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An experimental analysis of subcooled leakage flow through slits from high pressure high temperature pipelines

机译:高压高温管道缝隙过冷泄漏流的实验分析

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The work presented here is an experimental investigation of the critical flashing flow of initially sub-cooled water through circumferential slits in pipes. The study provides first hand information about the prediction of leak flow rates in piping and pressure vessels retaining high temperature and high pressure. The dedicated experimental facility loop simulates the thermal hydraulic condition of Pressurized Heavy Water Reactors (PHWR). The critical flow characteristics found for varying leakage cross sections at different stagnation pressure and different degree of subcooling has been demonstrated in this paper. A marked decrease in mass flux has been found as subcooling decreases for a fixed stagnation pressure. More observation has revealed that the tighter slits or openings with very short duct as small as 0.8 cm flow length have different flow behavior than greater opening dimensions or with longer flow channels or that for nozzles. The critical flow has been seen to occur at higher pressure differentials along the flaws and prominent changes in the flow rate is reported to occur with varying dimensional parameters of the slit or cracks.
机译:此处介绍的工作是对初始过冷水通过管道圆周缝隙的临界闪蒸流量的实验研究。该研究提供了有关保留高温和高压的管道和压力容器中泄漏流量预测的第一手信息。专用的实验设施回路可模拟加压重水反应堆(PHWR)的热工况。本文证明了在不同的停滞压力和不同的过冷度下,变化的泄漏截面的临界流动特性。对于固定的滞止压力,随着过冷度的降低,质量通量显着下降。更多的观察表明,具有非常短的导管(流动长度小至0.8厘米)的狭缝或开口与较大的开口尺寸或较长的流动通道或喷嘴相比,具有不同的流动特性。已发现临界流沿着裂纹沿着更高的压差发生,并且据报道,随着缝隙或裂缝尺寸参数的变化,流量发生了显着变化。

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