• 제목/요약/키워드: Heating load coefficient

검색결과 67건 처리시간 0.03초

온실 난방부하 산정방법의 검증 및 틈새환기와 지중전열의 영향 분석 (Validation of Load Calculation Method for Greenhouse Heating Design and Analysis of the Influence of Infiltration Loss and Ground Heat Exchange)

  • 신현호;남상운
    • 원예과학기술지
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    • 제33권5호
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    • pp.647-657
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    • 2015
  • 원예시설의 환경설계 중 난방부하 산정방법에 대한 검증을 위하여, 대규모 플라스틱 온실에서 총난방부하와 틈새환기율, 지중전열량을 계측하여 계산결과와 비교 분석하였고, 지중전열 및 틈새환기가 온실의 난방부하에 미치는 영향을 검토하였다. 실험기간 동안 실내기온은 $13.3{\pm}1.2^{\circ}C$, 실외 기온은 $-9.4{\sim}+7.2^{\circ}C$의 범위를 보였으며, 우리나라의 난방 설계 외기온 범위에서 유효한 것으로 확인하였다. 가스트레이서법으로 측정한 틈새환기율은 평균 $0.245h^{-1}$로 나타났다. 온실의 피복면적에 일정한 환기전열계수값을 사용하는 방법은 온실의 규모에 따라서 문제가 있는 것으로 분석되었다. 따라서 환기전열부하는 온실의 체적과 틈새환기율을 이용하는 방법이 합리적인 것으로 판단된다. 온실 중앙에서 측정한 지중열류는 실내외 기온차에 따라 음으로 약간 증가하는 경향을 보이고, 온실 측면에서 측정한 지중열류는 실내외 기온차에 따라 양으로 크게 증가하는 경향을 보였다. 계측 결과를 바탕으로 온실의 외주부를 통한 열손실 개념을 도입한 새로운 지중전열부하 산정 방법을 개발하였으며, 검증결과 잘 일치하는 것으로 나타났다. 관류열부하는 대체로 실내외 기온차에 비례하는 것으로 나타났으나, 열관류율은 작아지는 경향을 보였다. 따라서 관류열부하 산정시 설계조건에 따라 열관류율의 선택에 주의를 기울여야 할 것으로 판단된다. 실험온실의 열관류율은 평균 $2.73W{\cdot}m^{-2}{\cdot}C^{-1}$로 단일피복의 플라스틱 온실 대비 60%의 열절감율을 보이는 것으로 나타났다. 전체 난방부하 중에서 관류열부하가 84.7~95.4%, 환기전열부하가 4.4~9.5%, 지중전열부하가 -0.2~+6.3%를 차지하는 것으로 나타났다. 관류열부하는 실내외 기온차가 낮은 그룹에서 더 큰 비율을 차지하고, 환기전열 부하는 실내외 기온차가 높은 그룹에서 더 큰 비율을 차지하는 것으로 나타났다. 지중전열부하의 경우 실내외 기온차가 낮은 그룹에서는 부하를 경감시키는 방향으로 작용하고, 실내외 기온차에 따라 부하를 증가시키거나 경감시키는 방향으로 작용하는 것으로 나타났으므로 이 기준 온도차의 선택이 중요한 것으로 판단된다. 지중전열부하에 비하여는 환기전열부하가 더 큰 비중을 차지하므로 에너지 절감을 위해서는 틈새환기율을 줄일 수 있는 대책이 필요한 것으로 판단된다.

주택용 열펌프의 단속운전성능 (Cyclic performance of residential air-to-air unitary heat pump)

  • 민만기
    • 대한설비공학회지:설비저널
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    • 제12권4호
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    • pp.219-226
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    • 1983
  • Cyclic heating performance of 3 ton air-to-air unitary heat pump installed in a residence in the Washington, D.C. area was determined by applying the bin method to field test result. Cyclic degradation coefficient Cn of heat pump may be expressed in terms of heating load factor HLF as the following : $$C_D=\frac{1-HLF^m}{1-HLF}$$ where $$C_D{\ge}m$$ The less is the value of exponent m, the better is, the performance of a heat pump, depending upon the heat pump design.

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태양열 온실 난방에 대한 최척 집열 면적과 경제성 평가 (Optimum Collector Area and Economic Evaluation for the Greenhouse Heating)

  • 박이동;김규인
    • 태양에너지
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    • 제2권1호
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    • pp.49-58
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    • 1982
  • Aim of this study was to obtain the heating performance and the economic evaluation on solar heating system for greenhouse which area of floor was $90m^2$. For heating performance effective solar energy for the greenhouse was compared with overall heating loads including coefficient of heat transfer and conduction. And the economic evaluation solar heating system was evaluated by comparison its initial investiment costing with oil saving cost. Initial investiment costing included collector cost, storage cost, piping cost, control system cost and miscellaneous costs which included pumps, motors etc. The contents of this study included the survey of climate conditions for solar heating, long-term collector performance and optimum collector area of solar heating system in existing greenhouse. The results are follows: 1. Average horizontal radiation during winter was $2,434Kcal/m^2$ day which was the highest value in this country, so the climate conditions of Suwon was suitable for solar heating. 2. Resulting calculation of the optimum collector area was $30m^2$ and the solar energy accounted for 30% of the overall heating load. 3. The capacity of storage tank required 60 liter per unit area ($m^2$) of solar collector.

