• 제목/요약/키워드: Heat Pipe Heat Exchanger

검색결과 235건 처리시간 0.025초

냉동시스템의 운전조건에 따른 열교환기 내장형 어큐뮬레이터의 성능 특성 (Performance Characteristics of Accumulator Heat Exchangers with Operating Conditions of a Refrigeration System)

  • 강훈;박차식;전종욱;김용찬
    • 설비공학논문집
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    • 제18권12호
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    • pp.984-991
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    • 2006
  • The applications of multi air-conditioners into multiplex and high-rise buildings have been increased by replacing central air-conditioning systems. The pipe length and altitude difference between the indoor and outdoor units can be increased based on installation conditions, which may increase the possibility of flash gas generation at the expansion device inlet. The flash gas generation causes rapid reduction of refrigerant flow rate passing through the expansion device, yielding lower system efficiency. Accumulator heat exchangers have been widely used in multi air-conditioners in order to minimize flash gas generation and obtain system reliability. However, the studies on the heat transfer characteristics and pressure drops of accumulator heat exchangers are very limited in open literature. In this study, the heat transfer rates and pressure drops of accumulator heat exchangers were measured with refrigerant flow rate and operating conditions by using R-22. The heat transfer rate increased with the increase of refrigerant flow rate, while subcooling decreased. The heat transfer rate enhanced with the reduction of inlet superheat and subcooling due to the increased temperature difference between the accumulator and inner heat exchanger.

지표수 열교환기의 용량과 적용 효과에 대한 설계 인자의 영향 (Impact of Design Parameters on Length and Application Effect of Surface Water Heat Exchanger(SWHE))

  • 손병후;민경천
    • 대한기계학회논문집 C: 기술과 교육
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    • 제4권1호
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    • pp.49-56
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    • 2016
  • 본 연구에서는 설계 인자가 지표수 열교환기 길이에 미치는 영향을 분석하였다. 또한 수직 밀폐형 지중열교환기와 지표수 열교환기를 같이 이용한다고 가정한 후, 지중 순환수의 온도 변화를 분석하였다. 지표수 열교환기 출구 온도와 연못 온도의 차이를 크게 하면, 열교환기 파이프 길이는 줄어들었다. 아울러 연못 온도가 높을수록 파이프 길이는 감소하지만, 파이프 바깥지름의 영향은 상대적으로 적었다. 또한 파이프 두께가 얇을수록 전도 열전달에서 열저항의 영향이 감소하기 때문에 파이프 길이는 감소하였다. 수직 밀폐형 시스템에 지표수 열교환기를 추가 적용하면, 지중열교환기 순환수 온도는 시간이 지날수록 감소하였다.

Characteristics Analysis of the Heat Exchange Rate according to Soil Temperature and Grout Material using Numerical Simulation

  • Oh, Jin Hwan;Nam, Yu Jin
    • KIEAE Journal
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    • 제14권2호
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    • pp.29-36
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    • 2014
  • The ground source heat pump (GSHP) system has attracted much of attention, because of its stability of heat production and the high efficiency of the system. Performance of the heat exchanger is dependent on the soil temperature, the ground thermal conductivity, the operation schedule, the pipe placement and the design temperature. However, in spite of the many variables of these systems, there have been few research on the effect of the systems on system performance. In this study, analysis of the heat exchange rate according to soil temperature and grout material was conducted by numerical simulation. Furthermore, the heat distribution around the ground heat exchanger was presented on the different conditions of grout and underground temperature by the simulation.

소형위성 발사체용 추진제 가압 열교환기 설계 해석 (Heat Exchanger Design Analysis for Propellant Pressurizing System of Satellite Launch Vehicles)

  • 이희준;한상엽;정용갑;조남경;길경섭;김영목
    • 한국전산유체공학회지
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    • 제9권3호
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    • pp.49-56
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    • 2004
  • A heated and expanded helium is used to pressurize liquid propellants in propellant tanks of propulsion system of liquid propellant launch vehicles. To produce a heated and expanded helium, an hot-gas heat exchanger is used by utilizing heat source from an exhausted gas, which was generated in a gas generator to operate turbine of turbo-pump and dumped out through an exhaust duct of engine. Both experimental and numerical approaches of hot-gas heat exchanger design were conducted in the present study. Experimentally, siliconites - electrical resistance types - were used to simulate the full heat condition instead of an exhausted gas. Cryogenic heat exchangers, which were immersed in a liquid nitrogen pool, were used to feed cryogenic gaseous helium in a hot-gas heat exchanger. Numerical simulation was made using commercially utilized solver - Fluent V.6.0 - to validate experimental results. Helically coiled stainless steel pipe and stainless steel exhausted duct were consisted of tetrahedron unstructured mesh. Helium was a working fluid Inside helical heat coil and regarded as an ideal gas. Realizable k-』 turbulent modeling was adopted to take turbulent mixing effects in consideration. Comparisons between experimental results and numerical solutions are Presented. It is observed that a resulted hot-gas heat exchanger design is reliable based on the comparison of both results.

