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An inverse method of designing the cooling passages of turbine blades based on the heat adjoint equation

机译:基于热伴随方程设计涡轮叶片冷却通道的逆方法

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摘要

A method of solution of the inverse problem in heat conduction is presented. The method, based on an adjoint optimization procedure, is applied to the design of the pattern of cooling passages inside turbine blades. For blade-coating technologies, the general case of a non-homogeneous solid material is considered. The numerical solution of both the temperature field and of the adjoint problem is based on a finite element method. The new formulation of the adjoint thermal problem is deduced for three different parametric representations of the internal cooling passages. This allows the designer to select the most adequate blade parametrization, going from blades with circular coolant passages to modern multi-holed hollow blades. The mathematical method, the adjoint problem solution and the enforcement of geometric constraints are explained and the procedure is validated against theoretical, experimental data and numerical solution available in the open literature.
机译:提出了一种解决导热反问题的方法。基于伴随优化程序的该方法被应用于涡轮叶片内部的冷却通道的模式的设计。对于刮涂技术,通常考虑不均匀固体材料的情况。温度场和伴随问题的数值解都是基于有限元方法的。针对内部冷却通道的三种不同参数表示推导了伴随热问题的新公式。这使设计人员可以选择最合适的叶片参数,从具有圆形冷却剂通道的叶片到现代的多孔空心叶片。解释了数学方法,伴随问题解和几何约束的执行,并针对公开文献中提供的理论,实验数据和数值解验证了该过程。

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