• 제목/요약/키워드: Heat reservoir

검색결과 90건 처리시간 0.024초

쥐 심폐바이패스 모델에서 심정지액 주입용 열교환기를 이용한 직장체온 유지 (Rectal Temperature Maintenance Using a Heat Exchanger of Cardioplegic System in Cardiopulmonary Bypass Model for Rats)

  • 최세훈;김화룡;백인혁;문현종;김원곤
    • Journal of Chest Surgery
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    • 제39권7호
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    • pp.505-510
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    • 2006
  • 배경: 쥐를 이용한 심폐바이패스 모델은 시간 및 비용의 절감, 관리의 용이, 큰 실험실의 불필요, 그리고 반복실험의 용이 등 많은 장점이 있으나 기술적인 어려움 또한 크다. 열교환기를 이용한 효율적인 중심체온 유지 및 조절 역시 이러한 문제점 중의 하나이다. 이에 본 연구에서는 쥐 심폐바이패스 모델을 위해 기존의 상용화된 산화기를 소동물용으로 개조한 뒤 심정지액 주입용 소형 열교환기를 이용하여 충전액을 최소화한 상태에서 인공심폐기에 의한 효율적인 체온 유지가 가능한지를 보고자 하였다. 대상 및 방법: 수컷 쥐(Sprague-Dawley,평균 530 g) 10마리를 각 5예씩 나누어 열교환기를 사용한 군과 사용하지 않은 군으로 구분하였다. 열교환기는 심정지액 주입용 열교환기를 개조하여 사용하였으며 산화기를 포함한 전체 정지 충전용량은 40 cc였다. 열교환기를 사용하지 않은 군에서는 저혈조 주위에 온수를 순환시켰다. 실험동물 마취 후 동맥 삽관은 대퇴동맥 및 내경동맥에 정맥 삽관은 외경정맥에 시행하고 부분 심폐바이패스(40 ml/kg/min)를 20분간 유지하였다. 두 군간의 비교 분석을 위해 직장 체온을 각각 마취 직후, 동정맥 삽관 후, 심폐바이패스 후 5, 10, 15, 20분에 측정하였다. 심폐바이패스 후 5, 15분에는 헤모글로빈 및 동맥혈 가스분석을 동시에 측정하였다. 결과: 쥐에서의 심폐바이패스 운용은 안정적으로 유지되었으며, 심폐바이패스 후 5분부터 두 군간의 체온 차이는 유의하였다(p<0.01). 20분 후 체온은 각각 $36.16{\pm}0.32^{\circ}C$$34.22{\pm}0.36^{\circ}C$였다. 결론: 본 연구는 소동물 심폐바이패스 모델에서 심정지액 주입용 열교환기를 이용하여 충전액에 대한 영향을 최소화하면서 효율적인 체온유지가 가능함을 증명하였다. 이러한 실험 결과는 향후 저체온 심폐바이패스 운용에 관한 실험 모델로 쥐를 폭넓게 이용할 수 있다는 가능성을 제시한다는 점에서 그 의의가 크다.

열전변환 장치의 특성 분석에 대한 연구 (Performance Analysis of A Variable-Spacing Cesium Thermionic Energy Converter)

  • Lee, Deuk-Yong
    • 대한전기학회논문지
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    • 제41권9호
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    • pp.1085-1094
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    • 1992
  • A variable-spacing cesium thermionic energy conversion test station is designed and fabricated for the study of power generation. The diode is in the form of a guard-ringed plane-parallel geometry in which a polycrystalline rhenium emitter of 2 cmS02T area faces a radiation-cooled polycrystalline rhenium collector of 1.9 cmS02T area. The emission of plasma from heated refractory electrode metal is the driving reaction in the direct conversion of heat to electricity by thermionic energy conversion. The plasma is produced from electrons and positive ions formed simultaneously by thermionic emission and surface ionization of cesium atoms incident on the hot emitter from the cesium vapor in the diode. And high plasma density causes plasma multiplication within the gap due to volume ionization that results in high power output. The variation of the saturation current of a Knudsen converter is investigated at an emitter-collector gap of 0.1 mm and an emitter temperatures. A maximum power output of 13.47 watta/cmS02T is observed at a collector temperature of 963 K and a cesium reservoir temperature of 603 K.

모터 일체형 유압 파워 패키지의 개발 (Development of a Hydraulic Power Package Enclosed with an Electric Motor)

  • 박용호;이창돈;이진걸
    • 동력기계공학회지
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    • 제4권3호
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    • pp.55-61
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    • 2000
  • In this study, a new design of an one-body type of an unbalanced-fixed- displacement type vane pump combined with an induction type electric motor was suggested. By the application of the new design scheme, it was possible to reduce the number of parts of the pump system and to cut down the volume of power package than that of already-used products. The case in this study enabled efficient heat transfer and electricity insulation of hydraulic fluid. Thus oil moves through the inside of the package for cooling and returns to the reservoir. Because of this design, it was difficult to measure the shaft-input torque. Therefore the package overall efficiency in the paper was evaluated with a ratio of hydraulic power and electric power.

