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A novel design method based on flow pattern construction for flow passage with low flow drag and pressure drop

机译:基于流型构造的低阻力小压降流道设计新方法

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摘要

A novel design method for flow passage with low flow drag and pressure drop was developed based on flow pattern construction. The specific flow pattern with minimum viscous dissipation rate represents low pressure drop in the flow passage. Thus, the fluid flow requires to be optimized as a variational problem subject to the minimum viscous dissipation rate principle, which is also considered as flow pattern construction. By using calculus of variations, the governing equations for the construction of the specific flow pattern were derived from the functional extremum problem represented by the Lagrange multiplier equation. After that, a computational fluid dynamics model was set up and applied in the solution procedure of the governing equations to generate the geometry of the flow passages based on the flow pattern construction. As the illustrative examples to validate the proposed design method, the geometries of flow passages were optimized in terms of pressure drop in a wide range of Re numbers. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于流型构造,提出了一种新型的低阻力和低压降的流道设计方法。具有最小粘性耗散率的特定流型表示流道中的低压降。因此,需要根据最小粘滞耗散率原理将流体流量优化为一个变化问题,这也被视为流型构造。通过使用变化演算,从拉格朗日乘数方程表示的函数极值问题导出了用于构造特定流型的控制方程。此后,建立计算流体动力学模型并将其应用于控制方程的求解过程中,以基于流型构造生成流道的几何形状。作为验证所提出的设计方法的说明性示例,在大范围的Re数方面,根据压降对流道的几何形状进行了优化。 (C)2015 Elsevier Ltd.保留所有权利。

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