• 제목/요약/키워드: Regenerator efficiency

검색결과 38건 처리시간 0.023초

왕복유동에서 재생기 특성 및 열전달에 관한 수치해석 (A Numerical Study on the Regenerator Preformance and Heat Transfer in Oscillating Flow)

  • 이건태;강병하;이재헌
    • 설비공학논문집
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    • 제8권1호
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    • pp.88-98
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    • 1996
  • The present study is concerned with the flow friction and heat transfer characteristics of the combination of various regenerator materials, using the different Darcy number and porosity, which is filled uniformly and partially in a tube under oscillating flow condition. The poros medium is adopted as Brinkmann-Forschheimer extended Darcy model. Numerical results are obtained or the flow and temperature fields and described the effect of the combination of various regenerator materials and Womersley number on the pressure drop, the heat transfer and the regenerator efficiency. The results obtained indicate that not only heat transfer between the tube wall and oscillating flow but also the pressure drop at both ends of the regenerator are increased, while the regenerator efficiency is decreased in the increase of womersley number. It is also found that the friction factor is increased as Reynolds number is increased. The comparison between the combination of the various regenerator materials and the homogeneous regenerator material shows that the regenerator efficiency can be enhanced with the proper combination of various regenerator materials even though the averaged porosity of the regenerator is same.

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구형축열체를 이용한 축열기의 성능예측 (Prediction of Performance in heat regenerator with spheres)

  • 조한창;조길원;이용국
    • 한국에너지공학회:학술대회논문집
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    • 한국에너지공학회 2003년도 추계 학술발표회 논문집
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    • pp.299-304
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    • 2003
  • Heat regenerator occupied by regenerative materials improves thermal efficiency of regenerative combustion system through the recovery of sensible heat of exhaust gases. By using one-dimensional two-phase fluid dynamics model, the unsteady thermal flow of regenerators with spherical particles were numerically analyzed to evaluate performance of ratio of waste heat recovery and temperature efficiency and to suggest optimized conditions of heat regenerator. It is predicted that exhaust gases temperature at regenerator outlet of 3.5$\times$10$^{6}$ kcal/hr heat regenerator is even lower than design condition and ratio of waste heat recovery is 75.8%.

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순산소 축열 연소시스템에서의 설계 파라미터에 관한 연구 (Parametric Study of Regenerative System with Oxy-Fuel Combustion)

  • 홍성국;노동순;이은경
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2013년도 제46회 KOSCO SYMPOSIUM 초록집
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    • pp.13-14
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    • 2013
  • The aim of this study is to investigate the parametric characteristics on regenerative system with oxy-fuel combustion by experiment. Regenerative system with a pair of oxygen burners and regenerators is used for evaluating regenerator characteristics according to design parameters such as ball (regenerator medium) size, regenerator weight, and bypass of exhaust gas. The temperature profiles with time are varied by ball size and regenerator weight. The bypass of exhaust gas shows that the heat recovery ratio increases while the regenerating temperature efficiency slightly decreases.

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재생기를 가진 실린더내의 왕복유동에 관한 열전달 (Heat Transfer of Oscillating Flow in a Cylinder with Regenerator)

  • 김진호;이재헌;강병하
    • 대한기계학회논문집
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    • 제19권7호
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    • pp.1758-1769
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    • 1995
  • The heat transfer of oscillating flow in a cylinder with regenerator was investigated by the moving boundary technique. The flow in regenerator was modeled by means of Brinkman Forchheimer-Extended-Darcy equation . Results showed that when piston moved toward right, velocity vectors near cylinder wall at left piston and right side of regenerator inclined to symmetric axis and velocity vectors near cylinder wall at right piston and left side of regenerator inclined to cylinder wall. And the time averaged Nusselt number was increased by 46.73% when the oscillatory frequency became twice and decreased by 31.46% when the oscillatory frequency became half. The time averaged Nusselt number was increased by 18.09% when thickness of the regenerator became twice and decreased by 7.53% when thickness of the regenerator became half. But mesh size of regenerator hardly affected the Nusselt number. And efficiency of regenerator was larger as the oscillatory frequency was smaller, thickness and mesh size of regenerator was larger.

An Experimental and Numerical Study on Thermal Performance of a Regenerator System with Ceramic Honeycomb

  • Ryou, Hong-Sun;Noh, Dong-Soon;Hong, Sung-Kook;Lee, Seong-Hyuk
    • Journal of Mechanical Science and Technology
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    • 제15권3호
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    • pp.357-365
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    • 2001
  • The aim of this paper is to perform the experiment and the numerical simulation for investigating the heat transfer in a regenerator system with ceramic honeycomb and to suggest a useful correlation for optimization of the regenerator system. For achieving this, the effects of some parameters were investigated, e. g., switching time, cell size and length of honeycomb on the mean temperature efficiency. The measured temperatures by R-type thermocouples were compared with the predictions by means of the commercial package, STAR-CD. A useful correlation for thermal efficiency was newly proposed as a function of the normalized switching time, defined in terms of switching time, cell size and length of honeycomb. The results showed that the thermal efficiency is above 90% and the normalized heat exchange rate is higher than 80% when the normalized switching time is less than 1000.