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오리피스 맥동관 냉동기의 수치적 해석 (Numerical Analysis of an Orifice Pulse Tube Refrigerator)

  • 이강선;정은수;최헌오
    • 설비공학논문집
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    • 제6권3호
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    • pp.282-290
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    • 1994
  • A numerical model for the analysis and design of orifice pulse tube refrigerators has been developed. Heat transfer coefficient and friction factors in the model vary with time, and the real physical properties such as thermal conductivity and viscosity were used to improve the accuracy of the model. Thermodynamic behavior of the working fluid within pulse tube refrigerators was investigated and the effect of design parameters, such as reservoir volume, orifice diameter, and NTU of regenerator, on the cooling load and COP was shown.

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압력조절밸브와 배관 특성을 포함한 유도무기용 기체 블로우다운 시스템의 공압부 모델링에 관한 연구 (A Study on Modeling of the Pneumatic Part in a Gas Blow-Down System Including Pressure Regulator and Pipe-Line Characteristics)

  • 박영우
    • 드라이브 ㆍ 컨트롤
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    • 제14권3호
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    • pp.32-39
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    • 2017
  • In this study, a mathematical model of the pneumatic part in a gas blow-down system is proposed. The mathematical model consists of four major parts: pressure vessel, reservoir, pressure regulator and pipe-line. To ensure accuracy in long-time simulations, heat transfer between gas and pressure vessel is considered. The model is validated by comparing simulation results with experimental data. Experiments are conducted on the ground, where free convection can be assumed. Simulation results indicate the proposed model can accurately describe behavior of a gas blow-down system. Therefore, it may be used for design and analysis of similar systems with a slight modification.

Development of A Floating Solar Thermoelectric Generator Using A Dome Shaped Fresnel Lens for Ocean Application

  • Seong-Hoon Kim;Jeung-Sang Go
    • 한국산업융합학회 논문집
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    • 제26권6_1호
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    • pp.1001-1010
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    • 2023
  • To solve the problem that photovoltaic panels can not harvest electrical energy at a cloudy day and night, a floating solar thermoelectric generator (FSTEG, hereafter) is studied. The FSTEG is consisted of a dome shaped Fresnel lens to condense solar energy, a thermoelectric module connected with a heat sink to keep temperature difference, a floating system simulating a wavy ocean and an electrical circuit for energy storage. The dome shaped Fresnel lens was designed to have 29 prisms and its optical performance was evaluated outdoors under natural sunlight. Four thermoelectric modules were electrically connected and its performance was evaluated. The generated energy w as stored in a Li-ion battery by using a DC-DC step-up converter. For the application of ocean environment, the FSTEG was covered by the dome shaped Fresnel lens and sealed to float in a water-filled reservoir. The harvested energy shows a potential and a method that the FSTEG is suitable for the energy generation in the ocean environment.

흰쥐의 심장을 이용한 Modified Isolated Working Heart Perfusion Technique (Perfusion Techniques Using the Modified Isolated Working Rat Heart Model)

  • 이종국;최형호
    • Journal of Chest Surgery
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    • 제13권4호
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    • pp.338-345
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    • 1980
  • We have modified an isolated perfusion rat heart model of cardiopulmonary bypass, with which we are able to screen the effects of various cardioplegic solutions and hypothermia upon the ability of the heart to survivie during and recover from period of ischemic arrest. The modified experimental model was differed from the original as follow : a heat coil chamber of atrial and aortic reservoir provided temperature control, and the perfusate was gassed with each pure oxygen and pure carbon dioxide in 95:5 ratio. The Langendorff perfusion was initiated for a 10 minute period by introducing perfusate at $37^{\circ}C.$ into the aorta from the aortic reservoir located 100 cm above the heart. The isolated perfused working rat heart model was a left heart preparation in which oxygenated perfusion medium (at $37^{\circ}C.$) entered the cannulated left atrium at a pressure of 20 cm $H_{2}O$ and was passed to the ventricle, from which it was sponeously elected(no electrical pacing) via an aortic cannula, against a hydrostatic pressure of 100cm $H_{2}O$. during this working period various indices of cardiac functin were measured. The cardiac functions were stable for over 3 hour with perfusion of Krebs-Henseleit bicarbonate buffer solution containing only glucose (11.1 mM/L). The percentage of cardiac functins were maintained about 94% on heart rate, 80.6% on peak aortic pressure, 87.7% on coronary flow and 76.3% on aortic flow rate after 3 hour of working heart perfusion at a pressure of 20 cm $H_{2}O$. We believe this preparation to be a good biochemical model for the human heart which offers many advantages including economic, speed of preparation, reproducibility, and the ability to handle large numbers.

