• 제목/요약/키워드: Low temperature heat source

검색결과 281건 처리시간 0.032초

응축수온도가 저온지열발전 성능에 미치는 영향 연구 (A Study of the Influence of Condensing Water Temperature on Low Temperature Geothermal Power Generation)

  • 김진상;이충국
    • 한국지열·수열에너지학회논문집
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    • 제3권2호
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    • pp.17-23
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    • 2007
  • Geothermal energy is used in various forms, such as power generation, direct use, and geothermal heat pumps. High temperature geothermal energy sources have been used for power generation for more than a century. Recent technical advances in power generation equipments make relatively low temperature geothermal energy to be available for power generation. In these applications, lower temperature geothermal energy source makes smaller difference between condensing water temperature and it. Various condensing water temperatures were investigated in analyzing its influence on power generation performance. Condensing water temperature of organic Rankine cycle imposed greater influence on power generation and its performance in lower temperature geothermal power generation.

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그라우트 재료에 따른 지중 열교환기의 열전도도에 관한 실험적 연구 (Thermal Conductivity Measurement of Grouting Materials for Geothermal Heat Exchanger)

  • 임효재;공형진;송윤석;박성구
    • 설비공학논문집
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    • 제17권4호
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    • pp.364-369
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    • 2005
  • An experimental study was conducted on the thermal conductivity of various grouting materials for geothermal heat exchanger which is used as a heat sink or source in the heat pump system. The grouting of the vertical heat exchanger is important for environmental and heat transfer reasons and is generally accomplished by the placement of a low permeability material into the annular space between the borehole wall and the pipes suspended in the borehole. In this study, a lab scale test apparatus was made and measured the thermal conductivity of four grouting materials. As a result, the temperature rising tendency was similar among them, but the increasing rate was different. Thus the thermal conductivity showed a maximum difference of $27\%$ among grouting materials.

저온-진공 흑체시스템의 설계 및 성능 평가 (Design and Performance Evaluation of Low-Temperature Vacuum Blackbody System)

  • 김기석;장기수;이상용;김건희;김동익
    • 비파괴검사학회지
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    • 제33권4호
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    • pp.336-341
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    • 2013
  • 본 논문에서는 저온-진공 흑체시스템의 설계 및 구성과 함께 흑체시스템의 수학 모델을 이용한 열해석 평가 방법과 그 결과를 제시하였으며 적외선 카메라를 이용한 흑체시스템의 평가 방안 및 결과를 명시하였다. 개발된 흑체시스템은 기존의 시스템에 비해 상대적으로 규모가 소형이며 273 K이하의 저온에서 수증기가 응결될 수 있는 현상을 방지하기 위하여 흑체시스템 내부를 진공 ($2.67{\times}10^{-2}$ Pa) 상태로 유지되도록 제작되었다. 또한 흑체시스템 내부의 열손실로 인한 성능 저하를 막기 위하여 radiator가 설치되는 부위에는 heat sink, heat shield 및 cold shield를 설계하였다. 흑체시스템의 수학 모델에 대한 열 해석을 위해서 변형된 스테판-볼츠만의 정리를 이용하여 radiator의 성능을 검증하였고 실제 흑체시스템에서 방사되는 적외선 신호에 대해서는 적외선 카메라를 이용하여 신호전달함수 및 온도분해능을 측정, 분석하였다. 제안된 설계와 해석 및 실험 결과에 근거하여, 개발된 저온-진공 흑체시스템은 적용온도범위인 268~333 K 구간에서 적외선 측정장치의 캘리브레이션을 위한 기준장치로서 성능이 안정적이고 적용이 적합한 것으로 확인되었다.

