• 제목/요약/키워드: Liquid-Liquid Heat Exchanger

검색결과 157건 처리시간 0.023초

내부 열교환기를 이용한 R-1270용 냉동시스템의 성능 분석 (Performance Analysis of R-1270(Propylene) Refrigeration System Using Internal Heat Exchanger)

  • 구학근
    • 동력기계공학회지
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    • 제18권4호
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    • pp.36-42
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    • 2014
  • This paper considers the influence of internal heat exchangers on the efficiency of a refrigerating system using R-1270. These internal heat exchangers(liquid-gas or suction-line heat exchangers) can, in some cases, yield improved system performance while in other cases they degrade system performance. A steady state mathematical model is used to analysis the performance characteristics of refrigeration system with internal heat exchanger. The influence of operating conditions, such as the mass flowrate of R-1270, inner diameter tube and length of internal heat exchanger, to optimal dimensions of the heat exchanger is also analyzed. The main results were summarized as follows : the mass flowrate of R-1270, inner diameter tube and length of internal heat exchanger, and effectiveness have the influences on the cooling capacity, compressor work and RCI(Relative Capacity Index) of this system. With a thorough grasp of it is possible to design the R-1270 compression refrigeration cycle using internal heat exchanger.

수직관내 유리알-물 유동의 압력손실 및 열전달 성능 (Pressure Loss and Heat Transfer Characteristics of the Glass Beads-Water Flow in a Vertical Tube)

  • 김내현;김정식;이윤표
    • 설비공학논문집
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    • 제8권4호
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    • pp.550-560
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    • 1996
  • Recently, fluidized bed heat exchangers with circulating liquid are widely used in a number of places-chemical, process, food concentration, waste water treatment facilities, etc. In a circulating heat exchanger, solid particles circulate with the liquid, thereby increase the heat transfer and reduce the fouling potential of the heat exchanger. In this study, glass beads were circulated through a vertical tube. The pressure loss and the heat transfer coefficient were measured. At low flow velocities, glass beads enhanced the heat transfer considerably. The enhancement increased as the volume fraction of the glass beads increased. The pressure loss showed a similar trend. From the observed particle behavior near tube wall, a possible explanation of the trend is provided.

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수직관내 유리알-물 유동의 압력손실 및 열전달 성능 (Pressure Loss and Heat Transfer Characteristics of the Glass Bead - Water Flow in a Vertical Tube)

  • 김내현;김정식;이윤표
    • 한국에너지공학회:학술대회논문집
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    • 한국에너지공학회 1996년도 춘계학술발표회 초록집
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    • pp.121-131
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    • 1996
  • Recently, circulating liquid fluidized bed heat exchangers are widely used in a number of places - chemical, process, food concentration, waste water treatment facilities, etc. In a circulating heat exchanger, solid particles circulate with the liquid, thereby increase the heat transfer and reduce the fouling potential of the heat exchanger. In this study, glass beads were circulated through a vertical tube. The pressure loss and the heat transfer coefficient were measured. At low flow velocities, glass beads enhanced the heat transfer considerably. The enhancement increased as the volume fraction of the glass beads increased. It also increased as the particle diameter increased. The pressure loss showed a similar trend. From the observed particle behavior near tube wall, a possible explanation of the trend is provided.

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극저온 헬륨가스 가열장치 개발 (Heating Apparatus Development for Cryogenic Gaseous Helium)

  • 정용갑;권오성;조남경;조인현
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2009년도 제33회 추계학술대회논문집
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    • pp.363-367
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    • 2009
  • 산화제로 액체산소를 사용하고 산화제 탱크 내부에 가압제 용기가 설치된 액체추진기관의 가압시스템에서는 가압제 용기에서 극저온으로 토출되는 가압제가 가스발생기 후단의 열교환기를 통과하여 극저온에서 고온으로 온도가 상승되어 추진제 탱크의 얼리지로 공급된다. 이러한 가압시스템을 개발하기 위해서는 열교환기를 모사할 수 있는 가열장치를 적용하여 인증시험을 수행하여야 한다. 본 연구에서는 가압시스템 개발시험에 적용할 수 있는 극저온 헬륨가스 가열장치를 개발하였고 이에 대한 가열시험을 수행하였다.

