• 제목/요약/키워드: Double Pipe Heat Exchanger

검색결과 44건 처리시간 0.022초

나노입자를 포함한 자연냉매의 마이크로 휜관 응축 열전달 특성 (Condensing Heat Transfer of Natural Refrigerants with Nanoparticles in Enhanced Tube)

  • 이호생
    • 동력기계공학회지
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    • 제12권3호
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    • pp.19-25
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    • 2008
  • This paper deals with the heat transfer and pressure drop characteristics of R-290 (Propane), R-600a (Iso-butane) and R-1270 (Propylene) as an environment friendly refrigerant and R-22 as a HCFC's refrigerant for condensing. The test section is a horizontal double pipe heat exchanger. Condensing heat transfer and pressure drop measurements were Peformed for 12.70 mm micro-fin tube and compared with the results in smooth tube. The local condensing heat transfer coefficients of hydrocarbon refrigerants were superior to those of R-22 and the maximum increasing rate of heat transfer coefficient was found in R-600a. The average condensing heat transfer coefficients in hydrocarbon refrigerants showed 20 to 28% higher values than those of R-22. Hydrocarbon refrigerants have a higher pressure drop than that of R-22 with respect to refrigerant qualify and mass flux. Also, the condensing heat transfer coefficient and pressure drop of working fluids in smooth and micro-fin tube were compared. The heat transfer enhancement factor (EF) between smooth and micro-fin tube varied from 2.2 to 2.6 in all experimental conditions.

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탄화수소계 냉매의 응축 압력강하에 관한 연구 (Study on Condensing Pressure Drop of Hydrocarbon Refrigerants)

  • 김재돌;최준혁;정석권;윤정인;이호생
    • Journal of Advanced Marine Engineering and Technology
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    • 제30권2호
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    • pp.218-224
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    • 2006
  • Experimental results for pressure gradient of HCs refrigerants R-290. R-600a. R-1270 and HCFC refrigerant R-22 during condensing inside horizontal double pipe heat exchangers are presented. The test sections which have the tube inner diameter of 10.98mm. and the tube inner diameter of 8mm are used for this investigation. Hydrocarbon refrigerants have higher pressure drop than R-22 in both test sections with the diameters of 12.70mm and 9.52mm. Pressure drop increased with the increase of the mass flux. These results form the investigation can be used in the design of heat transfer exchanger using hydrocarbons as the refrigerant for the air-conditioning systems

냉매 R-407c의 수평평골 응축관내 열전달특성에 관한 연구 (Heat transfer characteristics of R - 407C condensing inside smooth horizontal tubes)

  • 오후규;문정욱;노건상
    • Journal of Advanced Marine Engineering and Technology
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    • 제21권2호
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    • pp.144-156
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    • 1997
  • Experimental results for forced convection heat transfer of pure refrigerant and nonrefrigerant mixtures during condensing inside horizontal smooth tubes, double pipe heat exchanger of 7.5 mm ID and 4 000 mm long inside tube, are presented. Pure refrigerant R - 22 and R - 407 c, the mixture of R - 32 + R - 125 + R - 134a (23/25/52, wt %) are used as the test fluids. The ranges of parameters are $114.3{\sim}267.1 kg/(m^2 {\cdot} s)$ of mass velocity, <0$\sim$1.0 of quality. The vapor pressure, vapor temperature and tube wall temperature were measured. Using these data, the local and average heat transfer coefficients for the condensation are obtained. At the same given experimental conditions, the condensation heat transfer coefficients for NARMs R - 407c were lower than those for the pure refrigerant of R - 22. Local heat transfer characteristics for R - 407c were different from pure refrigerant R - 22. The condensaheat transfer coefficients for R - 407c and R - 22 increased with mass velocity. Based on the data a prediction method was presented for the calculation of dimensionless average heat transfer coefficient.