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지열원 히트펌프시스템의 실사용을 통한 난방성능연구 (Heating Performance of a Ground Source Heat Pump System through Actual Operation)

  • 구경민;정영만;황유진;이재근;장세용;김인규;진심원;이동혁
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.1341-1346
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    • 2008
  • This paper presents the heating performance of a water-to-refrigerant type ground source heat pump system (GSHP) installed in a school building. The evaluation of the heating performance has been conducted under the actual operating conditions of GSHP system in the winter. Ten units with the capacity of 10 HP each were installed in the building. Also, a closed vertical typed-ground heat exchanger with 24 boreholes of 175 m in depth was constructed for the GSHP system. For analyzing the heating performance of the GSHP system, we monitored various operating conditions, including the outdoor temperature, the ground temperature, and the water temperature of inlet and outlet of the ground heat exchanger. Simultaneously, the heating capacity and the input power were evaluated for determining the heating performance of the GSHP system. The average heating coefficient of performance (COP) of the heat pump was found to be 5.1 at partial load of 46.9%, while the overall system COP was found to be 4.2.

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지열원 히트펌프시스템의 실사용을 통한 난방성능연구 (Heating Performance of a Ground Source Heat Pump System through Actual Operation)

  • 구경민;정영만;황유진;이재근;장세용;김인규;진심원;이동혁
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.788-793
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    • 2008
  • This paper presents the heating performance of a water-to-refrigerant type ground source heat pump system (GSHP) installed in a school building. The evaluation of the heating performance has been conducted under the actual operating conditions of GSHP system in the winter. Ten units with the capacity of 10 HP each were installed in the building. Also, a closed vertical typed-ground heat exchanger with 24 boreholes of 175 m in depth was constructed for the GSHP system. For analyzing the heating performance of the GSHP system, we monitored various operating conditions, including the outdoor temperature, the ground temperature, and the water temperature of inlet and outlet of the ground heat exchanger. Simultaneously, the heating capacity and the input power were evaluated for determining the heating performance of the GSHP system. The average heating coefficient of performance (COP) of the heat pump was found to be 5.1 at partial load of 46.9%, while the overall system COP was found to be 4.2.

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태양열에 의한 냉방 및 난방시스템의 성능향상 (III) - 성층화계수의 예측을 위한 1차원 해석모델의 개발 - (The Improvement of the Performance of Solar Cooling and Heating Systems (III) - Development of One Dimensional Analytic Model for the Evaluation of Stratification Coefficients -)

  • 유재경;노승탁;이준식;정석호
    • 설비공학논문집
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    • 제1권1호
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    • pp.55-63
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    • 1989
  • A one dimensional analytic model for the prediction of the stratification coefficient of a liquid-based solar heating system is developed. The stratification coefficient, $K_s$, is defined as the ratio of the actual useful energy gain to the energy gain that would be achieved if there were no thermal stratification in the storage tank. Previous studies incorporated only collector-side effects, but in this study both the collector and load-side effects are included for the overall performance evaluation.

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지열-태양열원 복합시스템의 부하추종특성에 관한 실험 연구 (An Experimental Study on the Load Delivery Characteristics of Hybrid Energy System with Geothermal and Solar Heat Sources)

  • 황인주;우남섭
    • 한국지열·수열에너지학회논문집
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    • 제2권2호
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    • pp.1-8
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    • 2006
  • The objective of the present study is to investigate the load delivery characteristics of a hybrid-renewable energy system with geothermal and solar heat sources for hot water, heating and cooling of a residential house in Korea. The hybrid energy system consists of ground source heat pump of 2 RT for cooling with a 150 m vertical U-bend ground heat exchanger, solar collectors of 4.8 m2 and gas fired backup boiler. The averaged coefficient of performance of geothermal module during cooling and heating seasons are evaluated as about 4.5 and 3.8, respectively.

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Design and Fabrication of a Dual Cylindrical Microwave and Ohmic Combination Heater for Processing of Particulate Foods

  • Lee, Seung Hyun;Choi, Won;Park, Sung Hee;Jun, Soojin
    • Journal of Biosystems Engineering
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    • 제40권3호
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    • pp.250-260
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    • 2015
  • Purpose: Dual cylindrical microwave chambers equipped with an ohmic heating tube were designed and fabricated to maximize the electric field strength for expeditious heat treatment of particulate foods. Methods: The efficacy of the combination heater was investigated by simulating the electric field distribution by using COMSOL Multiphysics software. Results: All components of the designed microwave heating unit were suitable for transmitting maximal microwave power to the load. The simulated electric field distribution implied that single-mode microwave heating would be sufficient for the steady generation of a highly localized heating zone in the cavity. During impedance matching, the calculated reflection coefficient ($S_{11}$) was small, possibly implying minimal power loss and wave reflection in the designed microwave heating chamber. Conclusions: This study demonstrates the possibility of concentrating the microwave power at the centerline for a single-frequency microwave, for thermal treatment of multiphase foods without attenuating the microwave power.

