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首页> 外文期刊>MATEC Web of Conferences >Numerical analyses of the effect of a biphasic thermosyphon vapor channel sizes on the heat transfer intensity when heat removing from a power transformer of combined heat and power station
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Numerical analyses of the effect of a biphasic thermosyphon vapor channel sizes on the heat transfer intensity when heat removing from a power transformer of combined heat and power station

机译:从热电联产电站的变压器中排热时,双相热虹吸蒸汽通道尺寸对传热强度影响的数值分析

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Numerical analyses of the effect of a biphasic thermosyphon vapor channel sizes on the heat transfer intensity was conducted when heat removing from an oil tank of a power transformer of combined heat and power station (CHP). The power transformer cooling system by the closed biphasic thermosyphon was proposed. The mathematical modeling of heat transfer and phase transitions of coolant in the thermosyphon was performed. The problem of heat transfer is formulated in dimensionless variables “velocity vorticity vector – current function – temperature” and solved by finite difference method. As a result of numerical simulation it is found that an increase in the vapor channel length from 0.15m to 1m leads to increasing the temperature difference by 3.5 K.
机译:当从热电联产电站(CHP)的电力变压器的油箱中除热时,进行了双相热虹吸蒸汽通道尺寸对传热强度影响的数值分析。提出了一种采用封闭式双相热虹吸管的电力变压器冷却系统。进行了热虹吸管中冷却剂的传热和相变的数学建模。传热问题用无量纲变量“速度涡度矢量-电流函数-温度”表示,并通过有限差分法解决。作为数值模拟的结果,发现蒸气通道长度从0.15m增加到1m导致温度差增加3.5K。

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