• 제목/요약/키워드: Heat exchange capacity

검색결과 65건 처리시간 0.03초

熱交換 過程 을 考慮한 브레이튼 사이클 의 最大出力條件 (The maximum power condition of the Brayton cycle with heat exchange processes)

  • 정평석;차진걸;노승탁
    • 대한기계학회논문집
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    • 제9권6호
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    • pp.795-800
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    • 1985
  • 본 연구에서는 위의 내용을 한 단계 더 발전시켜 유한열용량 유동 사이에서 작동하는 브레이튼 사이클의 운전조건에 따른 출력변화와 취대출력 조건을 규명하였으 며, 이것은 단순히 이론적용 대상의 확장이라는 의미와 함께, 앞에서의 카노 사이클의 이상적인 사이클인 반면 브레이튼 사이클이라는 점에서 공학적 의의가 있으며, 특히 원자력 등을 열원으로 하는, 열교환기가 있는 가스 터어빈 사이클의 설계나 운전조건 의 결정 등에는 직접 적용될 수도 있을 것이다.

지하수정호와 결합한 복합지열시스템의 열교환 효율에 대한 실험적 연구 (Experimental Study on Heat Exchange Efficiency of Combined Well & Open-Closed Loops Geothermal System)

  • 송재용;이근춘;박남서
    • 대한건축학회논문집:구조계
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    • 제34권5호
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    • pp.43-50
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    • 2018
  • The temperature of underground water generally remains constant regardless of the season. therefore, it is possible to get plenty of energy if we use characteristics of underground water for both cooling and heating. This study evaluates efficiency of real size coaxial and U-tube type complex geothermal system which is combined with underground water well. This study also evaluates relative efficiency/adaptability through comparison with existing geothermal systems(vertical closed loop system, open loop system(SCW)). The heat exchange capacity of complex geothermal system according to temperature difference between circulating water and underground water shows very high significance by increasing proportionally. The temperature change of underground water according to injection energy, shows very high linear growth aspect as injection thermal volume heightens. As a result of evaluation of heat exchange volume between complex geothermal system and comparative geothermal system, coaxial type has 26.1 times greater efficiency than comparative vertical closed type and 2.8 times greater efficiency than SCW type. U-tube type has 26.5 tims greater efficiency than comparative vertical closed type and 2.8 times greater than SCW type as well. This means complex geothermal system has extremely outstanding performance.

대용량 청정 공기 가열 장치 설계 (Design of Large Capacity Clean Air Heater)

  • 김정우;정광수;전민준;이규준
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2010년도 제35회 추계학술대회논문집
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    • pp.115-118
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    • 2010
  • 공기 가열 장치는 크게 연소식과 열교환식 2가지가 있으며, 본 논문은 공기를 오염시키지 않은 열교환 방식인 청정 공기 가열 장치의 설계 방법을 기술하였다. 가열 장치는 크게 연소기 (Burner), 가열로 (Furnace), 열교환기 (Heat Exchanger), 배기구로 구성되어 되며, 가열되는 공기 유량과 입/출구 온도값으로부터 가열원인 연소기의 열용량과 연소기 연료인 LNG의 소요량을 구한다. 열교환기 내부에서 연소기의 뜨거운 연소가스와 가열되는 차가운 공기간의 열매체를 통한 간접 열교환이 이루어지므로, 가열되는 공기의 입/출구 온도에서 열교환기의 용량, 크기, 작동 최대 온도를 얻을 수 있게 된다.

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개량형 열회수 시스템의 열교환 성능 (Heat Exchange Performance of Improved Heat Recovery System)

