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Optimal Design Methodology for On-shore Hydraulic Pipelines Transporting Spherical Capsules

机译:陆上液压管道输送球形胶囊的优化设计方法

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The third generation of pipelines comprises of the transportation of capsules that are hollow, water-borne containers, usually spherical or cylindrical in shape, filled with goods. These capsules are transported within pipelines along with the fluid, which is commonly water. Much of the research that has been carried out on HCPs deals with general designing of such pipelines for particular applications. The available literature dealing with the optimal designing of HCPs is based on assumptions and simplifications, such as neglecting minor losses within HCPs. Based on Least-Cost Principle, an optimisation methodology has been developed in the present study for single stage on-shore HCPs, transporting spherical capsules, that takes into account the minor losses encountered by water. The optimal design methodology is based on an iterative process in which the solid throughput required from the system is the input whereas the optimal diameter of the pipeline for that particular solid throughput is the output. Hence a design chart can be developed for optimal sizing of HCPs. The optimisation model presented in the present study is both robust and user-friendly.
机译:第三代管道包括胶囊的运输,这些胶囊是装满货物的中空的水基容器,通常是球形或圆柱形。这些胶囊与通常为水的流体一起在管道内运输。对HCP进行的许多研究都涉及针对特定应用的此类管道的一般设计。有关HCP最佳设计的现有文献是基于假设和简化的,例如忽略了HCP内的微小损失。基于最低成本原则,本研究针对单阶段陆上HCP(运输球形胶囊)开发了一种优化方法,该方法考虑了水遇到的微小损失。最佳设计方法基于迭代过程,其中系统所需的固体产量是输入,而针对特定固体产量的管道的最佳直径是输出。因此,可以制定设计图以优化HCP的尺寸。本研究中提出的优化模型既健壮又用户友好。

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