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Hill chart modelling using the Hermite polynomial chaos expansion for the performance prediction of pumps running as turbines

机译:使用Hermite多项式混沌扩展进行山图建模,以预测作为涡轮机运行的泵的性能

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摘要

Pumps running as turbines are suitable hydraulic machines for micro hydropower applications. The selection of the proper pumps to install in a given site still remains a major challenge, as pump manufacturers do not provide the characteristic curves data in the turbine mode. Also, the accurate prediction and modelling of the pumps running as turbines characteristic curves still remain a major difficulty as existing methodologies still lack accuracy, especially in the part load and full load operating regions. This paper proposes a new two-step methodology based on the Hermite polynomial chaos expansion for predicting the characteristic curves of pumps running as turbines and modelling their variable speed operation, aiming at improving the prediction accuracy. Firstly, bivariate continuous surrogate functions are established for predicting the turbine mode and the extended operation mode characteristic curves inside a closed interval of unit specific speed values. These surrogate functions are developed by calibrating empirical coefficients based on collected experimental data. Secondly, a hill chart model is determined for describing the variable speed operation of a given pump running as a turbine. This hill chart model allows identifying the discharge and the rotational speed set points for maximising efficiency for a given operating condition. The proposed prediction surrogate functions and the variable speed hill chart model are useful engineering tools for improving the design of pump as turbine hydropower plants and for optimising the pump running as turbine control settings to maximise the produced energy.
机译:作为涡轮机运行的泵是适用于微型水电应用的液压机。选择合适的泵安装在给定的位置仍然是一个重大挑战,因为泵制造商没有提供涡轮模式下的特性曲线数据。而且,由于现有方法仍缺乏准确性,尤其是在部分负荷和满负荷运行区域,对作为涡轮机特性曲线运行的泵进行准确的预测和建模仍然是主要困难。本文提出了一种基于Hermite多项式混沌展开的新的两步法,用于预测作为涡轮机运行的泵的特性曲线并对其变速操作进行建模,以提高预测精度。首先,建立双变量连续替代函数,以预测单位特定速度值的封闭间隔内的涡轮机模式和扩展的运行模式特性曲线。通过基于收集的实验数据校准经验系数来开发这些替代功能。其次,确定用于描述作为涡轮机运行的给定泵的变速操作的希尔图模型。该希尔图模型允许识别排放和转速设定点,以在给定的工作条件下最大化效率。所提出的预测代理功能和变速坡度图表模型是有用的工程工具,可用于改进作为涡轮机水力发电厂的泵的设计,以及优化作为涡轮机控制设置的泵的运行以最大程度地提高发电量。

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