首页> 外文会议>International conference on nuclear engineering >A CFD-BASED OPTIMIZATION DESIGN OF FLOW DISTRIBUTION DEVICE IN THE LOWER PLENUM OF INTERMEDIATE HEAT EXCHANGER OF SFR
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A CFD-BASED OPTIMIZATION DESIGN OF FLOW DISTRIBUTION DEVICE IN THE LOWER PLENUM OF INTERMEDIATE HEAT EXCHANGER OF SFR

机译:基于CFD的SFR中级换热器下部通风流分配装置的优化设计

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A computational fluid dynamics based simulation is performed to optimize the design of the flow distribution device in the lower plenum of the intermediate heat exchanger (IHX) of a pool-type sodium-cooled fast reactor (SFR) in this work. As a typical shell and tube heat exchanger, hot primary sodium flows in the IHX from the top and flows over the tube bundles, called shell-side. The secondary sodium (tube-side) runs through heat transfer tubes and its inlet plenum is specified at the bottom The flow distribution device is arranged in the lower plenum of IHX, to change the flow distribution of the secondary sodiumbefore into the heat transfer tubes. The CFD tool used in the work is ANSYS Fluent code. Two separated flow distribution devices have been simulated and compared. First, the orifice plates, three flow distribution orifice plates with different positions in the cylinder of lower plenum are respectively set as the model 1, 2 and 3. Secondly, the conical disk model, which is arranged at the bottom of the lower plenum, is established as model 4. And changing the size of the conical disk, the model 5 is established to predict the influence of the size of the conical disk on flow distribution. The results show that all of these models have similar velocity distributions at the outlet of lower plenum, which can be divided into three separate regions, where the flow velocity is higher at the inner and outer, and the velocity in the middle is lowest. When the orifice plate is set at the higher position, the overall velocity distribution is more uniform at the outlet. And the larger conical disk could make a more uniform velocity distribution as well.
机译:在这项工作中,进行了基于计算流体动力学的模拟,以优化池型钠冷快堆(SFR)的中间热交换器(IHX)下部增压室内的流量分配装置的设计。作为典型的管壳式换热器,热的一级钠从顶部进入IHX,并流过管束(称为壳侧)。次级钠(管侧)穿过传热管,其入口气室在底部指定。流量分配装置布置在IHX的下部气室中,以改变次级钠进入传热管之前的流量分布。工作中使用的CFD工具是ANSYS Fluent代码。模拟并比较了两个分离的流量分配装置。首先,将孔板,在下增压室的气缸中位置不同的三个流量分配孔板分别设置为模型1、2和3。其次,将锥形盘模型布置在下增压室的底部,建立模型5。并且改变圆锥形盘的尺寸,建立模型5以预测圆锥形盘的尺寸对流量分布的影响。结果表明,所有这些模型在下气室出口处都具有相似的速度分布,可以分为三个独立的区域,内部和外部的流速较高,中间的流速最低。当孔板设置在较高位置时,总速度分布在出口处更加均匀。而且较大的锥形盘也可以使速度分布更均匀。

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