창호에 SHGC를 반영한 공동주택의 방위각별 에너지 효율성 평가를 통한 합리적인 창호 계획 방안 연구 (A Study on the optimized Performance Designing of the Window of the Apartment based on the Annual Energy Demand Analysis according to the Azimuth Angle applying the Solar Heat Gain Coefficient of the Window)

  • 이장범
    • 대한건축학회논문집:계획계
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    • 제35권11호
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    • pp.25-34
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    • 2019
  • It is important to design windows in a reasonable way considering the performance characteristics of the elements of the window rather than just to increase the thermal energy performance of the window. In this study, the Heat-transfer Coefficient as insulation performance of the windows and together with the grade of the glass's SHGC (Solar Heat Gain Coefficient) were analyzed to relate to the energy efficiency performance of the building by azimuth angle. Based on this basic study, the Heat-transfer Coefficient of windows and the SHGC rating of glass were applied to the unit plan of apartment building, and the Heating and Cooling Demand were analyzed by azimuth angle. Apartment plan types were divided into 2 types of Non-extension and extension of balcony. The designPH analysis data derived from the variant of the Heat-transfer Coefficient and SHGC, were put into PHPP(Passive House Planning Package) to analyze precisely the energy efficiency(Heating and Cooling Demands) of the building by azimuth angle. In addition, assuming the 'ㅁ' shape layout, energy efficiency performance and potential of PV Panel installation also were analyzed by floors and azimuth angle, reflecting the shading effects by surrounding buildings. As the results of the study, the effect of Heat Gain by SHGC was greater than Heat Loss due to the Heat-transfer Coefficient. So it is more effective to increase SHGC to satisfy the same Heating Demand, and increasing SHGC made possible to design windows with low Heat-transfer Coefficient. It was also revealed that the difference in annual Heating and Cooling Demands between the low, mid and high floor households is significantly high. In addition to it, the installation of PV Panel in the form of a shading canopy over the window reduces the Cooling Load while at the same time producing electricity, and also confirmed that absolute thermal energy efficiency could not be maximized without controlling the thermal bridge and ventilation problems as important heat loss factors.

설계 변수 선택이 온실의 냉난방부하 산정에 미치는 영향 (Effect of Design Value Selection on Heating and Cooling Load Calculation in Greenhouses)

  • 남상운;신현호
    • 생물환경조절학회지
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    • 제27권4호
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    • pp.277-284
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    • 2018
  • 온실의 냉난방부하 산정을 위해 설계자가 선택해야할 주요 변수들에 대하여, 이들 설계 변수가 냉난방부하에 미치는 영향을 평가하기 위해서 각각의 설계 변수값을 변화시키면서 시뮬레이션을 실시하였으며, 이를 바탕으로 특별히 선택에 주의를 기울여야 할 설계 변수를 제안하였다. 난방부하에 가장 큰 영향을 미치는 설계 변수는 피복재의 열관류율이고, 다음으로 설계외기온인 것으로 나타났다. 연동수에 따른 설계 변수의 영향은 차이가 거의 없는 것으로 나타났다. 단동 온실의 경우에는 지중전열 관련 설계 변수의 영향을 무시할 수 없을 것으로 생각되지만, 연동 온실의 경우에는 지중전열 관련 변수 및 틈새환기율의 영향이 미미한 것으로 판단되었다. 냉방부하에 가장 큰 영향을 미치는 설계 변수는 온실내로 유입되는 일사량과 증발산계수이고, 다음으로 실내외 기온차, 환기율인 것으로 나타났다. 설계 변수의 영향은 단동 온실과 연동 온실에서 큰 차이를 보였으나, 연동수에 따른 차이는 거의 없는 것으로 나타났다. 피복재의 열관류율은 단동 온실이나 연동 온실 모두 영향이 미미한 것으로 나타났지만, 실내외 기온차 및 환기율의 경우에는 냉방부하에 미치는 영향을 무시할 수 없을 것으로 생각되며, 특히 연동 온실에서 그 영향이 더 큰 것으로 판단되었다. 냉방부하를 산정할 때 실내 목표온도를 낮게 설정할수록 설계 변수의 선택에 신중해야 한다. 특히, 실내 목표온도를 외기온 보다 낮게 설정하면 환기율 및 열관류율 값이 냉방부하를 증가시키는 방향으로 바뀌므로 더욱 주의해야 한다. 환기율이 낮을 때는 설계 변수 중 설계일사량과 증발산계수의 선택에 주의해야 하고, 환기율이 높을 때는 실내 설정온도와 설계외기온의 선택에 신중을 기해야 한다.