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Shape optimization of a showerhead system for the control of growth uniformity in a MOCVD reactor using CFD-based evolutionary algorithms

机译:使用基于CFD的进化算法控制MOCVD反应器中生长均匀性的喷头系统的形状优化

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摘要

A steady state, laminar flow coupled with heat transfer, gas-phase and surface chemistry, is numerically solved for the optimal design of a showerhead gas delivery system in an axis-symmetrical MOCVD reactor. The design method involves an evolutionary algorithm based on CFD simulations. A finite-volume CFD code for aluminum growth provides the numerical predictions of the growth rate and its spatial variation over the substrate. A multilevel evolutionary algorithm is used to continuously adjust the shape of the shower plate so as to minimize the spatial variation of the growth rate. A 5-variable parameterization of the shower plate is investigated and a near-optimal solution is proposed and compared to the original configuration of the shower plate.
机译:通过数值求解稳态,层流以及热传递,气相和表面化学,以优化轴对称MOCVD反应器中喷头气体输送系统的设计。设计方法包括基于CFD仿真的进化算法。用于铝生长的有限体积CFD代码可提供在基板上生长速率及其空间变化的数值预测。多级进化算法用于连续调节喷淋板的形状,以最小化增长率的空间变化。研究了淋浴板的5变量参数设置,并提出了接近最佳的解决方案,并将其与淋浴板的原始配置进行了比较。

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