  • 서원명;윤용철;권진근
    • 생물환경조절학회지
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    • 제12권3호
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    • pp.107-113
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    • 2003
  • 본 연구에서는 온실의 온풍식 난방시스템 연통에 장착할 수 있는 폐열 회수기의 성능 개선을 목적으로 기 설계된 세 가지 열교환 장치와 기존의 장치에서 열교환 면적과 파이프의 두께 및 공기흐름 방향을 개량한 새 열교환 장치에 대해 열회수 성능을 실험적으로 비교 분석하였다. 그 결과 기존의 열 교환장치인 A형, B형 및 C형의 열회수 성능은 동일 송풍전입에서 각각 42.2%, 40.6% 및 54.4% 정도였으나 , 새로 개량된 D형은 69.2%로써 가장 현저히 높게 나타났다. 그러나 열회수용 공기의 흐름방향 변화에 따른 열회수 성능 개선효과 (A형 대비 B형)는 없는 것으로 나타나 적정 송풍기 용량이라면 직선형이 공기의 흐름방향 180${\circ}C$ 굴절시키는 헤어핀형보다 효과적인 것으로 판단된다. 결국 열회수 성능은 열회수 시스템의 열교환 면적과 열교환 파이프의 두께 및 풍속에 크게 좌우되는 것으로 나타났다. 따라서, 열교환 파이프의 내구성 등 을 고려하여 기능한 한 범위 내에서 열 교환면적을 증대시키거나 열교환 파이프의 두께를 앓게 하고 풍속을 증대시키는 것이 열회수 성능 개선효과와 직결됨을 알 수 있었다. 그리고 송풍기 용량이 필요이상으로 큰 경우, 소비전력이 많게 되는 등의 문제가 있기 때문에 적정용량 및 제품의 안정성을 고려하여 선택해야 할 것으로 판단되었다.

밀폐형과 개방형이 결합된 복합지열시스템의 지중열교환기 성능 분석 (Performance Analysis of Ground Heat Exchanger in Combined Well and Open-Closed Loops Geothermal (CWG) System)

  • 박영윤;송재용;이근춘;김기준;목종구;박유철
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제22권5호
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    • pp.23-29
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    • 2017
  • This study was conducted to evaluate performance of geothermal heat exchanger (GHE) in the combined well and open-closed loops geothermal (CWG) systems. The CWG systems were designed to combine open loop geothermal heat pumps and closed loop geothermal heat pumps for high energy efficiency. GHE of the CWG systems could be installed at pumping wells for agricultural usage. To get optimal heat exchange capacity of GHE of the CWG systems, 4 GHEs with various materials and apertures were tested at laboratory scale. Polyethylene (PE) and stainless steel (STS) were selected as GHE materials. The maximum heat exchange capacity of GHEs were estimated to be in the range of 33.0~104 kcal/min. The heat exchange capacity of STS GHEs was 2.4~3.2 times higher than that of PE GHE. The optimal cross section area of GHE and flow rate of circulating water of GHE were estimated to be $2,500mm^2$ and 113 L/min, respectively. For more complicated GHE of the CWG systems, it is necessary to evaluate GHEs at various scales.

히트파이프를 이용한 온풍난방기 배기열회수 시스템의 열회수 특성 (Heat Recovery Characteristics of the Exhaust Heat Recovery System with Heat Pipe Unit Attached to the Hot Air Heater in the Greenhouse)

  • 강금춘;김영중;유영선;백이;이건중
    • Journal of Biosystems Engineering
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    • 제26권5호
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    • pp.441-448
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    • 2001
  • Hot air heater with light oil combustion is used as the most common heater for greenhouse heating in the winter season. However, exhaust gas heat discharged to atmosphere through chimney reaches up to 10~20% of total heat capacity of the oil burred. In order to recover the heat of this exhaust gas and to use for greenhouse heating, the heat pipe type exhaust heat recovery system was manufactured and tested in this experiment. The system consisted of a heat exchanger made of heat pipes, ø15.88${\times}$600mm located in the rectangular box of 675(L)${\times}$425(W)${\times}$370(H)mm, an air suction fan and air ducts. The number of heat pipe was 60, calculated considering the heat exchange amount between exhaust gas and air and heat transfer capacity of a heat pipe. The working fluid of heat pipe was acetone because acetone is known for its excellent heat transfer capacity. The system was attached to the exhaust gas path. According to the performance test it could recover 53,809 to 74,613kJ/h depending on the inlet air temperature of 12 to -12˚at air flow rate of 1.100㎥/h. The temperature of the exhaust gas left the heat exchanger dropped to 100$^{\circ}C$ from 270$^{\circ}C$ after the heat exchange between the suction air and the exhaust gas.

