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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Design of pressure vessels using shape optimization: An integrated approach
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Design of pressure vessels using shape optimization: An integrated approach

机译:使用形状优化设计压力容器:集成方法

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摘要

Previous papers related to the optimization of pressure vessels have considered the optimization of the nozzle independently from the dished end. This approach generates problems such as thickness variation from nozzle to dished end (coupling cylindrical region) and, as a consequence, it reduces the optimality of the final result which may also be influenced by the boundary conditions. Thus, this work discusses shape optimization of axisymmetric pressure vessels considering an integrated approach in which the entire pressure vessel model is used in conjunction with a multi-objective function that aims to minimize the von-Mises mechanical stress from nozzle to head. Representative examples are examined and solutions obtained for the entire vessel considering temperature and pressure loading. It is noteworthy that different shapes from the usual ones are obtained. Even though such different shapes may not be profitable considering present manufacturing processes, they may be competitive for future manufacturing technologies, and contribute to a better understanding of the actual influence of shape in the behavior of pressure vessels.
机译:先前有关压力容器优化的论文已经考虑到喷嘴的优化独立于碟形末端。这种方法会产生诸如从喷嘴到凹陷端(耦合圆柱区域)的厚度变化之类的问题,结果,它降低了最终结果的最优性,而最优性也可能受到边界条件的影响。因此,这项工作讨论了一种轴对称压力容器的形状优化,其中考虑了一种集成方法,其中将整个压力容器模型与一个多目标函数结合使用,该函数旨在最小化从喷嘴到喷头的von-Mises机械应力。考虑到温度和压力负载,检查了代表性示例并获得了整个容器的解决方案。值得注意的是,获得了不同于通常形状的形状。即使考虑到当前的制造工艺,这种不同的形状可能并不有利可图,但它们可能对未来的制造技术具有竞争力,并有助于更好地理解形状对压力容器性能的实际影响。

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