• 제목/요약/키워드: Heat source/sink

검색결과 124건 처리시간 0.035초

도시 수자원으로서의 상수.우수, 하수에 대한 열적 포텐셜의 평가 (Evaluation on Thermal Potential of Tap Water, Rain Water, Waste Water as City Water System)

  • 정용현;;이헌모;윤종호;오은주
    • 환경위생공학
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    • 제13권2호
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    • pp.26-33
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    • 1998
  • It has been referred as a problem that heat source/sink is distance from heat demand area in using unused energy. To solve the distance problem in using unused energy, the water from city water system like tap water, rain water, waste water used as unused energy. To survey the potential of the water of city water system, it is developed that the calculation method of the potential using unit method. The amount of theoretical unused energy and energy saving in the Osaka City, Japan were estimated by using that method.

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Experimental study on natural circulation using liquid nitrogen for superconducting applications

  • Choi, Yeon Suk
    • 한국초전도ㆍ저온공학회논문지
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    • 제15권3호
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    • pp.49-52
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    • 2013
  • An experiment to investigate the natural circulation of a cryogen has been performed. The study is motivated mainly by our recent development of cryogenic cooling system for prototype superconducting cyclotron without any circulating pump. In the natural circulation loop system, a cooling channel is attached on the outer surface of the aluminium block and the liquid nitrogen passes through inside of the channel to cool the block indirectly. A cryocooler as a heat sink is located at the top to re-condense cryogenic vapor coming from the aluminium block in which electrical heater is installed as a heat source. The main dimensions are determined using the relevant analysis and the natural circulation loop is successfully fabricated. The temperature distributions in the loop are measured during initial cool-down process and in steady state, from which the modified Grashof numbers are calculated and compared with the existing correlation estimated with one-dimensional analysis for steady state flow.

미활용에너지의 열 포텐셜 평가 수법에 관한 연구 (Study on Evaluation Method of Thermal Potential of Unused Energy)

  • 정용현
    • 한국환경과학회지
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    • 제15권5호
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    • pp.493-501
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    • 2006
  • The increase in environmental loads and energy consumptions has resulted in the need of developed new forms of energy for a sustainable use for the society. Recently, the viability of using unused energy has attracted a great deal of attention. From the view point of using unused energy, the most critical problem can be referred to as the distance between the heat source/sink and heat demand area. The water resource in the city water system was used to solve this distance problem with unused energy. The calculation method of the potential use unit was used to survey the potential of the water resource in the city water system. The amount of theoretical unused energy and energy savings in the model city were estimated using this method. It is estimated that the amounts of energy savings and $CO_2$ reduction correspond to 131.3 GWh and 29280[t-C], respectively, per annual basis.

열전소자 및 열전냉각장치의 성능에 관한 연구 (A Study on the Performance of Thermoelectric Module and Thermoelectric Cooling System)

  • 유성연;홍정표;심우섭
    • 설비공학논문집
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    • 제16권1호
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    • pp.62-69
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    • 2004
  • Thermoelectric module is a device that can produce cooling in a direct manner using the electrical energy. The purpose of this study is to investigate the performance of thermoelectric module and cooling system equipped with the thermoelectric module. The performance of a thermoelectric module is estimated using two methods; theoretical analysis based on one-dimensional energy equations and experimental tests using heat source, heat sink and brass conduction extenders. For the thermoelectric cooling system, the temperatures in the chamber are recorded and then compared with those of lumped system analysis. The results show that the cooling capacity and COP of the thermoelectric module increases as the temperature difference between hot and cold surface decreases, and there is particular current at which cooling capacity reaches its maximum value. The experimental results for the thermoelectric cooling system are similar to those of lumped system analysis.

