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首页> 外文期刊>International Journal of Heat and Mass Transfer >Study on spacer-induced heat transfer deterioration of supercritical water in annular channel
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Study on spacer-induced heat transfer deterioration of supercritical water in annular channel

机译:隔板引起的超临界水在环形通道内传热退化的研究

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摘要

Experimental and numerical investigations on spacer-induced heat transfer deterioration of supercritical water in annular channel have been carried out. The test section consists of a heated outer rod of 15.0 mm inner diameter and a concentric unheated inner rod of 7.41 mm outer diameter, forming a 3.80-mm-wide annular channel. A spacer with block ratio of 0.3 is equipped into the channel. The experimental conditions are the pressure of 23–25 MPa, mass flux of 450–1200 kg/(m2s), heat flux of 400–1000 kW/m2and fluid temperature of 240–450 °C. The spacer-induced heat transfer deterioration occurs at the conditions of mass flux 450 kg/(m2 s), heat flux 400 kW/m2and specific fluid temperature region. Based on the experimental data, the criteria for the occurrence of deterioration are obtained. For the case that heat transfer deteriorates, the wall temperature experiences a couple of oscillations before recovering to the fully developed state. In order to study the mechanism of this complicated heat transfer behavior, numerical simulation has been performed with FLUENT and a reasonable explanation has been proposed.
机译:对隔板引起的环流超临界水传热退化进行了实验和数值研究。测试部分包括一个内径为15.0mm的加热外杆和一个外径为7.41mm的同心未加热内杆,形成了一个3.80mm宽的环形通道。通道中装有块比率为0.3的垫片。实验条件是压力为23–25 MPa,质量通量为450-1200 kg /(m2s),热通量为400-1000 kW / m2,流体温度为240-450C。在质量通量为450 deteriorationkg /(m2 s),热通量为400 kW / m2和特定流体温度区域的条件下,隔板引起的传热恶化。根据实验数据,获得劣化发生的标准。对于传热恶化的情况,壁温在恢复到完全展开状态之前会经历几次振荡。为了研究这种复杂的传热行为的机理,利用FLUENT进行了数值模拟,并提出了合理的解释。

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