• Title/Summary/Keyword: 열원온도

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Development of GHP System Using Industrial Waste Water Source (산업폐수열원이용 GHP 시스템 개발)

  • 장기창;박준택;박성룡
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 2002.11a
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    • pp.53-58
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    • 2002
  • 선진국에서는 산업체의 1차 에너지소비가 전체 에너지소비의 약 30~40%이고, 이 에너지의 약 70~80%가 공정용 열에너지로 사용되고 있다. 이러한 공정용 열의 온도범위를 파악하는 것은 매우 중요하지만 산업공정의 다양성 때문에 평가하기에는 많은 어려움이 따른다. 그러나 일반적으로 산업체 열에너지의 60% 이상은 30$0^{\circ}C$ 이하의 온도이며, 약 20~30%는 15$0^{\circ}C$ 이하이다.(중략)

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Temperature Measurement of the Contact Surface from the Analysis of Temperature Distribution of the Hot Spots (열원의 온도분포 해석을 통한 접촉표면의 온도측정)

  • 정동윤
    • Tribology and Lubricants
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    • v.9 no.1
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    • pp.16-21
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    • 1993
  • A method has been developed to measure the surface temperature in a sliding tribosystem. The determination of the surface temperature was inferred from the temperature of hot spots which were generated by frictional heat. The temperature of hot spots was determined by regressing those digitized data on Gecim-Winer's theoretical model. The experimental results are discussed considering the important factors such as PV and frictional heat. The surface temperature rise is related to the thermal conductivity in low PV range. As PV increases, it reaches nearly constant value called the critical temperature.

사양 - 겨울철 육계 사양관리 점검하기

  • Yu, Jae-Seok
    • Monthly Korean Chicken
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    • v.15 no.12
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    • pp.84-91
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    • 2009
  • 우리나라는 사계절이 있어 여름과 겨울은 계사의 단열 수준에 따라 환기량과 습도 공급의 균형을 어떻게 유지해 주느냐가 가장 큰 사양관리의 주요한 점이다. 특히 겨울철은 개방계사라도 온도유지를 위해서 계사를 완전히 밀폐된 상태에서 사육을 하기 때문에 형식은 모든 농장이 무창계사와 동일한 상태에서 관리가 이루어진다. 그런데 무창계사의 형태이긴 하지만 단열수준이 충분히 확보되지 않는 농장이 많기 때문에 여러 가지 문제점이 발생한다. 가장 문제되는 것은 호흡기 질병에 노출되는 것인데 이에 대한 대책도 함께 점검해보자. 계사단열보강 문제, 충분한 환기를 위한 열원확보와 홴 설비, 그리고 인원적으로 공급해야 하는 습도관리, 바닥 깔짚온도, 일령에 따라 적절하게 늘려주는 문제, 환기방법, 겨울철 육추관리, 마지막으로 호흡기 질병에 대한 대책도 알아보고자 한다.

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반도체소자의 열저항에 관하여 I

  • 송진수
    • 전기의세계
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    • v.27 no.6
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    • pp.14-20
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    • 1978
  • 열설계의 목적은 장치 또는 시스템에 있어서 주어진 전기적, 기계적, 조건 및 신뢰성, 보전성, 가격등의 요구조건에 따라 열원에서 최종적인 heat sink까지 열을 능률적으로 전파하는데 있다. 즉 장치전체의 온도를 낮추거나, 부품 또는 장치내의 온도를 균일하게 함으로서 안정된 동작을 할 수 있게 설계하는 것을 말한다. 전자공학분야의 열설계는 부품과 장치의 두 영역으로 구분할 수 있으나 장치의 열설계는 부품자체와 부품간의 접속에서의 전체적인 열적 조화를 의미하므로 여기서는 개별소자 특히 Power Transistor를 중심으로 I, II부로 나누어 열적 문제점에 관해 소개하고자 한다.

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Geometric Characteristics of Methane Steam Reforming with Low Temperature Heat Source (중저온 열원에 의한 메탄 수증기 개질의 형상 인자에 따른 특성)

  • Shin, Gahui;Yun, Jinwon;Yu, Sangseok
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.40 no.12
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    • pp.793-799
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    • 2016
  • In a hybrid fuel cell system, low-temperature reforming technology, which uses waste heat as a heat source, is applied to improve system efficiency. A low temperature reformer is required to optimize geometry in low thermal conditions so that the reformer can achieve the proper methane conversion rate. This study analyzed internal temperature distributions and the reaction patterns of a reformer by considering the change of the shape factor on the limited heat supply condition. Unlike the case of a high temperature reformer, analysis showed that the reaction of a low temperature reformer takes place primarily in the high temperature region of the reactor exit. In addition, it was confirmed that the efficiency can be improved by reducing the GHSV (gas hourly space velocity) or increasing the heat transfer area in the radial direction. Through reacting characteristic analysis, according to change of the aspect ratio, it was confirmed that a low temperature reformer can improve the efficiency by increasing the heat transfer in the radial direction, rather than in the longitudinal direction.

