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Body-force modeling for aerodynamic analysis of airudintake – fan interactions

机译:用于空气动力学分析的车身力模型 ud进气–风扇相互作用

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摘要

Purpose – The purpose of this paper is to explore a methodology that allows to represent turbomachinery rotating parts by replacing the blades with a body force field. The objective is to capture interactions between a fan and an air intake at reduced cost, as compared to full annulus unsteady computations. Design/methodology/approach – The blade effects on the flow are taken into account by adding source terms to the Navier-Stokes equations. These source terms give the proper amount of flow turning, entropy, and blockage to the flow. Two different approaches are compared: the source terms can be computed using an analytic model, or they can directly be extracted from RANS computations with the blade’s geometry. Findings – The methodology is first applied to an isolated rotor test case, which allows to show that blockage effects have a strong impact on the performance of the rotor. It is also found that the analytic body force model underestimates the mass flow in the blade row for choked conditions. Finally, the body force approach is used to capture the coupling between a fan and an air intake at high angle of attacks. A comparison with full annulus unsteady computations shows that the model adequately captures the potential effects of the fan on the air intake. Originality/value – To the authors’ knowledge, it is the first time that the analytic model used in this paper is combined with the blockage source terms. Furthermore, the capability of the model to deal with flows in choked conditions was never assessed.
机译:目的–本文的目的是探索一种方法,该方法可以通过用叶片力场代替叶片来表示涡轮机械旋转零件。与完整的环形非定常计算相比,其目的是以降低的成本捕获风扇和进气口之间的相互作用。设计/方法/方法–通过将源项添加到Navier-Stokes方程中来考虑叶片对流的影响。这些源项为流提供了适当数量的流转向,熵和阻塞。比较了两种不同的方法:可以使用分析模型来计算源项,或者可以使用叶片的几何形状直接从RANS计算中提取源项。调查结果–该方法首先应用于隔离的转子测试案例,这表明阻塞效应对转子的性能有很大影响。还发现,对于阻塞情况,分析体力模型低估了叶片排中的质量流量。最后,体力方法用于捕获高攻角下风扇和进气口之间的耦合。与全环形非定常计算的比较表明,该模型充分捕获了风扇对进气口的潜在影响。原创性/价值–据作者所知,这是本文首次将分析模型与阻塞源术语结合使用。此外,从未评估过模型在阻塞条件下处理流量的能力。

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