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SOFC를 이용한 가정용 열병합 발전시스템 개발 및 성능시험 (Development and Performance Test of SOFC Co-generation System for RPG)

  • 이태희;최진혁;박태성;최호윤;유영성
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2009년도 춘계학술대회 논문집
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    • pp.361-364
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    • 2009
  • KEPRI has studied planar type SOFC stacks using anode-supported single cells and kW class co-generation systems for residential power generation. A 1kW class SOFC system consisted of a hot box part, a cold BOP part and a water reservoir. A hot box part contains a SOFC stack made up of 48 cells with $10{\times}10cm^2$ area and ferritic stainless steel interconnectors, a fuel reformer, a catalytic combustor and heat exchangers. Thermal management and insulation system were especially designed for self-sustainable operation. A cold BOP part was composed of blowers, pumps, a water trap and system control units. When a 1kW class SOFC system was operated at $750^{\circ}C$ with hydrogen, the stack power was 1.2kW at 30 A and 1.6kW at 50A. Turning off an electric furnace, the SOFC system was operated using hydrogen and city gas without any external heat source. Under self-sustainable operation conditions, the stack power was about 1.3kW with hydrogen and 1.2kW with city gas respectively. The system also recuperated heat of about 1.1kW by making hot water. Recently KEPRI developed stacks using $15{\times}15cm^2$ cells and tested them. KEPRI will develop a 5 kW class CHP system using $15{\times}15cm^2$ stacks by 2010.

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1kW 고체산화물 연료전지(SOFC) 시스템 설계 및 자열운전 (Design and Self-sustainable Operation of 1 kW SOFC System)

  • 이태희;최진혁;박태성;유영성;남석우
    • 한국수소및신에너지학회논문집
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    • 제20권5호
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    • pp.384-389
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    • 2009
  • KEPRI (Korea Electric Power Research Institute) has studied planar type solid oxide fuel cell (SOFC) stacks using anode-supported cells and kW class co-generation systems for residential power generation. In this work, a 1 kW SOFC system consisted of a hot box part, a cold BOP (balance of plant) part, and a hot water reservoir. The hot box part contained a SOFC stack made up of 48 cells, a fuel reformer, a catalytic combustor, and heat exchangers. Thermal management and insulation system were especially designed for self-sustainable operation in that system. A cold BOP part was composed of blowers, pumps, a water trap, and system control units. When the 1 kW SOFC stack was tested using hydrogen at $750^{\circ}C$, the stack power was about $1.2\;kW_e$ at 30 A and $1.6\;kW_e$ at 50 A. Turning off an electric furnace, the SOFC system was operated using hydrogen and city gas without any external heat source. Under self-sustainable operation conditions, the stack power was about $1.3\;kW_e$ with hydrogen and $1.2\;kW_e$ with city gas respectively. The system also recuperated heat of about $1.1\;kW_{th}$ by making hot water.

Numerical and experimental studies of cryogenic reciprocating expander without inner piston

  • Park, Sehyeon;Bae, Junhyuk;Kim, Kyoungjoong;Jeong, Sangkwon
    • 한국초전도ㆍ저온공학회논문지
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    • 제20권3호
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    • pp.21-27
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    • 2018
  • It is difficult to fabricate and maintain moving parts of expander at cryogenic temperature. This paper describes numerical analysis and experimental investigation on a cryogenic reciprocating expander without moving piston. An intake valve which takes high-pressure gas, and an exhaust valve which discharges low-pressure gas, are connected to a tube. The inside pressure of the tube is pulsated for work production. This geometric configuration is similar to that of pulse tube refrigerator but without regenerator. An orifice valve and a reservoir are installed to control the phase of the mass flow and the pressure. At the warm end, a heat exchanger rejects the heat which is converted from the produced work of the expanded gas. For the numerical analysis, mass conservation, energy conservation, and local mass function for valves are used as the governing equations. Before performing cryogenic experiments, we carried out the expander test at room temperature and compared the performance results with the numerical results. For cryogenic experiments, the gas is pre-cooled by liquid nitrogen, and then it enters the pulse tube expander. The experiments are controlled by the opening of the orifice valve. Numerical analysis also found the expander conditions that optimize the expander performance by changing the intake pressure and valve timing as well as the opening of the orifice valve. This paper discusses the experimental data and the numerical analysis results to understand the fundamental behavior of such a newly developed non-mechanical expander and elucidate its potential feature for cryogenic application.