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Pressure drop in large volumetric heat storage tank radial plate diffuser

机译:大容量蓄热罐径向板扩散器的压降

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In this paper a number of numerical simulations were performed to determine the geometry and the process parameters influence on the large volumetric heat storage tank radial plate diffuser pressure drop. The tank is used in district heating systems. To reduce the possibility of a pressure drop in the diffuser below the water saturation pressure, three basic diffuser types were tested sharpe edge joint (SEJ), conical element (COE) and curved element (CUE). The analysis shows the differences and similarities between the diffuser types and their influence on the static and total diffuser pressure drop. The geometric similarity of the hermetic compressor radial valve with heat storage tank radial plate diffuser was used to validate the numerical model. The numerical calculation results were compared with the experimental measurements of the air pressure drop on the radial valves front plate taken from the literature. Good correlation between the calculation results and experimental measurements has been achieved. Along with mentioned, the diffuser model similarity effect is also presented and analyzed. The obtained results showed that, the static pressure drop remains the same for different diffuser sizes, when the geometric similarity of the diffuser is preserved.
机译:在本文中,进行了许多数值模拟以确定几何形状和过程参数对大容量蓄热罐径向板扩散压降的影响。罐用于区供暖系统。为了减少低于水饱和压力的扩散器中的压降的可能性,测试了三种基本的扩散器类型,夏普边缘接头(SEJ),锥形元件(COE)和弯曲元件(提示)。分析显示了扩散器类型与其对静态和总扩散器压降的影响的差异和相似性。使用储热罐径向板扩散器的密封压缩机径向阀的几何相似性用于验证数值模型。将数值计算结果与从文献中取出的径向阀前板上的空气压降的实验测量进行了比较。已经实现了计算结果与实验测量之间的良好相关性。随着提到的,还呈现并分析了扩散器模型相似性效果。得到的结果表明,当漫射器的几何相似性被保留时,静压降保持相同的不同扩散尺寸。

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