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Numerical Modeling and Simulation of a Volumetric Resistance Blower Using Porous Rotor

机译:多孔转子体积电阻鼓风机的数值建模与仿真

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This paper presents an experimentally validated modeling methodology for a new type of blower design known as volumetric resistance blower (VRB). It replaces the traditional centrifugal blower fan blades with a continuous porous medium disk and has been reported to be capable of providing a lower acoustic noise for the same output flow compared to a traditional blower. A three-dimensional transient numerical model of VRB is developed which incorporates the movement of a porous rotor using experimentally determined foam parameters to characterize the porous drag effect and a sliding mesh to simulate the rotation effect. The numerical results are validated with experimentally determined fan curve over broad range of operating conditions. The effect of the foam resistance parameters on the flow characteristics is investigated which serves the rationale for the optimization of these parameters. The model is used to study the sensitivity of the VRB performance to foam parameters using different types of commercially available open-cell reticulated foam.
机译:本文介绍了一种新型鼓风机设计的实验验证的建模方法,称为体积电阻鼓风机(VRB)。它取代了传统的离心式鼓风机风扇叶片,具有连续多孔介质盘,并且已经据报道,与传统的鼓风机相比,能够为相同的输出流提供较低的声学噪声。开发了VRB的三维瞬态数值模型,其包括使用实验确定的泡沫参数的多孔转子的运动,以表征多孔拖动效果和滑动网格以模拟旋转效果。使用实验确定的风扇曲线在广泛的操作条件下验证数值结果。研究了泡沫抗性参数对流动特性的影响,其用于优化这些参数的基本原理。该模型用于使用不同类型的市售开放式泡沫研究VRB性能对泡沫参数的敏感性。

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