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관경별 탄화수소계 냉매의 증발 열전달에 관한 특성평가 (Study on Evaporating Heat Transfer of HCs Refrigerants by Changing of Tube Diameter)

  • 이광배;이호생;문춘군;김재돌;윤정인
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2005년도 후기학술대회논문집
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    • pp.41-42
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    • 2005
  • The experimental apparatus has been set-up as a conventional vapor compression type heat pump system. The test section is a horizontal double pipe heat exchanger. A tube diameter of 12.70 mm, 9.52 mm, 6.35 mm with 1.78 mm,1.52 mm,1.4 mm wall thickness each is used for this investigation. The local evaporating heat transfer coefficients of hydrocarbon refrigerants were superior to that of R-22. and the maximum increasing rate of heat transfer coefficient was found in R-1270. The average evaporating heat transfer coefficient increased with the increase of the mass velocity and it showed the higher values in hydrocarbon refrigerants than R-22. The highest evaporating heat transfer coefficient of all refrigerants was shown in a tube diameter of 6.35 mm with same mass flux.

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고심도 지중열전도도에 의한 지열 응용의 효율성 (Efficiency of Geothermal Energy Generation Assessed from Measurements of Deep Depth Geothermal Conductivity)

  • 조희남;이달희;정교철
    • 지질공학
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    • 제22권2호
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    • pp.233-241
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    • 2012
  • 이 연구의 목적은 현장의 지중열교환기에서 조건별 지중열전도도, 유속, 유량 및 파이프관내 압력을 측정하고, 이들 시험자료들을 분석하여 지열응용의 효율성을 평가하는데 있다. 규정에 따라 현장측정 장비를 설치한 후 3가지 다른 경우에서 각각 열전도도를 얻었다. 2차와 3차 경우의 결과를 바탕으로, 동일한 암반 지중하에서 다른 깊이(506 m, 151 m), 다른 파이프관경(65 mm, 30 mm)별 얻어진 열전도도는 각각 k=2.9, k=2.8로 크게 차이가 나지 않았다. 4차 경우는 2차 경우와 같은 조건의 심도 지중하에서도 이중관일 경우에는 열전도도가 k=2.5로 크게 차이 나지 않았다. 이러한 결과는 지열이용 시, 같은 지질일 경우 깊이가 중요한 변수가 될 수 있음을 보여 주고 있다. 또한 이 시험에서 얻은 물의 유속과 물의 유량 측정값 및 열전도도를 시뮬레이션 분석한 결과, 지열시스템의 운영 시 심도 506 m 지열공 한개가 심도 151 m 지열공 3개 운영보다 더 경제적임이 확인되었다. 비슷한 지중열전도도 환경에서 0.8 m/sec로 같은 유속일 경우 약 4배의 유량($9.3{\sim}9.8m^3/d$, $2.3{\sim}2.5m^3/d$)의 차이를 보였다. 특히 대도시 건물 밀집형 지대 또는 지가가 비싸서 간접비가 많이 발생하는 대도시 지역에서는 훨씬 더 경제적일 것으로 판단된다.

헬리컬 코일관 내 초임계 $CO_2$의 압력강하 특성 (Pressure Drop Characteristics of Supercritical $CO_2$ in a Helically Coiled Tube)

  • 유태근;김대희;노건상;구학근;오후규
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2005년도 전기학술대회논문집
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    • pp.216-221
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    • 2005
  • The heat transfer coefficient and pressure drop during gas cooling process of carbon dioxide in a helically coiled tube were investigated experimentally. The experiments were conducted without oil in the refrigerant loop. The main components of the refrigerant loop are a receiver, a variable speed pump, a mass flowmeter, a pre-heater, a gas cooler(test section) and an isothermal tank. The test section is a double pipe type heat exchanger with refrigerant flowing in the inner tube and water flowing in the annulus. It was made of a copper tube with the inner diameter of 4.85 [mm], the outer diameter of 6.35 [mm] and length of 10000 [mm]. The refrigerant mass fluxes were 200${\sim}$600 [kg/$m^2$s] and the average pressure varied from 7.5 [MPa] to 10.0 [MPa]. The main results were summarized as follows: The heat transfer coefficient of supercritical $CO_2$ increases, as the cooling pressure of gas cooler decreases. And the heat transfer coefficient increases with the increase of the refrigerant mass flux. The pressure drop decreases in increase of the gas cooler pressure and increases with increase the refrigerant mass flux.