지중열 교환기와 빙축열조(Thermal Ice Storage)를 연계시킨 통합 지중열-빙축열조 시스템(Integrated GEO/TES) (A Study on An Integrated GEO/TES with Geothermal Heat Exchanger and Thermal Ice Storage)

  • ;한정상;한혁상;한찬;김형수
    • 자원환경지질
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    • 제38권6호
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    • pp.717-729
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    • 2005
  • 일반적으로 대규모 건물의 피크 냉방 부하는 난방부하보다 크다. 북위도의 한냉한 지역에 소재한 대규모건물의 냉난방 설비는 건물 내부에서 생성되는 발열량과 태양으로부터 획득되는 열량에 따라 좌우된다. 최대 냉방부하에 적합하도록 냉난방설비와 지중루프를 설치하는데 소요되는 비용은 일반적으로 초기투자비가 적게 드는 전통적인 HVAC시스템에 비해 다소 고가이다. 빙축열조(Thermal ice storage, TES)시스템은 과거 수년동안 일반 HVAC에서 냉동기의 용량을 축소시키거나 최대 전력부하 시간대를 바꾸기 위해 사용되어온 기술이다. 일반적으로 건물 난방을 위해서는 보일러와 같은 전통적인 난방설비를 이용하고 그 다음날의 건물냉방을 위해서는 전력료가 저렴한 야간에 빙축을 시키는 빙축열기법을 이용한다. 얼음에서 추출한 잠열 에너지의 장점을 이용하기 위해 설계된 분배시스템(distribution system)과 열원과 열배출원(열침, sink)대신에 지중열 교환기(지중루프)를 이용하면 많은 장점이 있다. 공간 난방과 급탕을 공급하기위한 분리형 설비를 별도로 사용하지 않아도 된다. 공간난방용으로 소요되는 설비용량을 축소시킬 수 있으며-소요 지중열 교환기의 규격과 비용을 절감시킴은 물론 지열 HVAC시스템의 효율을 배가 시킬 수 있으며 온실가스 배출량을 대폭 감축시킬 수 있다. 또한 TES를 적용하면 대규모 건물의 냉난방부하와 열펌프의 용량을 $40\~60\%$ 정도 감축시킬 수 있으며 설비대수와 기계실 공간을 줄일 수 있다. 뿐만아니라 피크 냉난방부하를 토대로 설계한 지원 열펌프 시스템(Ground source heat pump system)의 지중루프를 $1/4\~1/3$가지 줄일 수 있어 도심지역에서 지중루프를 설치할 때 장애요인인 지중루프 설치공간문제와 지중암석의 열적특성문제를 동시에 해결할 수 있다.문이며, 따라서 $^{137}Cs$의 분포는 광물분포 보다는 TOC의 함량에 더 큰 영향을 받고 있음을 보여준다.과 위기 고조 단계, 그리고 갈등 해소 단계등 모든 시기에서 두 신문의 주요 행위자 구성에 있어서 차이가 나타났다. 다시 말해, 조선일보는 기본적으로 총파업을 둘러싼 문제의 구성과 발전, 해소 과정에서 정당이나 대통령, 야당 지도자 등과 같은 정치관련 행위자를 강조하고 있었다. 반면에, 한겨레는 대체로 로든 사건진행 단계에서 노동 관련 단체들과 시민단체의 역동적인 연대와 활동에 초점을 맞추고 있는 것으로 나타났다.술 후 24시간에 599.4$\pm$145.6, 678.8 $\pm$256.4였다(t-test, p < 0.05). 동종 수혈은 RAP군에서 34명 중 7명에서(20.6$\%$), 대조군에서는 46명중 16명에서(34.8$\%$) 시행되어, RAP군에서 유의하게 빈도가 낮았다(Chi-square test, p < 0.05). 결론: 역행성 자가 충전법은 심폐바이패스의 충전에 의한 혈액희석을 최소화함으로서, 개심술 후 출혈과 동종수혈을 또한 줄이는 데 효과적인 방법이 될 수 있다고 생각된다.타내지 않았다.성 교사, 가정 전공 교사가 그렇지 않은 교사보다 해석적, 해방적 행동목표를 더 중요하게 인식하고 있었다. 특히 가정교육 철학을 배운 경험이 있는 교사가 그렇지 않은 교사보다 해방적 행동체계 목표를 중요시하는 것으로 나타났다. 이 연구 결과는, 실천 비판적인 가정 교과의 본질을 구현하기 위해서는 주생활 영역의 교육과정에 기술적, 해석적, 해방적 행동에 대한 목표들을 고루 포함하여야 하며 특히 교사들이 중요하게 인식하는 해방적 행동에 대한 목표를 강조하여 적용할 필요가 있음을 시사하고 있다.교하여 유의한 차이가 관찰되지 않았다. 또한

