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Optimization of a Fluid Distribution Manifold: Mechanical Design, Numerical Studies, Fabrication, and Experimental Verification

机译:流体分配歧管的优化:机械设计,数值研究,制造和实验验证

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This paper presents two optimized designs of a commonly-used fluid distribution manifold having one entrance and six exits. Numerical simulations were carried out to optimize the dimensions and mechanisms of these proposed designs for the sake of enhancing the uniformity of fluid distribution amongst the exits and reducing the formation of dead zones inside the manifold cavities. Particularly, to make the fluid distribution amongst exits more uniform, this study explored the relationship between entrance diameter and exit diameter. Furthermore, in order to reduce dead zone formations inside the manifold whilst still maintaining uniform fluid distribution, a conical cavity was designed. After that, blockers were designed to replace some exits, permitting a variable number of fluid distribution manifold exits, depending on the specific application. Both designs were found to be able to improve flow uniformity and dead zone reduction compared to the original commonly-used fluid distribution manifold, with the central-feeding distributor performing slightly better than the lateral-feeding distributor overall. From the perspective of manufacturing, each of these two fluid manifolds was made of two pieces with glue and rubber O ring used respectively as the bond between separate pieces. Preliminary experiments with these devices suggest similar results to those from the numerical studies. Based on real application requirements and limitations, the different fluid manifold designs with tunable dimensions can be utilized in various mechanical or biochemical devices to distribute fluid equally amongst several parallel components.
机译:本文介绍了一种具有一个入口和六个出口的常用流体分配歧管的两种优化设计。为了增强出口之间流体分布的均匀性并减少歧管腔内死区的形成,进行了数值模拟以优化这些建议设计的尺寸和机理。特别地,为了使出口之间的流体分布更均匀,本研究探讨了入口直径和出口直径之间的关系。此外,为了减少歧管内的死区形成同时仍保持均匀的流体分布,设计了锥形腔。此后,根据具体应用,设计了阻塞器来替换某些出口,从而允许使用可变数量的流体分配歧管出口。与原始的常用流体分配歧管相比,发现这两种设计均能够提高流量均匀性并减少死区,而中央进料分配器的整体性能略好于横向进料的分配器。从制造的角度来看,这两个流体歧管中的每一个均由两块组成,分别用胶和橡胶O形圈作为分开的两块之间的结合。这些设备的初步实验表明与数值研究的结果相似。根据实际应用的要求和限制,具有可调尺寸的不同流体歧管设计可用于各种机械或生化设备中,以在多个并行组件之间平均分配流体。

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