Analysis of Nigeria Research Reactor-1 Thermal Power Calibration Methods

  • Agbo, Sunday Arome;Ahmed, Yusuf Aminu;Ewa, Ita Okon Bassey;Jibrin, Yahaya
    • Nuclear Engineering and Technology
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    • 제48권3호
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    • pp.673-683
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    • 2016
  • This paper analyzes the accuracy of the methods used in calibrating the thermal power of Nigeria Research Reactor-1 (NIRR-1), a low-power miniature neutron source reactor located at the Centre for Energy Research and Training, Ahmadu Bello University, Zaria, Nigeria. The calibration was performed at three different power levels: low power (3.6 kW), half power (15 kW), and full power (30 kW). Two methods were used in the calibration, namely, slope and heat balance methods. The thermal power obtained by the heat balance method at low power, half power, and full power was $3.7{\pm}0.2kW$, $15.2{\pm}1.2kW$, and $30.7{\pm}2.5kW$, respectively. The thermal power obtained by the slope method at half power and full power was $15.8{\pm}0.7kW$ and $30.2{\pm}1.5kW$, respectively. It was observed that the slope method is more accurate with deviations of 4% and 5% for calibrations at half and full power, respectively, although the linear fit (slope method) on average temperature-rising rates during the thermal power calibration procedure at low power (3.6 kW) is not fitting. As such, the slope method of power calibration is not suitable at lower power for NIRR-1.

우유의 열처리가 우유품질과 영양가에 미치는 영향: III. 우유 열처리에 의한 병원균 사멸효과 (Effects of Heat Treatment on the Nutritional Quality of Milk III. Effect of Heat Treatment on Killing Pathogens in Milk)

  • 문용일;정지윤;오세종
    • Journal of Dairy Science and Biotechnology
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    • 제35권2호
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    • pp.121-133
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    • 2017
  • A small amount of milk is sold as 'untreated' or raw in the US; the two most commonly used heat-treatments for milk sold in retail markets are pasteurization (LTLT, low-temperature long time; HTST, high-temperature short time) and sterilization (UHT, ultra-high temperature). These treatments extend the shelf life of milk. The main purpose of heat treatment is to reduce pathogenic and perishable microbial populations, inactivate enzymes, and minimize chemical reactions and physical changes. Milk UHT processing combined with aseptic packaging has been introduced to produce shelf-stable products with less chemical damage than sterile milk in containers. Two basic principles of UHT treatment distinguish this method from in-container sterilization. First, for the same germicidal effect, HTST treatments (as in UHT) use less chemicals than cold-long treatment (as in in-container sterilization). This is because Q10, the relative change in the reaction rate with a temperature change of $10^{\circ}C$, is lower than the chemical change during bacterial killing. Based on Q10 values of 3 and 10, the chemical change at $145^{\circ}C$ for the same germicidal effect is only 2.7% at $115^{\circ}C$. The second principle is that the need to inactivate thermophilic bacterial spores (Bacillus cereus and Clostridium perfringens, etc.) determines the minimum time and temperature, while determining the maximum time and temperature at which undesirable chemical changes such as undesirable flavors, color changes, and vitamin breakdown should be minimized.

PWM 전류제어와 펠티어 소자를 이용한 알루미늄 판의 온도 제어 (Temperature Control of the Aluminum Plate with Pottier Module by PWM Current Control)

  • 방두열;권대규;이성철
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 추계학술대회 논문집
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    • pp.897-900
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    • 2005
  • This paper presents temperature control of aluminum plate using Peltier module. As one of the thermoelectric effect, Peltier effect is heat pumping phenomena by electric energy. So if current is charged to Peltier module, it absorbs heat from low temperature side and emits heat to high temperature side. In this experiment, Peltier module is used to control the temperature of small aluminum plate with heating and cooling ability of Peltier module with current control and fan On/OFF control. And current control of Peltier module was accomplished by PWM method. As a results of experiments, it takes about 125sec to control temperature of aluminium plate between $30^{\circ}C\;and\;70^{\circ}C$ and about 70sec between $40^{\circ}C\;and\;60^{\circ}C$, in ambient temperature $29^{\circ}C$ while operating cooling fan only while cooling duration. Future aim is to realize more rapid temperature control and develop SMHA(special metal hydride actuator) by using Peltier module as a heating and cooling source.