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극저온 헬륨가스 가열장치 개발 및 시험 (Heating Apparatus Development and Tests for Cryogenic Gaseous Helium)

  • 정용갑;조남경
    • 한국추진공학회지
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    • 제15권1호
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    • pp.63-68
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    • 2011
  • 산화제로 액체산소를 사용하고 산화제 탱크 내부에 가압제 용기가 설치된 액체추진기관의 가압시스템에서는 가압제 용기에서 극저온으로 토출되는 가압제가 가스발생기 후단의 열교환기를 통과하여 극저온에서 고온으로 온도가 상승되어 추진제 탱크의 얼리지로 공급된다. 이러한 가압시스템을 개발하기 위해서는 열교환기를 모사할 수 있는 가열장치를 적용하여 인증시험을 수행하여야 한다. 본 연구에서는 가압시스템 개발시험에 적용할 수 있는 극저온 헬륨가스 가열장치를 개발하였고 이에 대한 가열시험을 수행하였다.

내부 열교환기를 이용한 R744용 초임계 냉동사이클의 성능 분석 (Performance Analysis of R744 (Carbon Dioxide) Transcritical Refrigeration System Using Internal Heat Exchanger)

  • 손창효;오후규
    • Journal of Advanced Marine Engineering and Technology
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    • 제33권4호
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    • pp.459-465
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    • 2009
  • This paper considers the influence of internal heat exchangers to the efficiency of a refrigerating system. These internal heat exchangers(liquid-suction or suction-line heat exchangers) can, in some cases, yield improved system performance while in other cases they degrade system performance. A steady state mathematical model is used to analysis the performance characteristics of refrigeration system with internal heat exchanger. The influence of operating conditions, such as gas cooler pressure and evaporation temperatures, superheat in the evaporator and temperature of gas cooler outlet, to optimal dimensions of the heat exchanger is also analyzed in the paper. The main results were summarized as follows : the mass flowrate of R744, inner diameter tube and length of internal heat exchanger, and effectiveness have an effect on the cooling capacity, compressor work and RCI(Relative capacity index) of this system. With a thorough grasp of these effect, it is necessary to design the R744 compression refrigeration cycle using internal heat exchanger.

구동장치 및 열교환기 변경에 따른 냉매가열식 열펌프의 성능특성 (Performance of a Refrigerant Heating Type Heat Pump by Changing of Driving Devices and Heat Exchangers)

  • 박윤철;김상혁;김지영
    • 설비공학논문집
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    • 제20권1호
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    • pp.49-56
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    • 2008
  • When the outdoor air temperature decreased less than the freezing temperature, frost forms at the surface of heat exchangers and it makes the performance degradation of a heat pump system. In this study, a heat pump system has been developed which has a refrigerant heating device as an auxiliarly heating equipment. To reduce power consumptions of the system, a liquid pump, rather than a compressor, was used to drive refrigerant in the heat pump cycle. Ratio of refrigerant mass flow between a refrigerant heating heat exchanger(GHX) and a outdoor plate heat exchanger(PHX) was varied and the system performance was measured and analyzed. As results, when the refrigerant flow rate to the GHX was decreased, the system performance is decreased due to heat absorption capability restriction of the GHX and small variation of the power consumption in the compressor. The effect on the evaporating and condensing pressure by the distribution ratio of the refrigerant to the each heat exchanger is small compare to the effect by the frequency change in the compressor. When the compressor was replaced by the liquid pump, the capacity of the system decreased a little, however the power consumption decrease approximately 80% compare with the power used in the compressor.

Numerical study on conjugate heat transfer in a liquid-metal-cooled pipe based on a four-equation turbulent heat transfer model