Thermal Analysis of Water Cooled ISG Based on a Thermal Equivalent Circuit Network

  • Kim, Kyu-Seob;Lee, Byeong-Hwa;Jung, Jae-Woo;Hong, Jung-Pyo
    • Journal of Electrical Engineering and Technology
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    • 제9권3호
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    • pp.893-898
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    • 2014
  • Recently, the interior permanent synchronous motor (IPMSM) has been applied to an integrated starter and generator (ISG) for hybrid electric vehicles. In the design of such a motor, thermal analysis is necessary to maximize the power density because the loss is proportional to the power of a motor. Therefore, a cooling device as a heat sink is required internally. Generally, a cooling system designed with a water jacket structure is widely used for electric motors because it has advantages of simple structure and cooling effectiveness. An effective approach to analyze an electric machine with a water jacket is a thermal equivalent network. This network is composed of thermal resistance, a heat source, and thermal capacitance that consider the conduction, convection, and radiation. In particular, modeling of the cooling channel in a network is challenging owing to the flow of the coolant. In this paper, temperature prediction using a thermal equivalent network is performed in an ISG that has a water cooled system. Then, an experiment is conducted to verify the thermal equivalent network.

건물의 냉난방 운전을 고려한 3차원 동적 지중 열교환기 열해석 모델 (Three-dimensional Equivalent Transient Ground Heat Exchanger Thermal Analysis Model by Considering Heating and Cooling Operations in Buildings)

  • 백승효
    • 토지주택연구
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    • 제9권4호
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    • pp.25-32
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    • 2018
  • Application of geothermal energy in buildings has been gaining popularity as it provides the benefits of both heating and cooling a building. Among the various types of geothermal energy systems, ground-coupled heat pump system is the most commonly applied one in South Korea. A ground heat exchanger plays an important role as a heat source in winter and a heat sink in summer. For the stable operation of a ground-coupled heat pump system, a ground heat exchanger should be sized so that it provides sufficient heating and cooling energy. Heating and cooling energies generated in ground heat exchangers mainly depend on the temperature difference between the heating medium in ground heat exchangers and the surrounding ground. In addition, the performance of ground heat exchangers influences the change in ground temperature. Therefore, it is necessary to consider this interrelation between the change in the ground temperature and the performance of ground heat exchanger for an accurate estimation of its performance. However, previous thermal analysis models for ground heat exchangers are not competent enough to allow a complete understanding of this interrelation. Therefore, this study proposes a three-dimensional equivalent, transient ground heat exchanger analysis model. First, a previous thermal analysis model for ground heat exchangers, including an analytical model, a g-function, and a numerical model are analyzed. Next, to overcome the limitations of the previous models, a three-dimensional equivalent, transient ground heat exchanger model is proposed. Finally, this study validated the proposed model with the measurement data of the thermal response test, sandbox test, and TRNSYS DST model. All validation results showed a good agreement. These findings helped us to investigate the thermal performance of ground heat exchangers more accurately than the analytical models, and faster than the numerical models. Furthermore, the proposed model contributes to the design of ground heat exchangers by considering the different operation conditions of buildings.