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무기질 자극제를 사용한 탄소배출 저감형 저발열형 혼합시멘트의 수화특성에 관한 연구 (Hydration Properties of Low Carbon type Low Heat Blended Cement)

  • 최성우;류득현;김훈상;김규용
    • 한국건축시공학회지
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    • 제13권3호
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    • pp.218-226
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    • 2013
  • 건설재료 중 시멘트 및 철강은 대표적으로 탄산가스를 발생시키는 재료산업이다. 건설 산업에서의 탄소 배출량 감소를 위해서는 이러한 재료의 사용을 감소시키는 것이 가장 효과적이라고 할 수 있다. 본 연구에서는 시멘트의 사용량을 감소시킨 저발열형 혼합시멘트의 개발을 목적으로 하고 있다. 시멘트 혼합 비율을 10 %로 낮춘 저탄소 배출형 저발열 혼합시멘트의 수화 특성 및 콘크리트의 온도상승 특성을 검토하였다. 시험 결과, 혼화재의 반응 활성화를 위해서는 CaO 및 $SO_3$의 공급원 필요하며, 석고 및 생석회를 적정 배합비율 적용할 경우 초기에는 강도 발현이 다소 지연되지만 장기재령에서는 기존의 저발열 혼합시멘트와 유사한 성능을 확보 가능한 것으로 나타났다. 특히 저탄소 저발열 혼합시멘트의 경우 콘크리트의 수화열도 기존 저발열 혼합시멘트에 비해 감소시킬 수 있는 것으로 나타났다.

고열량 반탄화 연료 생산을 위한 목질계 바이오매스 저온열분해 방법에 대한 연구 (Study on Low Temperature Pyrolysis of Woody Biomass to Produce High-Calorie Torrefied Fuel)

  • 이창엽;권민준;김대해;김세원
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2014년도 제49회 KOSCO SYMPOSIUM 초록집
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    • pp.263-263
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    • 2014
  • Low temperature pyrolysis of woody biomass has been conducted to produce highcalorie torrefied fuel. In this experiment, to maximize the energy efficiency in heat transfer, flue gas is directly used for heat source in the torrefier. To accomplish the oxygen free environment in the torrefaction reactor, a burner has been developed and it can be runned with fuel rich state. An inner central axis rotating type of reactor was applied in experiment. To use the calorific gases produced from torrefier, another burner is developed to combust them.

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유기랭킨사이클의 성능에 미치는 내부열교환기의 영향 (Effects of Internal Heat Exchanger on Performance of Organic Rankine Cycles)

  • 김경훈;정영관
    • 한국수소및신에너지학회논문집
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    • 제22권3호
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    • pp.402-408
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    • 2011
  • Organic Rankine cycles (ORC) can be used to produce power from heat at different temperature levels available as geothermal heat, as biogenic heat from biomass, as solar or as waste heat. In ORC working fluids with relatively low critical temperatures and pressures can be compressed directly to their supercritical pressures and heated before expansion so as to obtain a better thermal match with their heat sources. In this work thermal performance of ORC with and without an internal heat exchanger is comparatively investigated in the range of subcritical and transcritical cycles. R134a is considered as working fluid and special attention is paid to the effect of turbine inlet pressure on the characteristics of the system. Results show that operation with supercritical cycles can provide better performance than subcritical cycles and the internal heat exchanger can improve the thermal efficiency when the temperature of heat source becomes higher.

가변 열원에서 작동하기 위한 유기랭킨 사이클에 관한 연구 (A Study on the Organic Rankine Cycle for the Fluctuating Heat Source)

  • 조수용;조종현
    • 한국유체기계학회 논문집
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    • 제17권1호
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    • pp.12-21
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    • 2014
  • An organic Rankine cycle was analyzed to work at the optimal operating point when the heat source is fluctuated. R245fa was adopted as a working fluid, and an axial-type turbine as expander on the cycle was designed to convert the heat energy to the electricity since the turbo-type expander works at off-design points better than the positive displacement-type expander. A supersonic nozzle was designed to increase the spouting velocity because a higher spouting velocity can produce more output power. They were designed by the method of characteristics for the operating fluid of R245fa. Three different cases, such as various spouting velocities, various inlet total temperatures, and various nozzle numbers, were studied. From these results, an optimal operating cycle can be designed with the organic Rankine cycle when the available heat source as renewable energy is low-grade temperature and fluctuated.