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Comparative Study by Simulation of Photovoltaic Pumping Systems with Stationary and Polar Tracking Arrays

机译:具有静态和极地跟踪阵列的光伏抽水系统的仿真比较研究

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摘要

Using mathematical models for the different components of the photovoltaic pumping system: generator inverter (if applicable), motors, pumps and piping, we have developed a computer program that, for given irradiance and temperature data, calculates the flow of water pumped at any given time. The program has been applied to study the hourly and yearly water flow pumped by a photovoltaic pumping system located in Madrid, employing centrifugal pumps powered by AC motors. The photovoltaic generator consists of in one case, a stationary array and in the second case a polar tracking array. The hourly radiation data were estimated from the distribution of the atmospheric clearness coefficients and the monthly average daily radiation on a horizontal surface. The results of this study show that the use of a polar tracking array increases the average yearly water flow compared with the stationary array more than the corresponding increase of the incident radiation on the arrays.
机译:使用针对光伏抽水系统不同组件的数学模型:发电机逆变器(如果适用),电动机,泵和管道,我们开发了计算机程序,对于给定的辐照度和温度数据,可以计算在任何给定的情况下抽水的流量时间。该程序已用于研究马德里的光伏抽水系统使用交流电机驱动的离心泵每小时和每年的水流量。光伏发电机在一种情况下包括固定阵列,在第二种情况下包括极坐标跟踪阵列。从大气清洁度系数的分布和在水平面上的月平均日辐射量估算每小时辐射数据。这项研究的结果表明,与固定阵列相比,极地跟踪阵列的使用增加了年平均水流量,而不是阵列上入射辐射的相应增加。

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