论文标题

刀片信封第二部分:多个目标和逆设计

Blade Envelopes Part II: Multiple Objectives and Inverse Design

论文作者

Wong, Chun Yui, Seshadri, Pranay, Scillitoe, Ashley, Ubald, Bryn Noel, Duncan, Andrew B., Parks, Geoffrey

论文摘要

基于空气动力学分析,叶片信封为制造组件提供了一组数据驱动的公差指南。在这本两部分论文的第一部分中,描述和证明了刀片信封制成的工作流程。在第二部分中,该工作流程扩展以适应多个目标。这使工程师可以规定考虑多个绩效标准的制造准则。制成的刀片的质量可以与从表面上原始流量的分布得出的特征相关。我们表明,可以使用来自离散表面流量测量的矢量值模型在刀片包膜中考虑这些分布。我们的方法导致一组变量,可以灵活和独立地控制多个流动特性和性能指标,在精神上与逆设计方法相似。 LS89涡轮刀片上展示了本文中介绍的刀片包络工作流的增强,重点是控制损失,质量流量和等质马赫数分布。最后,我们演示了如何使用3D建模软件来生成3D渲染的信封,如何使用叶片信封来可视化不变设计。

Blade envelopes offer a set of data-driven tolerance guidelines for manufactured components based on aerodynamic analysis. In Part I of this two-part paper, a workflow for the formulation of blade envelopes is described and demonstrated. In Part II, this workflow is extended to accommodate multiple objectives. This allows engineers to prescribe manufacturing guidelines that take into account multiple performance criteria. The quality of a manufactured blade can be correlated with features derived from the distribution of primal flow quantities over the surface. We show that these distributions can be accounted for in the blade envelope using vector-valued models derived from discrete surface flow measurements. Our methods result in a set of variables that allows flexible and independent control over multiple flow characteristics and performance metrics, similar in spirit to inverse design methods. The augmentations to the blade envelope workflow presented in this paper are demonstrated on the LS89 turbine blade, focusing on the control of loss, mass flow and the isentropic Mach number distribution. Finally, we demonstrate how blade envelopes can be used to visualize invariant designs by producing a 3D render of the envelope using 3D modelling software.

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