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A topology optimization approach applied to laminar flow machine rotor design

机译:一种应用于层流机转子设计的拓扑优化方法

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The design of flow machines is still a difficult task, mainly due to the large number of free geometrical parameters involved. Thus, design optimization techniques can be applied to obtain optimized designs of these machines. This work deals with optimization of radial flow machine rotors (pumps and turbine), where a novel methodology for the propeller design is proposed based on the topology optimization method which distributes fluid or solid in a design domain to extremize a defined objective function subjected to some constraints. The design objective is to optimize the shape of the channel between two blades of the rotor to minimize the energy dissipation and vorticity, and minimize or maximize the power in the case of a pump or turbine, respectively. These objective functions are combined in a multi-objective function. A two-dimensional finite element is derived in a rotating frame for modelling the rotor flow behaviour. The modelling predicts the flow field between relative two blades of a rotor without considering the influence of the volute. It is assumed that the fluid is flowing in an idealized porous medium subjected to a friction force, which is proportional to the fluid velocity and the inverse local permeability. A porous flow model is introduced with a continuous (grey) permeability design variable for each element that defines the local permeability of the medium and allows the transition between fluid and solid property. The design optimization problem is solved by using the method of moving asymptotes (MMA). Numerical examples are presented to illustrate this methodology.
机译:流动机械的设计仍然是一项艰巨的任务,这主要是由于涉及大量自由几何参数。因此,可以将设计优化技术应用于获得这些机器的优化设计。这项工作涉及径向流机转子(泵和涡轮机)的优化,其中基于拓扑优化方法提出了一种用于螺旋桨设计的新方法,该方法将流体或固体分布在设计域中,以对定义的目标函数进行极端化处理。约束。设计目标是优化转子两个叶片之间的通道形状,以最大程度地减少能量耗散和涡旋,并分别在泵或涡轮机的情况下最小化或最大化功率。这些目标函数组合成一个多目标函数。在旋转框架中导出了二维有限元,用于对转子的流动行为进行建模。该模型预测了转子的相对两个叶片之间的流场,而没有考虑蜗壳的影响。假定流体在理想化的多孔介质中流动,该介质受到摩擦力,该摩擦力与流体速度和局部渗透率成反比。引入了具有每个元素连续(灰色)渗透率设计变量的多孔流模型,该变量定义了介质的局部渗透率并允许流体和固体性质之间的转换。通过使用移动渐近线(MMA)的方法解决了设计优化问题。数值例子说明了该方法。

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