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Provedor de dados:  CIGR Journal
País:  China
Título:  Modeling Hydraulic Performance of a Drip Irrigation Network Directly Coupled to a Photovoltaic Pumping System
Autores:  El Aissaoui, Abdellah
Hajar, El Khalfi
Data:  2021-06-26
Ano:  2021
Palavras-chave:  Drip irrigation
Standalone
Photovoltaic pumping system
Performances
Hydraulic
Emission uniformity
Resumo:  Drip irrigation network coupled to photovoltaic pumping system presents an alternative solution that can efficiently improves use of water and energy by small and medium irrigated farming systems compared to conventional energy use for water pumping. Standalone photovoltaic water pumping systems (PVWPS) coupled to drip irrigation network constitute the best technico-economical solution compared to PVWPS using electrical or water storage demanding additional cost for the storage device. However, the standalone PVWPS need adequate process control to optimally be coupled with a drip irrigation network as adaptation between variable irradiance inputs and hydraulic outputs are needed to overcome problem of emission uniformity instability that can affect the hydraulic network performance. This study aims to improve the performances of a drip irrigation network coupled to a standalone photovoltaic water pumping system by evaluating the impact of irradiation variation on the hydraulic performances of microirrigation networks based on the calculation of emission uniformity coefficients (5 indicators). A Matlab/Simulink hydraulic model was developed to simulate a drip irrigation network confronted to variable hydraulic behaviours due to irradiance change. Evaluation of the hydraulic performances showed that irradiance change affects water distribution uniformity of the irrigation network. Emission miss uniformities up to 10 % were showed when lower irradiance input occurs. This problem can be solved by proposing hydraulic point tracking that adjust the network impedance with the photovoltaic generator input and irradiance occurrence.
Tipo:  Info:eu-repo/semantics/article
Idioma:  Inglês
Identificador:  http://www.cigrjournal.org/index.php/Ejounral/article/view/6173
Editor:  International Commission of Agricultural and Biosystems Engineering
Relação:  http://www.cigrjournal.org/index.php/Ejounral/article/view/6173/3623
Formato:  application/pdf
Fonte:  Agricultural Engineering International: CIGR Journal; Vol. 23 No. 2 (2021): CIGR Journal

1682-1130
Direitos:  Copyright (c) 2021 Agricultural Engineering International: CIGR Journal
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