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首页> 外文期刊>Energy Conversion & Management >A novel pressure regulation system based on Banki hydro turbine for energy recovery under in-range and out-range discharge conditions
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A novel pressure regulation system based on Banki hydro turbine for energy recovery under in-range and out-range discharge conditions

机译:基于BANTI水电涡轮机的新型压力调节系统,用于在范围内能量回收条件下的能量回收

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摘要

Efficiency improvement of water distribution networks needs to be in place to guarantee a long life period under suitable operating conditions. Excessive pressure is among the well-known issues encountered in water distribution networks which can cause strength damages to the piping system. In order to overcome this drawback and to reach a suitable water pressure delivery, the present work suggests a novel pressure regulation system. This regulation system is consisting of a Banki turbine equipped with a mobile flap as a control device. The suggested pressure regulation system was experimentally and numerically investigated under in-range i.e. like actual water distribution networks and out-range flow conditions. A set of computational fluid dynamic simulations was carried out to study the performance and flow characteristics around the turbine with and without a mobile flap. The flow solution was obtained by solving the Reynolds-averaged Navier-Stokes equations. Different rotor-stator interface and turbulence models, and mesh sizes were investigated to select the most accurate configuration of the numerical method. The validation of the numerical method was performed with an assessment of the standard error with respect to experimental data. Based on the experimental results, three correlations estimating the net head, the torque and the efficiency for given flap angle and volumetric flow rate were presented. Results revealed that the suggested regulation system presents a good efficiency up to 76% to recover the wasted hydrodynamics energy in water distribution networks.
机译:需要在适当的操作条件下保证水分配网络的效率提高以保证长寿命。过度的压力是水分配网络中遇到的众所周知的问题,这可能导致管道系统造成强度损坏。为了克服这种缺点并达到合适的水压递送,本作本作提出了一种新型压力调节系统。该调节系统由配备有移动皮瓣作为控制装置的Banki涡轮机。建议的压力调节系统在实验和数值上进行了在范围内的I.E.类似于实际的水分配网络和远程流动条件。进行了一组计算流体动态模拟,以研究涡轮机周围的性能和流动特性,没有移动襟翼。通过求解Reynolds平均的Navier-Stokes方程来获得流动溶液。研究了不同的转子定子界面和湍流模型,并研究了网状尺寸以选择数值方法的最准确配置。通过对实验数据的评估进行标准误差进行数值方法的验证。基于实验结果,提出了估计净头的三个相关性,扭矩和给定翼片角度和体积流速的效率。结果表明,建议的调节系统高达76%的效率,以回收水分配网络中浪费的流体动力学能量。

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