首页> 外文会议>ASME Pressure Vessels and Piping conference >EXPERIMENTALLY BENCHMARKED COMPUTATIONAL FLUID DYNAMICS SIMULATIONS OF A 7x7 ARRAY OF HEATED RODS WITHIN A SQUARE-CROSS-SECTION ENCLOSURE FILLED WITH RAREFIED HELIUM
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EXPERIMENTALLY BENCHMARKED COMPUTATIONAL FLUID DYNAMICS SIMULATIONS OF A 7x7 ARRAY OF HEATED RODS WITHIN A SQUARE-CROSS-SECTION ENCLOSURE FILLED WITH RAREFIED HELIUM

机译:稀有氦气填充方形截面的加热棒的7x7阵列的实验基准计算流体动力学模拟

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Computational fluid dynamics simulations of a 7x7 array of heated rods within a square-cross-section enclosure filled with rarefied helium are performed for heat generation rates of 50 W and 100 W and various helium pressures ranging from 105 to 50 Pa. The model represents a section of nuclear fuel assembly between two consecutive spacer plates inside a nuclear canister subjected to during vacuum drying process. A temperature jump model is applied at the solid-gas interface to incorporate the effects of gas rarefaction at low pressures. The temperature predictions from simulations are compared to measured temperatures. The results showed that when helium pressure decreased from 105 to 50 Pa, the maximum temperature of the heater rod array increased by about 14 °C. The temperatures of the hottest rod predicted by simulations are within 4°C of the measured values for all pressures. The random difference of simulated rod temperatures from the measured rod temperatures are 3.33 °C and 2.62 °C for 100 W and 50 W heat generation rate.
机译:在热量产生速率为50 W和100 W以及各种氦气压力为105至50 Pa的情况下,对填充有稀有氦气的方形横截面内的7x7加热棒阵列进行了计算流体力学模拟。在真空干燥过程中经受过的核罐内部两个连续的隔板之间的核燃料组件的横截面。在固体气体界面上应用了温度跃变模型,以合并低压下气体稀化的影响。将模拟中的温度预测值与测得的温度进行比较。结果表明,当氦气压力从105 Pa降低到50 Pa时,加热棒阵列的最高温度增加了约14°C。通过模拟预测的最热棒的温度在所有压力的测量值的4°C以内。对于100 W和50 W的发热速率,模拟的棒温度与测得的棒温度之间的随机差为3.33°C和2.62°C。

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