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Solar photovoltaics pumps operating head selection for the optimum efficiency

机译:太阳能光伏泵操作头的选择,以实现最佳效率

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Solar Photovoltaic Water Pumping (SPVWP) systems have established their potential as the most dependable and economically viable systems compared to the diesel based or grid-based electrical pumps. This paper presents an in-depth investigation of the energy efficiency of SPVWP system based on solar radiation, temperature, and operational heads. The study also identifies the shortcomings in the conventional design method based on Best Efficiency Point (BEP) concept that is applicable only in case of fixed frequency and voltage type pumps. However, in the case of SPVWP systems, due to variations in the solar intensity, ambient temperature, and water head, BEP concept does not offer the best efficiency design. The study experimentally proves that the model based on weighted system efficiency and Solar Operational Duty Head (SODH) increases the performance of SPVWP system (similar to 9% gain) and is consistently provide higher efficiencies in any season or under any climatic conditions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:与基于柴油或基于电网的电泵相比,太阳能光伏水泵(SPVWP)系统已确立了其潜力,成为最可靠且经济可行的系统。本文基于太阳辐射,温度和运行头对SPVWP系统的能效进行了深入研究。该研究还确定了基于最佳效率点(BEP)概念的常规设计方法中的缺点,该方法仅适用于固定频率和电压型泵。但是,对于SPVWP系统,由于太阳强度,环境温度和水头的变化,BEP概念无法提供最佳效率设计。该研究实验证明,基于加权系统效率和SODH的模型可提高SPVWP系统的性能(类似于9%的增益),并且在任何季节或任何气候条件下均能始终提供更高的效率。 (C)2018 Elsevier Ltd.保留所有权利。

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