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Design and Modeling of a Prototype Floating Membrane Reservoir System Application for Pumped Storage Hydropower

机译:抽水蓄能水电站样机浮膜水库系统的设计与建模

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Design and modeling were performed for a prototype floating membrane reservoir system for closed-loop pumped storage hydropower (PSH) application. Typically, new construction of PSH requires high up-front development costs and long investment return periods. The proposed floating membrane reservoir system innovative technology would eliminate the need for highly disruptive and costly reservoir construction. Such modular systems may ultimately provide reliable, flexible power generation and can be replicated multiple times to increase energy storage capacity. This paper documents the modeling response analysis completed to refine and validate the design prior to the testing of the prototype. Computational fluid dynamics modeling efforts were completed to assess hydrostatic and hydrodynamic forces acting on the reservoir for several deployment and alignment arrangements. The system stability was evaluated using material stress and frequency response analysis. The conclusions, based on hydrodynamic and structural response modeling, support a decision to move forward with construction, deployment, and testing of the innovative prototype floating reservoir system.
机译:针对用于闭环抽水蓄能水电(PSH)应用的原型浮膜水库系统进行了设计和建模。通常,PSH的新建需要高额的前期开发成本和较长的投资回报期。提出的浮膜储层系统创新技术将消除对破坏性高且成本高的储层建设的需求。这样的模块化系统最终可以提供可靠,灵活的发电,并且可以多次复制以增加能量存储容量。本文记录了在模型测试之前完成的建模响应分析,以完善和验证设计。完成了计算流体动力学建模工作,以评估作用于储层的静水压力和流体动力,以进行多种部署和对准布置。使用材料应力和频率响应分析评估系统稳定性。基于流体动力和结构响应建模的结论支持一项决定,该计划将继续进行创新型原型浮储系统的建设,部署和测试。

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