나선코일의 열전달 특성에 관한 연구 (A Study on Heat Transfer Characteristics of Helical Coiled Tube)

  • 박종운;조동현
    • 수산해양교육연구
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    • 제16권2호
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    • pp.257-270
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    • 2004
  • The two-phase closed thermosyphon is a heat transfer device capable of transfer large quantities of heat from a source to a sink by taking advantage of the high heat transfer rates associated with the evaporation and condensation of a working fluid within the device. A study was carried out with the performance of the heat transfer of the thermosyphon having 50, 60, 70, 80, 90 internal micro grooves in which boiling and condensation occur. A plain thermosyphon having the same inner and outer diameter as the grooved thermosyphon is also tested for comparison. Water, methanol and ethanol have been used as the working fluids. The liquid filling as the ratio of working fluid volume to total volume of thermosyphon, the inclination angle, micro grooves and operating temperature have been used as the experimental parameters. The heat flux and the boiling and the condensation heat transfer coefficient and overall heat transfer coefficient at the condenser and evaporator zone are estimated from the experimental results. The experimental results have been assessed and compared with existing correlations. Imura's and Kusuda's correlation for boiling showed in good agreement with experimental results within ${\pm}20$% in plain thermosyphon. The maximum heat transfer rate was obtained when the liquid fill ratio was about 25%. The high heat transfer coefficient was found between 25o and 30o of inclination angle for water and between 20o and 25o for methanol and ethanol. The relatively high rates of heat transfer have been achieved in the thermosyphon with internal micro grooves. The micro grooved thermosyphon having 60 grooves shows the best heat transfer coefficient in both condensation and boiling. The maximum enhancement (i.e. the ratio of the heat transfer coefficients of the micro grooved thermosyphon to plain thermosyphon) is 2.5 for condensation and 2.3 for boiling.

시설원예용 수평형 지열히트펌프의 난방 성능 해석 (Heating Performance of Horizontal Geothermal Heat Pump System for Protected Horticulture)

  • 강연구;유영선;강금춘;백이;김영중
    • Journal of Biosystems Engineering
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    • 제32권1호
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    • pp.30-36
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    • 2007
  • Geothermal heat pump systems use the earth as a heat source in heating mode and a heat sink in cooling mode. These systems can be used for heating or cooling systems in farm facilities such as greenhouses for protected horticulture, cattle sheds, mushroom house, etc. A horizontal type means that a geothermal heat exchanger is laid in the trench buried in 1.2 to 1.8 m depth. Because a horizontal type has advantages of low installation, operation and maintenance costs compared to a vertical type, it is easy to be adopted to agriculture. In this study, to heat and cool farm facilities and obtain basic data for practical application of horizontal geothermal heat pump systems in agriculture, a horizontal geothermal heat pump system of 10 RT scale was installed in greenhouse. Heating performance of this system was estimated. The horizontal geothermal heat pump used in this study had heating COP of 4.57 at soil temperature of 14$^{\circ}C$ for depth of 1.75m and heating COP of 3.75 at soil temperature of 7$^{\circ}C$ for the same depth. The stratification of water temperature in heat tank appeared during the whole heat rejection period.

온수를 이용한 열전발전기에서 유량변화에 따른 발전 특성 (Characteristic of Electric Generation for the Water Flow Rate in Thermoelctric Generator Using Hot Water)

  • 우병철;이희웅;서창민
    • 대한기계학회논문집B
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    • 제26권10호
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    • pp.1333-1340
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    • 2002
  • The objective of this study is to develop a thermoelectric generation system which converts unused energy from close-at-hand sources such as garbage incineration heat and industrial exhaust etc. into electricity. This paper presents applicability of a commercially available thermoelectric generator f3r waster heat recovery. The test facility consists of water heater, pump, thermoelectric module and aluminium tubes and hot and cold water is used as heat source and sink fluids. It is shown that the three components of thermoelectric research exist in manufacturing a thermoelectric generator. The first component is fabrication of thermoelectric materials, the second is manufacturing of thermoelectric generator with 32 thermoelectric modules. The last one is characteristic measuring of thermoelectric generator with 32 thermoelectric modules of two types, cooling and power purpose. It was found that the rate of cold and hot water is 25 and 37 liter per minute and the maximum power of thermoelectric generator is 28Watts and its efficiency is 1.04%.