Thermodynamic Analysis of Trilateral Cycle Applied to Exhaust Gas of Marine Diesel Engine (선박용 디젤엔진의 배기가스에 적용된 3 변 사이클의 열역학적 분석)

  • Choi, Byung-Chul;Kim, Young-Min
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.9
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    • pp.937-944
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    • 2012
  • The thermodynamic characteristics of a trilateral cycle with water as a working fluid have been theoretically investigated for an electric generation system to recover the waste heat of the exhaust gas from a diesel engine used for the propulsion of a large ship. As a result, when a heat source was given, the efficiencies of energy and exergy were maximized by the specific conditions of the pressure and mass flow rate for the working fluid at the turbine(expander) inlet. In this case, as the condensation temperature increased, the volume expansion ratio of the turbine could be reduced properly; however, the exergy loss of the heat source and exergy destruction of the condenser increased. Therefore, in order to recover the waste exergy from the topping cycle, the combined cycle with a bottoming cycle such as an organic Rankine cycle, which is utilized at relatively low temperatures, was found to be useful.

The Effect of Heat Loss on the Radial Heat Flow in the Flash Method (반경방향 열흐름 섬광법에서 열손실의 영향)

  • 이홍주;김순규
    • Transactions of the Korean Society of Mechanical Engineers
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    • v.13 no.2
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    • pp.257-264
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    • 1989
  • For the extension of the flash method the heat diffusion equation with heat loss and with an arbitrary heat pulse is mathematically analyzed. In the analysis the heat loss includes the axial and radial directions on the front, rear and peripheral surfaces. The heat pulse is irradiated from the source to the front surface of the sample and the heat receiving area on the front surface is controlled by the apertures of an optical system. From this analysis the thermal diffusivity of the samples can be determined more precisely than before by the data reduction method using various percent time. The data can be obtained by the extended radial flash technique adjusted correctly the heating area on the central part of the front surface with a proper aperture or the conventional axial flash technique heated uniformly all parts of the front surface.

Performance Characteristics of Organic Rankine Cycles Using Medium Temperature District Heating Water as Heat Source (지역난방용 중온수 열원 유기랭킨사이클 성능 특성)

  • Park, Woo-Jin;Yoo, Hoseon
    • Plant Journal
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    • v.12 no.1
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    • pp.29-36
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    • 2016
  • It is becoming increasingly important to make use of alternative energy source. because It is not able to rely on only fossil fuel for the recent increasing demand of energy consumption. With this situation, lots of studies for utilizing low grade energy such as industrial waste heat, solar energy, and geothermal energy have been conducted. The aim of this study is to predict the operation characteristics of working fluid by using performance analysis program (ThermoFlex) through the system analysis which is not mixing district return water but using ORC(Organic Rankine Cycle, hereinafter ORC) as a downstream cycle when accumulating district heating (hereinafter DH). In this study, We conducted the performance analysis for the case which has the district heating water temperature($120^{\circ}C$) and Flow rate of $163m^3/h$ (including District Heating return water flow), and examined several working fluid which is proper to this temperature. The case using R245fa (which is the best-case) showed 269.2kW power output, 6.37% efficiency. Additionally, Cut down on fuel was expected because of the boiler inlet temperature increase by being Formed $57.3{\sim}85^{\circ}C$ in a temperature of district heating return water, depending on a pressure change of a condenser in ORC system.

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Characteristics of Particle Flow and Heat Transfer in Liquid-Particle Swirling Fluidized Beds (액체-입자 Swirling 유동층에서 유동입자 흐름 및 열전달 특성)

  • Son, Sung-Mo;Kang, Suk-Hwan;Kang, Yong;Kim, Sang-Done
    • Korean Chemical Engineering Research
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    • v.44 no.5
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    • pp.505-512
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    • 2006
  • Characteristics of particle holdup and heat transfer were investigated in a liquid-particle swirling fluidized bed whose diameter was 0.102 m and 2.5 m in height. Effects of liquid velocity, particle size and swirling liquid ratio($R_s$) on the particle holdup and immersed heater-to-bed overall heat transfer coefficient were examined. The particle holdup increased with increasing particle size and swirling liquid ratio but decreased with increasing liquid velocity.The local particle holdup was relatively high in the region near the heater when the $R_s$ value was 0.1~0.3, but the radial particle holdup was almost uniform when the $R_s$ value was 0.5, whereas, when the $R_s$ value was 0.7, the local particle holdup was relatively low in the region near the heater. The heat transfer characteristics between the immersed heater and the bed was well analyzed by means of phase space portraits and Kolmogorov entropy(K) of the time series of temperature difference fluctuations. The phase space portraits of temperature difference fluctuations became stable and periodic and the value of Kolmogorov entropy tended to decrease with increasing the value of $R_s$ from 0.1 to 0.5. The Kolmogorov entropy exhibited its maximum value with increasing liquid velocity. The value of overall heat transfer coefficient(h) showed its maximum value with the variation of liquid velocity, bed porosity or swirling liquid ratio, but it increased with increasing particle size. The value of K exhibited its maximum at the liquid velocity at which the h value attained its maximum. The particle holdup and overall heat transfer coefficient were well correlated in terms of dimensionless groups of operating variables.