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首页> 外文期刊>Agricultural Water Management >Area determination of solar desalination system for irrigating crops in greenhouses using different quality feed water
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Area determination of solar desalination system for irrigating crops in greenhouses using different quality feed water

机译:使用不同质量的给水灌溉温室中的农作物的太阳能脱盐系统的面积确定

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摘要

The aim of this study was to present an alternative means of procuring fresh water from low-quality water sources to meet crop-water requirements (CWR) in greenhouses. A solar still was used in field experiments to desalinate three types of water: seawater, ground water and agricultural-drainage water. Three multiple linear regression models were derived, with an average coefficient of determination (R-2) of 0.90 for the prediction of water-productivity capacity (MD). Two methods were used to estimate the CWR of greenhouses: the adapted Penman-Monteith (A-PM) method and the Fernandez (F) method. The R-2 for the two methods was 0.95. The three water-productivity measurements were compared with the water requirements throughout the year to determine the required area of the solar-desalination system. The results indicated that the A-PM method can be used to estimate the CWR of crops grown in greenhouses. Generally, MD exceeded CWR throughout the year, and the average MD of the water types was 4.79 L/m(2)/day. In addition, the average CWR values obtained using the A-PM and F methods were identical (1.88 L/m(2)/day). The water produced by 1 m(2) of the solar-still system was also found to meet the CWR of about 2 m(2) of greenhouse. As the system's MD exceeds the CWR of a greenhouse, the proposed solar-desalination system is clearly able to meet greenhouse CWR. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究的目的是提出一种从劣质水获取淡水以满足温室中作物需水量(CWR)的替代方法。在现场实验中使用了一个太阳能蒸馏器来淡化三种类型的水:海水,地下水和农业排水。推导了三个多元线性回归模型,预测水生产率(MD)的平均确定系数(R-2)为0.90。两种方法用于估算温室的CWR:改良的Penman-Monteith(A-PM)方法和Fernandez(F)方法。两种方法的R-2为0.95。将这三个水生产率的测量结果与全年的需水量进行比较,以确定太阳能淡化系统所需的面积。结果表明,A-PM方法可用于估算温室中作物的CWR。通常,MD全年超过CWR,并且水类型的平均MD为4.79 L / m(2)/天。此外,使用A-PM和F方法获得的平均CWR值相同(1.88 L / m(2)/天)。还发现由1 m(2)的太阳能蒸馏系统产生的水满足约2 m(2)温室的CWR。由于系统的MD值超过了温室的CWR,因此拟议的太阳能脱盐系统显然能够满足温室的CWR。 (C)2015 Elsevier B.V.保留所有权利。

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