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탄화수소계 냉동공조 시스템의 성능특성에 관한 실험 (Performance Characteristics of Refrigeration and Air Conditioning System Using Hydrocarbon Refrigerants)

  • 이호생;이근태;김재돌;윤정인
    • Journal of Advanced Marine Engineering and Technology
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    • 제28권5호
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    • pp.728-734
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    • 2004
  • Environmentally friendly refrigerants with zero ozone layer depletion potential are required to be used in refrigerators and air conditioners due to the difficulties related to ozone layer depletion and global warming. A rigorous study for the system performance with new refrigerants having zero ozone layer depletion potential is inevitable before adopting that as a new fluid. The HFC(Hydrofluorocarbon) potential has been recommended as alternatives. In this paper. system performance in the heat pump facilities were studied using R-290, R-600a. R-1270 as an environment friendly refrigerant. R-22 as a HCFC's refrigerant. The experimental apparatus has been set-up as a conventional vapor compression type heat Pump system. The test section is a horizontal double pipe heat exchanger. A tube diameter of 12.70mm with 1.315mm wall thickness is used for this investigation. The test results showed that the COP of hydrocarbon refrigerants were superior to that of R-22 and the maximum increasing rate of COP was found in R-1270. The refrigeration capacity of hydrocarbon refrigerants were higher than that of R-22. The compressor work was obtained with the maximum value in R-1270 and the minimum one in R-22.

설비공학 분야의 최근 연구 동향 : 2012년 학회지 논문에 대한 종합적 고찰 (Recent Progress in Air-Conditioning and Refrigeration Research : A Review of Papers Published in the Korean Journal of Air-Conditioning and Refrigeration Engineering in 2012)

  • 한화택;이대영;김사량;김현정;최종민;박준석;김수민
    • 설비공학논문집
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    • 제25권6호
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    • pp.346-361
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    • 2013
  • This article reviews the papers published in the Korean Journal of Air-Conditioning and Refrigeration Engineering during 2012. It is intended to understand the status of current research in the areas of heating, cooling, ventilation, sanitation, and indoor environments of buildings and plant facilities. The conclusions are as follows : (1) The research works on thermal and fluid engineering have been reviewed as groups of fluid machinery, pipes and valves, fuel cells and power plants, ground-coupled heat pumps, and general heat and mass transfer systems. Research issues are mainly focused on new and renewable energy systems, such as fuel cells, ocean thermal energy conversion power plants, and ground-coupled heat pump systems. (2) Research works on the heat transfer area have been reviewed in the categories of heat transfer characteristics, pool boiling and condensing heat transfer, and industrial heat exchangers. Researches on heat transfer characteristics included the results for natural convection in a square enclosure with two hot circular cylinders, non-uniform grooved tube considering tube expansion, single-tube annular baffle system, broadcasting LED light with ion wind generator, mechanical property and microstructure of SA213 P92 boiler pipe steel, and flat plate using multiple tripping wires. In the area of pool boiling and condensing heat transfer, researches on the design of a micro-channel heat exchanger for a heat pump, numerical simulation of a heat pump evaporator considering the pressure drop in the distributor and capillary tubes, critical heat flux on a thermoexcel-E enhanced surface, and the performance of a fin-and-tube condenser with non-uniform air distribution and different tube types were actively carried out. In the area of industrial heat exchangers, researches on a plate heat exchanger type dehumidifier, fin-tube heat exchanger, an electric circuit transient analogy model in a vertical closed loop ground heat exchanger, heat transfer characteristics of a double skin window for plant factory, a regenerative heat exchanger depending on its porous structure, and various types of plate heat exchangers were performed. (3) In the field of refrigeration, various studies were executed to improve refrigeration system performance, and to evaluate the applicability of alternative refrigerants and new components. Various topics were presented in the area of refrigeration cycle. Research issues mainly focused on the enhancement of the system performance. In the alternative refrigerant area, studies on CO2, R32/R152a mixture, and R1234yf were performed. Studies on the design and performance analysis of various compressors and evaporator were executed. (4) In building mechanical system research fields, twenty-nine studies were conducted to achieve effective design of mechanical systems, and also to maximize the energy efficiency of buildings. The topics of the studies included heating and cooling, HVAC system, ventilation, renewable energy systems, and lighting systems in buildings. New designs and performance tests using numerical methods and experiments provide useful information and key data, which can improve the energy efficiency of buildings. (5) In the fields of the architectural environment, studies for various purposes, such as indoor environment, building energy, and renewable energy were performed. In particular, building energy-related researches and renewable energy systems have been mainly studied, reflecting interests in global climate change, and efforts to reduce building energy consumption by government and architectural specialists. In addition, many researches have been conducted regarding indoor environments.

