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MODELING AND SIMULATIONS OF DETERIORATED TURBULENT HEAT TRANSFER IN WALL HEATED CYLINDRICAL TUBE

机译:壁加热圆柱管中湍流换热的建模与模拟

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The paper discusses the modeling and simulations of Deteriorated Turbulent Heat Transfer (DTHT)for a wall-heated fluid flows, which can be observed in gas-cooled nuclear power reactors during Pressurized Conduction Cooldown (PCC) event due to loss of force circulation flow. The DTHT regime is defined as the deterioration of normal turbulent heat transport due to increase of acceleration and buoyancy forces. The Computational Fluid Dynamics (CFD) tools such as Nek5000 and STAR-CCM+ can help to analyze the DTHT phenomena in reactors for efficient thermal-fluid designs. 3D CFD non-isothermal modeling and simulations were performed in a wall-heated circular tube. The simulation results were verified with two different CFD tools, Nek5000 and STAR-CCM+, and validated with an experimental data. The predicted bulk temperatures were identical in both CFD tools, as expected. Good agreement between simulated results and measured data were obtained for wall temperatures along the tube axis using Nek5000. In STAR-CCM+, the under-predicted wall temperatures were mainly due to higher turbulence in the wall region. In STAR-CCM+, the predicted DTHT was over 48% at outlet when compared to inlet heat transfer values.
机译:本文讨论了壁加热流体流动的劣化湍流传热(DTHT)的建模和模拟,其在加压导通冷却(PCC)事件中可以在气冷核电电抗器中观察到由于力循环流失的丧失。 DTHT制度被定义为由于加速度和浮力的增加而导致正常湍流热量的恶化。诸如NEK5000和STAR-CCM +之类的计算流体动力学(CFD)工具可以帮助分析反应器中的DTHT现象以获得有效的热流体设计。 3D CFD非等温建模和仿真在壁式加热的圆形管中进行。仿真结果用两种不同的CFD工具,NEK5000和Star-CCM +验证,并用实验数据验证。如预期的那样,预测的大容量温度在两个CFD工具中相同。使用NEK5000沿管轴沿管轴获得模拟结果和测量数据之间的良好一致性。在星形CCM +中,预测的壁温度主要是由于墙壁区域较高的湍流。与入口传热值相比,在星形CCM +中,预测的DTHT在出口时超过48%。

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