현장 열응답 시험을 통한 수직 밀폐형 지중열교환기용 그라우트와 열교환 파이프 단면의 성능 평가 (Evaluation of Performance of Grouts and Pipe Sections for Closed-loop Vertical Ground Heat Exchanger by In-situ Thermal Response Test)

  • 이철호;박문서;민선홍;최항석;손병후
    • 한국지반공학회논문집
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    • 제26권7호
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    • pp.93-106
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    • 2010
  • 현장 열응답 시험을 통해 지중 유효 열전도도를 산출하여 각 보어홀의 성능을 비교하기 위해 강원도 원주 현장에 6개의 보어홀을 시험 시공하였다. 6개의 보어홀은 그라우트 종류와 첨가재 종류, 지중열교환기 파이프 단면에 따른 영향을 검토하도록 시공되었다. 그라우트 재료는 벤토나이트와 시멘트를 사용하였으며 첨가재는 천연규사와 흑연, 파이프 단면은 기존 U-tube 파이프 단면과 유입과 유출 파이프 사이에 파이프를 추가로 삽입한 새로운 3공형 파이프 단면을 적용하였다. 현장 열응답 시험으로 산정한 지중 유효 열전도도 결과는 시멘트 그라우트로 시공한 보어홀의 경우가 벤토나이트 그라우트로 시공한 경우에 비해 전열 성능이 향상됨을 보였으며 흑연을 추가로 사용한 경우가 천연규사만 사용한 경우보다 높은 효율을 보였다. 또한, 유입과 유출 파이프 사이에 물을 채워 부분적 단열 구간을 형성한 새로운 3공형 파이프 단면의 경우가 기존 U-tube 파이프 단면에 비해 높은 효율을 보였다. 가상 건물에 대한 지중열교환기 설계를 수행하여 지중열교환기 시공비를 비교한 결과, 시멘트 그라우트에 첨가재로 천연규사와 흑연을 함께 사용한 경우가 벤토나이트 그라우트에 첨가재로 천연규사를 사용한 기존의 시공방법 보다 낮은 시공비로 설계가 가능하였다. 마지막으로 본 현장 열응답 시험결과를 바탕으로 일련의 경제성 분석을 통하여 새로이 제시된 첨가제와 3공형 파이프 단면의 적용성을 평가하였다.

원형튜브내에서 이동중인 고체입자층의 열전달 특성연구 (Heat Transfer to a Downward Moving Solid Particle Bed Through a Circular Tube)

  • 이금배;박상일
    • 대한기계학회논문집
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    • 제18권6호
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    • pp.1551-1558
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    • 1994
  • An experiment was conducted to investigate whether an equation of heat transfer coefficient derived form energy equation of two-phase plug flow can be actually applied to the industrial field. The heat is constantly transfered to the sand beds from the wall of heat exchanger while the sand moves down through cylindrical heat exchanger by gravity from feed hooper. To increase heat transfer, turbulators such as glass ball and steel pipe packings were used. In addition, the experiment in the case of fluidizing the sand beds was also carried out. The temperatures of the sand beds and the wall were measured along the heat exchanger axis. The density and porosity of the sand beds were also measured. The deviations of the mean velocity of sands from the velocity on the wall surface because of the slip conditions on the wall were negligible (within 3%). The heat transfer coefficients when the turbulators were used and when the sand beds were fluidized were found to be much greater than those of the plain plug flow.

토양 열전도도와 수분함량이 수평형 지중열교환기 설계 길이에 미치는 영향 (Effect of Soil Thermal Conductivity and Moisture Content on Design Length of Horizontal Ground Heat Exchanger)

  • 손병후
    • 한국지열·수열에너지학회논문집
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    • 제8권1호
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    • pp.21-31
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    • 2012
  • This paper reviewed and evaluated some of the commonly used prediction models for thermal conductivity of soils with the experimental data. Semi-theoretical models for two-component materials were found inappropriate to estimate the thermal conductivity of dry state soils. It came out that the model developed by Cote and Konrad gave the best overall prediction results for unsaturated soils available in the literature. However, it still needs to be improved to cover a wider range of soil types and degrees of saturation. In the present study, parametric analysis is also conducted to investigate the effect of soil type and moisture content on the horizontal ground heat exchanger design. The analysis shows that horizontal ground heat exchanger pipe length is reduced with the increase of soil thermal conductivity and water content. The calculation results also show that horizontal ground heat exchanger size can be reduced to a certain extent by using backfilling material with a higher thermal conductivity of solid particles.

Influence of Working Fluids to Heat Transfer Characteristics of Heat Exchanger using Oscillating Capillary Tube Heat Pipe for Low Temperature Waste Heat Recovery

  • Lee, Wook-Hyun;Im, Yong-Bin;Kim, Ju-Won;Kim, Jeung-Hoon;Kim, Jong-Soo
    • International Journal of Air-Conditioning and Refrigeration
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    • 제9권3호
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    • pp.27-35
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    • 2001
  • Heat transfer characteristics of a heat exchanged for low temperature waste heat recovery using oscillating capillary tube heat pipe (OCHP) were evaluated against the charging ratio variation of working fluid and various working fluids. R-l42b, R-22 and R-290 were used as working a 2.6mm in outside diameter, 1.44mm in inside diameter with 101m length and 140 turns. Charging ratio of working fluid was 40% and 50%. water was used as secondary fluid. Inlet temperature and mass velocity for each secondary fluid were 297 K, 280 K and 9~27 $4kg/m^2s$, respectively. From experimental results, it was found that heat transfer performance of R-22 was higher than those of R-142b and R-290 and it was proportional to Figure of Merit for thermosyphon. As a result, it was thought that R-22 was the most reasonable working fluid of waste heat recovery for low temperature waste heat recovery.

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