  • Xian-Wen Li;Xing-Kang Su;Long Gu;Xiang-Yang Wang;Da-Jun Fan
    • Nuclear Engineering and Technology
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    • 제55권5호
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    • pp.1802-1813
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    • 2023
  • Conjugate heat transfer between liquid metal and solid is a common phenomenon in a liquid-metal-cooled fast reactor's fuel assembly and heat exchanger, dramatically affecting the reactor's safety and economy. Therefore, comprehensively studying the sophisticated conjugate heat transfer in a liquid-metal-cooled fast reactor is profound. However, it has been evidenced that the traditional Simple Gradient Diffusion Hypothesis (SGDH), assuming a constant turbulent Prandtl number (Prt,, usually 0.85 - 1.0), is inappropriate in the Computational Fluid Dynamics (CFD) simulations of liquid metal. In recent decades, numerous studies have been performed on the four-equation model, which is expected to improve the precision of liquid metal's CFD simulations but has not been introduced into the conjugate heat transfer calculation between liquid metal and solid. Consequently, a four-equation model, consisting of the Abe k - ε turbulence model and the Manservisi k𝜃 - ε𝜃 heat transfer model, is applied to study the conjugate heat transfer concerning liquid metal in the present work. To verify the numerical validity of the four-equation model used in the conjugate heat transfer simulations, we reproduce Johnson's experiments of the liquid lead-bismuth-cooled turbulent pipe flow using the four-equation model and the traditional SGDH model. The simulation results obtained with different models are compared with the available experimental data, revealing that the relative errors of the local Nusselt number and mean heat transfer coefficient obtained with the four-equation model are considerably reduced compared with the SGDH model. Then, the thermal-hydraulic characteristics of liquid metal turbulent pipe flow obtained with the four-equation model are analyzed. Moreover, the impact of the turbulence model used in the four-equation model on overall simulation performance is investigated. At last, the effectiveness of the four-equation model in the CFD simulations of liquid sodium conjugate heat transfer is assessed. This paper mainly proves that it is feasible to use the four-equation model in the study of liquid metal conjugate heat transfer and provides a reference for the research of conjugate heat transfer in a liquid-metal-cooled fast reactor.

원통다관형 열교환기의 침식-부식 특성에 관한 연구 (I) (Study on the Characteristics of Erosion-Corrosion for Heat Exchanger of Shell and Tube Type(I))

  • 임우조;정해규
    • 수산해양기술연구
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    • 제35권2호
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    • pp.196-200
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    • 1999
  • In the case that erosion and corrosion occurs in machinery and structure at the same time, the synergy effect by erosion-corrosion affects fatal effect to durability of machinery and structure. Therefore, in machinery and structure which use corrosion liquid, the study of the synergy effect of erosion-corrosion which affects metal material is requested. In this paper. the flow corrosion experiment about the effect of temperature change and liquid velocity change in sea water was carried out to study the characteristics of erosion-corrosion for tube material Cu heat exchanger The main results obtained are as follows. (1) Damage appearance of tube outside by erosion-corrosion becomes dull because electrode potentials of Cu tube is higher than electrode potential of STPG38 shell. (2) In the cooling system by sea water, the weight loss rate of Cu at tube outside liquid temperature of $70^{\circ}C$ is higher than that of temperature of $20^{\circ}C$. (3) In cooling system by sea water, the weight loss rate of Cu at liquid velocity of 5.1m/s is higher than that of velocity of 1.47m/s. But as the testing time passed, the weight loss rate of Cu at velocity of 5.1m/s is almost steady and becomes dull at velocity of 1.47m/s.

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과도액정기법을 이용한 열전달 측정 및 수치해석 (Heat Transfer Measurement Using a Transient Liquid Crystal Technique and Numerical Anlysis)

  • 홍철현;이기백;양장식
    • Journal of Advanced Marine Engineering and Technology
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    • 제29권1호
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    • pp.68-77
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    • 2005
  • A transient liquid crystal technique has become one of the most effective ways in measuring the local heat transfer coefficients on the entire surface. The key Point of this technique is to convert the inlet flow temperature into an exponential temperature profile using a mesh heater. In order to verify the validity of this technique. the heat transfer characteristics on the wall surface by a pair of longitudinal vortices is investigated experimently and numerically. A standard ${\kappa}-{\varepsilon}$ is used for the numerical analysis of turbulent flow field. It is found from experiment and numerical analysis that two peak values exist over the whole domain. as the longitudinal vortices move to the farther downstream. these peak values decrease and the dimensionless averaged Nusselt number with the lapse of time is maintained nearly at constant values. The experiment results obtained from the present experiment in terms of the transient liquid crystal technique are in good agreement with the numerical results. Therefore, the transient liquid crystal technique developed for the measurement of heat transfer coefficient is proved to be a valid method.