빗물 관련 시설을 확대할 계획이다.

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Heating Performance of Ground source Heat Pump using Extruding Ground Water (유출지하수 열원 지열히트펌프시스템의 난방성능)

  • Park, Geun-Woo;Lee, Eung-Youl
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.06a
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    • pp.460-465
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    • 2007
  • 유출지하수는 지하공간이 깊고 넓게 분포하는 건물에서 자연적으로 유출되어 배출되는 낮은 심도의 지하수이다. 본 연구에서는 신축된 교회건물에서 유출되는 지하수를 열원으로 밀폐형태와 개방형태의 열교환기를 활용하여 각각 5RT급 히트펌프시스템을 난방모드로 운전한 결과를 정리하였다. 실험은 난방순환수의 온도를 $43{\sim}49$ $^{\cdot}C$ 범위에서 제어하면서 진행하였으며, 시스템 COP에 있어서 밀폐형은 $4.12{\sim}4.75$, 개방형은 $3.42{\sim}3.98$의 범위에서 측정되었다. 이는 기존의 지열히트펌프시스템의 COP와 대동 소이한 우수한 성능이라고 판단된다. 또한 펌프동력을 제외한 히트펌프 자체 난방COP에 있어서 밀폐형은 $4.69{\sim}5.81$, 개방형은 $4.38{\sim}5.43$의 범위에서 나타났다. 유출지하수의 온도가 겨울철에도 약 $12{\sim}14^{\cdot}C$를 유지하므로 히트펌프와 시스템전체의 COP가 매우 우수한 값을 나타내고 있음이 확인되었다.

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Dynamic modeling of the hydraulic-thermal behavior of the buried pipe network for district heating (지역난방용 지중매설 배관망 네트워크 열-유체 동적 거동 모델링)

  • Lee, Jeongbin;Yi, Jun Young;Kim, Lae-Hyun;Shin, Chee Burm
    • Journal of Energy Engineering
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    • v.21 no.2
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    • pp.144-151
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    • 2012
  • A district heating system produces thermal energy and supplies it to a large region. District heating systems can provide higher efficiencies and better pollution control than localized boilers. The heat generated by a district heating system is distributed to the customer via a network of insulated pipes. For the optimal operation of a district heating system, it is important to predict the distributions of pressure, flow rate and temperature of heating fluid within the network of pipes at various operating conditions. In this work, a mathematical modeling was performed to predict the dynamic hydraulic-thermal behaviors of heating fluid in the network of pipes for a district heating system. The mathematical model accounts for the conservations of mass, momentum and energy. In order to verify the validity of modeling, the modeling results were compared with the monitoring data of Gang-nam Branch of District Heating.

Heating and Cooling Energy Demand Evaluating of Standard Houses According to Layer Component of Masonry, Concrete and Wood Frame Using PHPP (PHPP를 활용한 조적, 콘크리트, 목조 레이어 구성별 표준주택 냉·난방 에너지 요구량 평가)

  • Kang, Yujin;Lee, Junhee;Lee, Hwayoung;Kim, Sumin
    • Journal of the Korean Wood Science and Technology
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    • v.45 no.1
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    • pp.1-11
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    • 2017
  • A lot of the energy are consumed on heating and cooling in buildings. The buildings need to minimize the heating and cooling loads for $CO_2$ emissions and energy consumption reduction. In recently, also demand of detached houses were increase while the residential culture was changed. The structure of the domestic detached houses can be divided into masonry, concrete, wood frame houses. Therefore, in this study, the heating and cooling load and energy demand were analyzed on the equal area detached house consisting of three structural methods (Masonry, Concrete, Wood frame). Layer of wall, roof, and floor were composited by structure. Thermal transmittance (U-value) of each layer was using the PHPP calculation for considering stud, such as the wood frame wall. In addition, the case of without considering for studs in wood frame wall (Non-studs) was analyzed in order to compare the difference between studs or not. Analysis was performed using self-developed heating and cooling load calculation program (CHLC) based excel and ECO2. The results of cooling and heating load and energy demand showed the highest values in the wood frame structure, and the concrete structure were confirmed to maintain a high value secondly. Two structure were determined to be disadvantageous on the energy consumption. Consequently, the masonry structure have an advantage over the other structure under the identical conditions. It was determined that if the except for thermal bridges due to the studs in the wood frame structure, it can be reduced the energy consumption.

Study on Energy Performance And Economic Evaluation of Windows System with Built-in Type Blinds (블라인드 내장형 창호시스템의 에너지 성능 및 경제성 평가에 관한 연구)

  • Joe, Won-Hwa;Lim, Nam-Gi
    • Journal of the Korea Institute of Building Construction
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    • v.10 no.2
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    • pp.97-104
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    • 2010
  • This study evaluated the energy efficiency of a windows system using built-in blinds, with regard to their insulation performance and their blocking of solar radiation. The study took advantage of the "Physibel Voltra" program as a physical simulation of heat transfer. To simulate the "Physibel Voltra" program, I practiced a mock-up test to determine heating quality and translation condition. I analyzed the propensity to annual energy consumption, the annual quantity of heat transfer, and the annual cooling and heating cost through a computer simulation for one general household in an apartment building. In the test, it was found that compared to a general windows system, a windows system with built-in blinds reduced the annual heat transfer by 10% in cooling states and by 11% in heating states when the blind was up. When the blind was down, the windows system with built-in blinds reduced the annual heat transfer by 25% in cooling states and 30% in heating states. When a windows system with built-in blinds is compared with a general windows system, the quantity of cooling and heating loads is reduced by 283.3kw in cooling states and 76.3kw in heating states. This leads to a reduction in the required cooling and heating energy of 359.6kw per house. It is thus judged that the use of a windows system with built-in blinds is advantageous in terms of reducing greenhouse gas emissions, because the annual TOE (tons of oil equivalent) per house is reduced by 0.078TOE, while $tCO_2$ is reduced by $0.16tCO_2$. In addition, compared with a general windows system, the cost of cooling and heating loads in the system reduces the annual cooling cost by 100,000won, and the annual heating cost by 50,000won. Ultimately, this means that cooling and heating loads are cut by 150,000won per year.