• Title/Summary/Keyword: Exhaust heat recovery system

검색결과 132건 처리시간 0.021초

설비공학 분야의 최근 연구 동향 : 2009년 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 2009)

  • 한화택;이대영;김서영;최종민;백용규;권영철
    • 설비공학논문집
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    • 제22권7호
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    • pp.492-507
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    • 2010
  • This article reviews the papers published in the Korean Journal of Air-Conditioning and Refrigeration Engineering during 2009. 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. Conclusions are as follows. (1) Research trends of thermal and fluid engineering have been surveyed as groups of general thermal and fluid flow, fluid machinery and piping, and new and renewable energy. Various topics were covered in the field of general thermal and fluid flow such as an expander, a capillary tube, the flow of micro-channel water blocks, the friction and anti-wear characteristics of nano oils with mixtures of refrigerant oils, etc. Research issues mainly focused on the design of micro-pumps and fans, the heat resistance reliability of axial smoke exhaust fans, and hood systems in the field of fluid machinery and piping. Studies on ground water sources were executed concerning two well type geothermal heat pumps and multi-heat pumps in the field of new and renewable energy. (2) Research works on heat transfer area have been reviewed in the categories of heat transfer characteristics and industrial heat exchangers. Researches on heat transfer characteristics included the heat transfer in thermoelectric cooling systems, refrigerants, evaporators, dryers, desiccant rotors. In the area of industrial heat exchangers, researches on high temperature ceramic heat exchangers, plate heat exchangers, frosting on fins of heat exchangers were performed. (3) In the field of refrigeration, papers were presented on alternative refrigerants, system improvements, and the utilization of various energy sources. Refrigeration systems with alternative refrigerants such as hydrocarbons, mixed refrigerants, and $CO_2$ were studied. Efforts to improve the performance of refrigeration systems were made applying various ideas of suction line heat exchangers, subcooling bypass lines and gas injection systems. Studies on heat pump systems using unutilized energy sources such as river water, underground water, and waste heat were also reported. (4) Research trend in the field of mechanical building facilities has been found to be mainly focused on field applications rather than performance improvements. In the area of cogeneration systems, papers on energy and economic analysis, LCC analysis and cost estimating were reported. Studies on ventilation and heat recovery systems introduced the effect on fire and smoke control, and energy reduction. Papers on district cooling and heating systems dealt with design capacity evaluation, application plan and field application. Also, the maintenance and management of building service equipments were presented for HVAC systems. (5) In the field of architectural environment, various studies were carried to improve indoor air quality and to analyze the heat load characteristics of buildings by energy simulation. These studies helped to understand the physics related to building load characteristics and to improve the quality of architectural environment where human beings reside in.

쓰레기 매립지 MGT 발전 및 유리온실 설계기술개발 (Development of Land Fill Gas(LFG)-MGT Power Generation and Green House Design Technology)

  • 허광범;박정극;이정빈
    • 에너지공학
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    • 제20권1호
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    • pp.13-20
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    • 2011
  • 마이크로 가스터빈의 높은 연료 다양성은 광범위한 범위의 적용처에 적용할 수 있도록 설계되었다. 최근에는 가스터빈 발전시스템의 연료로서, 유기성폐기물의 소화가스와 쓰레기 매립지로부터 발생되는 바이오 가스에 대한 수요가 증가하고 있다. 우리는 매립지 가스를 이용하여 마이크로 가스터빈 열병합 발전시스템의 성능특성 및 운전 특성에 대한 영향을 연구하고 있다. 메탄과 이산화탄소를 동시에 회수하는 공정을 개발하여 현장 실증 플랜트 규모로 시험을 수행하였으며, 유리온실에 농작물의 이산화탄소 고농도 집적을 목적으로 철-킬레이트 화합물을 기본으로 하는 액상촉매를 이용하여 매립지 가스내에 있는 불순물을 저렴한 비용으로 제거하고자 한다. Fe-EDTA(철-킬레이트)를 이용한 내부순환 다판식 기포탑 반응기에 의하여 농축정제와 이산화탄소 제거가 매립지 가스의 최적화 연료화를 추진하였다. 매립지가스의 유량은 0.207 $m^3$/min이고 5.5 kg/$cm^2$의 압력으로 공급되며 메탄농도 70%, 이산화탄소 27%로 공급되도록 농축반응기를 설계하였고 황화수소 99% 제거를 목표로 한다. 유리온실은 마이크로 가스터빈 배가스와 온수를 이용하여 대기중의 이산화탄소 농도에서 1500 ppm의 농도범위로 공급되도록 설계되었다.