12.7mm 내면핀관을 이용한 R-1270의 열전달 특성 (Heat Transfer Characteristics of R-1270 using 12.7mm Inner Fin Tube)

  • 윤정인;성광훈;심규진;진병주;백승문;문춘근
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권4호
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    • pp.534-541
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    • 2008
  • This paper deals with the heat transfer characteristics of R-290 (Propane), R-600a (Iso-butane) and R-1270 (Propylene) as an environment friendly refrigerant and R-22 as a HCFC's refrigerant for evaporating. The experimental apparatus has been set-up as conventional vapor compression type refrigeration and air-conditioning system. The test section is a horizontal double pipe heat exchanger. Evaporating heat transfer measurements were performed for smooth tube with the outer diameters of 12.70, 9.52 and 6.35 mm and micro-fin tube 12.70 mm, respectively. For the smooth and micro-fin tubes measured in this study, the evaporating heat transfer coefficient was enhanced according to the increase of the mass flux and decrease of the tube diameter. The local evaporating heat transfer coefficients of hydrocarbon refrigerants were superior to those of R-22 and the maximum increasing rate of heat transfer coefficient was found in R-1270. The average evaporating heat transfer coefficients in hydrocarbon refrigerants showed 20 to 28% higher values than those of R-22. Also, the evaporating heat transfer coefficients of R-22 in the tube diameter of the 12.70 mm smooth and micro-fin tube were compared. Generally, the local heat transfer coefficients for both types of tubes increased with an increase of the mass flux. The heat transfer enhancement factor (EF) between smooth and micro-fin tube varied from 1.9 to 2.7 in all experimental conditions.

폐용제에 함유된 입자의 건조 및 분리용 연속식 순간 진공건조시스템 해석 (Analysis of a Continuous and Instantaneous Vacuum Drying System for Drying and Separation of Suspended Paricles in Waste Solvent)

  • 구재현;이재근
    • 자원리싸이클링
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    • 제9권4호
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    • pp.28-36
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    • 2000
  • 본 연구는 입자가 혼합된 용제를 이중판형 열교환기 내에서 가열 및 증발과정을 통해 건조이자와 용제로 분리하여 회수하기 위한 연속식 순간 진공건조 시스템 해석에관한 것이다. 진공건조시스템은 용제 공급펌프, 이중관형 열교환기, 진공 스프레이 챔버 및 응축기로 구성된다. 연속적으로 공급되는 용제는 이중관형 열교환기 내에서 가열, 팽창 및 증발되며 관 출구부에서 팽창된 증기가 진공 스프레이 챔버 내로 분사되고 증기는 응축기로 수송되어 용제로 회수되고 입자는 관성력에 의해 증기로부터 분리되어 건조된다ㅣ. 안료입자가 함유된 벤젠 및 알킬벤젠의 분리 및 회수성능 실험을 수행한 결과, 습분양 1.1%로 건조된 안료입자를 94% 회수하였고, 99.9 wt%의 고순도 벤젠을 88% 회수하였다. 평균직경이 $6.5\mu\textrm{m}$인 안료입자를 진공건조시스템의 이중관형 열교환기에서 관출구부의 고속 분사에 의한 폭발적 분산력에 의해 입경이 14%감소된 $5.6\mu\textrm{m}$ 크기의 건조 안료입자를 회수하였다. 따라서 진공건조시스템은 용제에 함유된 입자를 건조 및 분리하여 미분제 제품으로 히수하는데 효율적이며 폐용제 정제용으로 적용이 가능하다.

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