首页> 外文会议>International conference on nuclear engineering >EVALUATION OF JET IMPACT REGION AND FLUID FORCE GENERATED FROM RUPTURED PIPES (1) NUMERICAL AND EXPERIMENTAL EVALUATION OF AFFECTED REGION BY STEAM JET
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EVALUATION OF JET IMPACT REGION AND FLUID FORCE GENERATED FROM RUPTURED PIPES (1) NUMERICAL AND EXPERIMENTAL EVALUATION OF AFFECTED REGION BY STEAM JET

机译:蒸汽射流评价从破裂管(1)受影响区域的射流(1)射流(1)数值和实验评估的射流冲击区域和流体力

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Nuclear power plants are designed to prevent the damage of safety installations and human safety due to the jet impingement when a pipe is ruptured. We have investigated evaluation methods for the design basis of protection of plants against effects of postulated pipe rupture using computational fluid dynamics analysis (CFD). The steam jet tests using particle image velocimetry were conducted in order to verify the CFD methods. Spread of steam jet could be visualized. Shapes of steam jet obtained by CFD were almost the same as those by tests. The spread angle of free jet were investigated using CFD, and we have found that the spread angle strongly depends on the inlet pressure. This is thought as the different tendency from Established Standards.
机译:核电站旨在防止由于管道破裂时由于喷射冲击而损坏安全装置和人类安全。我们研究了使用计算流体动力学分析(CFD)对植物保护的设计基础的评估方法。进行使用粒子图像速度法的蒸汽喷射试验以验证CFD方法。可以可视化蒸汽喷射的传播。 CFD获得的蒸汽射流的形状几乎与试验的蒸汽射流相同。使用CFD研究了游离射流的扩散角,我们发现扩展角强烈取决于入口压力。这被认为是既定标准的不同趋势。

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