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The effect of turbulence on the efficiency of the rotational phase separator

机译:湍流对旋转相分离器效率的影响

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The rotational phase separator (RPS) is a device to separate liquid or solid particles from a lighter or heavier fluid by centrifugation in a bundle of channels which rotate around a common axis. Originally, the RPS was designed in such a way that the flow through the channels is laminar in order to avoid eddies in which the particles keep circulating and do not reach the walls. However, in some applications the required volume flow of fluid is so large, that turbulent flow can no longer be avoided. Direct numerical simulation of the flow in a single rotating pipe and particle tracking in this flow are applied to study the influence of turbulence on the collection efficiency of the RPS. The results show that the collection efficiency for larger particles decreases by up to 25% due to the turbulence, whereas the collection efficiency for smaller particles is unaffected. The adverse effect of the resulting swirling flow is partly counteracted by turbulent dispersion. For high rotational speeds the efficiency decreases further as the particles are trapped in a counter-rotating vortex.
机译:旋转相分离器(RPS)是一种通过在围绕共同轴旋转的通道束中离心分离从较轻或更重的流体中分离出液体或固体颗粒的装置。最初,RPS的设计方式是使流经通道的气流呈层流状,以避免产生涡流,在这种涡流中,颗粒保持循环而不到达壁。但是,在某些应用中,所需的流体体积流量非常大,以致无法避免产生湍流。对单个旋转管中的流动进行直接数值模拟,并对该流动中的颗粒进行跟踪,以研究湍流对RPS收集效率的影响。结果表明,由于湍流,较大颗粒的收集效率最多降低25%,而较小颗粒的收集效率不受影响。所产生的旋流的不利影响被湍流分散部分抵消。对于高转速,当颗粒被捕获在反向旋转的涡流中时,效率进一步降低。

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