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Shape optimization of flow channels based on lattice Boltzmann method

机译:基于格子Boltzmann方法的流动通道形状优化

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摘要

A new optimality criterion algorithm is presented for producing modified shape designs for fluid flow inside channels. To compute the fluid motion in a channel, the lattice Boltzmann method (LBM) was used based on D2Q9 and D3Q15 lattice spaces associated with the Bhatnagar-Gross-Krook (BGK) collision term. An experiential optimality method to design channels with the lowest pressure drop along the passage is introduced. The positions of solid cells and fluid cells are exchanged based on the strain rate tensor at the solid-fluid interface. To obtain the optimized shape, the cells are changed until the optimality condition is obtained with the restriction of constant fluid volume. Examples are presented to validate the algorithm, including an elbow tube as well as symmetrical and nonsymmetrical Tjunction channels. The validation exercises demonstrate that the algorithm is suitable for optimal channel design.
机译:提出了一种新的最优标准算法,用于产生用于内部通道的流体流动的改进形状设计。 为了计算通道中的流体运动,基于与BhatNagar-Gross-Krook(BGK)碰撞术语相关的D2Q9和D3Q15晶格空间使用格子Boltzmann方法(LBM)。 介绍了沿着通道的最低压降的设计通道的体验最优性方法。 基于固体流体界面处的应变速率张量来交换固体细胞和流体电池的位置。 为了获得优化的形状,改变细胞直到利用恒定流体体积的限制获得最佳状态。 提出了示例以验证算法,包括肘管以及对称和非对称的T结闸。 验证练习表明该算法适用于最佳通道设计。

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