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동일 전열면적을 갖는 용접식 판형열교환기와 관류형 열교환기의 성능 비교 (Performance Comparison of a Welded Plate Heat Exchanger and Shell and Tube Heat Exchanger with Same Heat Transfer Area)

  • 함정균;김민준;안성국;조홍현
    • 한국지열·수열에너지학회논문집
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    • 제15권4호
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    • pp.46-54
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    • 2019
  • In this study, the performance of a shell and tube heat exchanger (STHE) and welded plate heat exchanger (WPHE) was measured experimentally. The pass numbers of the STHE was changed by 1, 2 and 4. As a result, the WPHE showed 2.1 times higher heat exchange capacity than that of the STHE. In case of pressure drop, the STHE with 1 and 2 pass number has a lower pressure drop than the WPHE, while the STHE with 4 pass presented higher pressure drop than the WPHE. The performance index considering the heat exchange capacity and pump consumption power, showed in oder of STHEPass1 > STHEPass2 > W PHE > STHEPass4 under the same flow rate. Therefore, when the WPHE was designed optimally under same operating condition with STHE, the maintenance fee and space can be reduced effectively by using the WPHE.

암모니아-물 흡수식 열교환 사이클의 운전 특성 (Operating Characteristics of Ammonia-Water Absorber Heat Exchange Cycle)

  • 강인석;김남진;김종보
    • 에너지공학
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    • 제10권4호
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    • pp.357-362
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    • 2001
  • 충진농도, 냉매 팽창밸브 개도, 그리고 약용액의 유량 변화에 따른 벤치타입 암모니아-물 흡수식 열교환 사이클에 대한 실험을 수행한 결과 시스템의 충진농도가 증가할수록 냉방능력이 증가하였으며, 최적의 충진농도가 존재함을 알았다. 그리고 냉매 팽창 밸브의 개도는 응축기 출구의 직접적인 영향을 주고 있으며 최적의 과냉도가 0~4$^{\circ}C$임을 알았다. 또한 약용액의 유량이 증가시킬수록 증발압력과 강용액의 농도가 즐어들었으며, 냉방능력과 COP가 최대가 되는 최적의 약용액 유량이 존재하였다.

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Modified TOUGHREACT를 이용한 지중 열교환기 내 순환 유체의 온도 분포 추정 (A Study to Calculate Inlet Fluid Temperature of the Borehole Heat Exchanger (BHE) using Modified TOUGHREACT)

  • 김성균;배광옥;이강근;심병완;송윤호
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2007년도 추계학술대회 논문집
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    • pp.477-480
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    • 2007
  • Inlet fluid temperature of the BRE in the geothermal heat pump system depends on heat exchange rate between the refrigerant of the heat pump and the leaving fluid from the BRE. Because the outlet fluid temperature of the BHE varies with time, inlet fluid temperature has to vary with time. In this study, the module to calculate inlet fluid temperature is developed, which can consider the time-varying outlet fluid temperature and the heat exchange capacity of the heat pump. It is assumed that heat loss or gain of the leaving fluid from outlet to inlet of the BHE is negligible, except when the fluid contacts with the refrigerant of the heat pump. This module is combined with TOUGHREACT, a widely accepted three-dimensional numerical simulator for heat and water flow and geochemical reactions in geothermal systems and is applied to data analyses of the thermal response test.

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산화알루미늄의 치환에 따른 붕규산 유리의 분상 미 이온교환성에 관한 연구 (Ion Exchange Capacity and Phase Separation of Alkali Borosilicate Glass by Substituting $Al_2O_3$)

  • 김병호;유영문
    • 한국세라믹학회지
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    • 제21권1호
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    • pp.41-50
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    • 1984
  • The ion-exchange porous glasses were prepared by heat treating and subsequently acid treating the (95-y) $SiO_2$.$yB_2O_3$.$5Na_2O+xAl_2O_3$ glasses with y=55, 45, 35, 25. mole% and x=0, 2, 5, 9 mole% It was then investigated how the cation exchange capacity was affected by the phase separation in these glasses. For that matter such quantities as alkali extraction amount pore volume and specific surface area of the glasses were measured. The phase separation in these glasses was in general suppressed by the addition of $Al_2O_3$ maximally around the composition of 5 mole% $Al_2O_3$ This may be because the micro-phase separation prevailed in the glass of that composition over the macro-phase separation increasing thereby the specific surface area as well as the residual amount Al of after acid-treatment and accordingly the cation exchange capacity. The maximum values of the cation exchange capacity was observed to be about 150meq/100g for the glasses of (40-50) $SiO_2$ (55~45)$yB_2O_3$. $5Na_2O+5Al_2O_3$.

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