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구형축열체를 이용한 축열기내 열유동 해석 (Thermal flow analysis in heat regenerator with spheres)

  • 조한창;조길원;이용국
    • 한국에너지공학회:학술대회논문집
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    • 한국에너지공학회 2003년도 춘계 학술발표회 논문집
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    • pp.359-364
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    • 2003
  • Heat regenerator occupied by regenerative materials improves thermal efficiency of regenerative combustion system through the recovery of sensible heat of exhaust gases. By using one-dimensional two-phase fluid dynamics model, the unsteady thermal flow of regenerator with spherical particles, were numerically analyzed to evaluate the heat transfer and pressure losses and to suggest the parameter for designing heat regenerator. It is confirmed that the computational results, such as air preheat temperature, exhausted gases outlet temperature, and pressure losses, agreed well with the experimental data conducted from Chugairo. The thermal flow in heat regenerator varies with porosity, configuration of regenerator and diameter of regenerative particle. Assuming a given exhaust gases temperature at the regenerator outlet, the regenerator length need to be linearly increased with inlet Reynolds number of exhaust gases. It is considered that inlet Reynolds number of exhaust gases should be introduced as a regenerator design parameter.

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구형축열체를 이용한 축열기의 설계인자도출 (Derivation of Design Parameter for Heat Regenerator with Spherical Particles)

  • 조한창;조길원;이용국
    • 대한기계학회논문집B
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    • 제27권10호
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    • pp.1412-1419
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    • 2003
  • Heat regenerator occupied by regenerative materials improves thermal efficiency of combustion system through the recovery of sensible heat of exhaust gases. By using one-dimensional two-phase fluid dynamics model, the unsteady thermal flow of regenerator with spherical particles, was numerically analyzed to evaluate the heat transfer and pressure losses and to derive the design parameter for heat regenerator. It is confirmed that the computational results, such as air preheat temperature, exhausted gases outlet temperature, and pressure losses, agreed well with the experimental data. The thermal flow in heat regenerator varies with porosity, configuration of regenerator and diameter of regenerative particle. As the gas velocity increases with decreasing the cross-sectional area of the regenerator, the heat transfer between gas and particle enhances and pressure losses decrease. As particle diameter decreases, the air is preheated higher and the exhaust gases are cooled lower with the increase of pressure losses. Assuming a given exhaust gases temperature at the regenerator outlet, the regenerator need to be linearly lengthened with inlet Reynolds number of exhaust gases, which is defined as a regenerator design parameter.

급액가열기, 재생기를 적용한 유기랭킨사이클(ORC)의 열역학적 효율에 관한 해석적 연구 (Thermodynamic Efficiencies of Organic Rankine Cycles with a Feed Liquid Heater or Regenerator)

  • 박창용;홍웅기;김정민
    • 설비공학논문집
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    • 제23권10호
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    • pp.662-669
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    • 2011
  • A numerical study was performed for thermodynamic efficiencies of a basic ORC (Organic Rankine Cycle), ORC with a FLH (Feed Liquid Heater), and ORC with a regenerator. The efficiencies of the basic ORC were higher in the order of R113, R123, R245ca, and R245fa for its working fluids. It was confirmed that an optimal FLH pressure existed to maximize efficiency of the ORC with a FLH. A correlation was developed to predict the optimal FLH pressure as a function of evaporation and condensation pressure and its average absolute deviation was 0.505%. The efficiency enhancement of the basic ORC with a FLH was higher than that with a regenerator. It was presented that the basic ORC efficiency could be improved more than 10% by a FLH with $30^{\circ}C$ condensation and over $110^{\circ}C$ evaporation temperatures.

스털링 엔진용 재생 열교환기의 다공체 구조에 따른 성능 특성 (Performance Characteristics of a Regenerative Heat Exchanger Depending on Its Porous Structure)

  • 신명철;안준;강병하
    • 설비공학논문집
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    • 제24권5호
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    • pp.415-421
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    • 2012
  • Stirling engine is an external combustion engine, whose efficiency approaches that of Carnot engine with the help of a regenerator. The regenerator is a heat exchanger composed of porous medium, whose performance is dependent on the pore structure. Three types of pore structures are considered in the present study. They are wire screen, random wire and composite structure, i.e. a combination of wire screens with different hydraulic diameters. The porosity more highly affects the performance of a regenerator compared to the hydraulic diameter. The random wire can yield high effectiveness even at a high porosity. The composite mesh gives better performance when the hydraulic diameter decreases in the direction from hot side to cold side.

세라믹 볼 축열체를 이용한 순산소 축열연소시스템에 대한 실험적 연구 (Experimental Study on the Regenerative Oxy-Fuel Combustion System with Ceramic Ball)

  • 홍성국;노동순;이은경
    • 에너지공학
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    • 제22권2호
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    • pp.169-174
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    • 2013
  • 순산소 축열연소시스템에서 세라믹 볼 축열체 적용에 따른 축열/재생 특성에 관한 실험적 연구를 수행하였다. 설계인자인 볼 직경, 축열체 무게, 연소부하 변동에 따른 축열/재생 특성을 살펴보았다. 양방향 순산소 축열연소시스템 장치를 구성하여 축열체를 통과하는 배가스 및 산소의 온도를 측정하였다. 실험결과, 볼 직경과 축열체 무게 변동에 따라 배가스 및 산소 온도분포의 변화가 나타났으며, 연소부하 변동시 상대적으로 큰 온도분포의 변화가 측정되었다. 볼 직경이 작아지고 축열체 무게가 증가될수록 측정된 재생온도효율은 증가되었다. 한편, 높은 재생온도효율에 비해 열 회수율은 낮게 예측되어 열 회수율을 향상시키기 위해 축열구조 설계 최적화가 필요함을 확인하였다.