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OPTIMAL CONFIGURATION OF VALVES AND PLUMBING LINES IN COMPLEX HOUSING

机译:复合壳体阀门和管道线的最佳配置

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In engineering design, the volume and weight of a number of systems consisting of valves and plumbing lines often need to be minimized. In current practice, this is facilitated under empirical experience with trial and error, which is time-consuming and may not yield the optimal result. This problem is intrinsically difficult due to the challenge in the formulation of optimization problem that has to be computationally tractable. In this research, we choose a sequential approach towards the design optimization, i.e., first optimizing the placement of valves under pre-scribed constraints to minimize the volume occupied, and then identifying the shortest paths of plumbing lines to connect the valves. In the first part, the constraints are described by analytical expressions, and two approaches of valve placement optimization are reported, i.e., a two-phase method and a simulated annealing-based method. In the second part, a three-dimensional routing algorithm is explored to connect the valves. Our case study indicates that the design can indeed be automated and design optimization can be achieved under reasonable computational cost. The outcome of this research can benefit both existing manufacturing practice and future additive manufacturing.
机译:在工程设计中,通常需要最小化由阀门和管道线组成的许多系统的体积和重量。在目前的实践中,这是在试验和误差的经验经验下促进,这是耗时的,可能不会产生最佳结果。由于在必须计算出来的优化问题的挑战,这个问题是本质上的困难。在这项研究中,我们选择了一种朝向设计优化的顺序方法,即,首先在预先划线的约束下优化阀门的放置,以最小化占用的容积,然后识别连接阀的管道线的最短路径。在第一部分中,约束由分析表达描述,报告了两种阀门放置优化方法,即两相方法和基于模拟的退火方法。在第二部分中,探索了三维路由算法以连接阀门。我们的案例研究表明,设计确实可以自动化,并且可以在合理的计算成本下实现设计优化。该研究的结果可以使现有的制造实践和未来的添加剂制造有益。

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