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Conjugate heat and species transport in an air filled ventilated enclosure with a thermo-contaminated block

机译:在带有热污染块的充满空气的通风外壳中结合热量和物质传输

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摘要

The flow visualization, thermal and solutal effects in a ventilated enclosure around a thermo-contaminated square block is numerically modeled. Simulations are performed for different locations and different sizes of the thermo-contaminated block with inlet and outlet port along the vertical walls where coolant air is supplied and contaminated air is flush out. The block is maintained with higher temperature and species concentration compared to the injected cold fluid. The walls are assumed as impermeable and adiabatic to heat and solute. The heat and species transfer rate along the surface of the block is compared for different values of Richardson number, Reynolds number, buoyancy ratio and block positions. Cooling efficiency inside the enclosure and average fluid temperature is calculated for different physical flow parameters to find the most suitable size and position of the block in order to obtain the maximum heat and mass transfer rate inside the enclosure. It is found that maximum cooling inside the enclosure is obtained when thermo-contaminated block is placed near the outlet port.
机译:对受热污染的方形块周围通风橱中的流动可视化,热效应和稀释效应进行了数值建模。针对不同位置和尺寸的热污染块进行了模拟,这些热污染块的入口和出口沿垂直壁,在垂直壁上提供了冷却剂空气,并冲洗掉了污染空气。与注入的冷流体相比,该块保持较高的温度和物质浓度。假定该壁是不渗透的并且对热量和溶质是绝热的。比较了Richardson数,Reynolds数,浮力比和块位置的不同值沿块表面的传热和物质传递速率。针对不同的物理流量参数计算机柜内部的冷却效率和平均流体温度,以找到最合适的块尺寸和位置,从而获得机柜内部的最大热量和质量传递率。可以发现,当受热污染的块放在出口附近时,可以在机箱内获得最大的冷却效果。

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