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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental research on heat transfer of natural convection in vertical rectangular channels with large aspect ratio
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Experimental research on heat transfer of natural convection in vertical rectangular channels with large aspect ratio

机译:大纵横比垂直矩形通道自然对流换热的实验研究

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摘要

This work presents the experimental research on the steady laminar natural convection heat transfer of air in three vertical thin rectangular channels with different gap clearance. The much higher ratio of width to gap clearance (60–24) and the ratio of length to gap clearance (800–320) make the rectangular channels similar with the coolant flow passage in plate type fuel reactors. The vertical rectangular channels were composed of two stainless steal plates and were heated by electrical heating rods. The wall temperatures were detected with the K-type thermocouples which were inserted into the blind holes drilled in the steal plates. Also the air temperatures at the inlet and outlet of the channel were detected. The wall heat fluxes added to the air flow were calculated by the Fourier heat conduction law. The heat transfer characteristics were analyzed, and the average Nusselt numbers in all the three channels could be well correlated with the Rayleigh number or the modified Rayleigh number in a uniform correlation. Furthermore, the maximum wall temperatures were investigated, which is a key parameter for the fuel’s integrity during some accidents. It was found that even the wall heat flux was up to 1500 W/m2, the maximum wall temperature was lower than 350 C. All this work is valuable for the plate type reactor’s design and safety analysis.
机译:这项工作提出了在具有不同间隙间隙的三个垂直细矩形通道中空气的稳定层流自然对流换热的实验研究。宽度与间隙的比率(60-24)和长度与间隙的比率(800-320)高得多,使得矩形通道类似于板式燃料反应堆中的冷却剂流动通道。垂直的矩形通道由两个不锈的钢板组成,并由电加热棒加热。用K型热电偶检测壁温,该热电偶插入在标板上的盲孔中。还检测通道入口和出口的空气温度。通过傅里叶热传导定律计算添加到气流中的壁热通量。分析了传热特性,所有三个通道中的平均Nusselt数可以与瑞利数或修正瑞利数很好地相关,并且具有均匀的相关性。此外,还对最高壁温进行了调查,这是某些事故期间燃料完整性的关键参数。发现即使壁热通量高达1500 W / m2,最大壁温也低于350C。所有这些工作对于板式反应器的设计和安全性分析都是有价值的。

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