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Effect of groundwater level depth and irrigation amount on water fluxes at the groundwater table and water use of wheat.

机译:地下水位深度和灌溉量对地下水位和小麦用水的影响。

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摘要

Three irrigation water regimes (90.0, 67.5, and 45.0 mm) and five groundwater table depths (1.5, 2.0, 2.5, 3.0, and 3.5 m) were considered in a lysimeter experiment to investigate the effect of groundwater level and irrigation amount on water fluxes at the groundwater table and water use of wheat. Results show that deep percolation (irrigation of 16-23%) occurred to a considerable extent in the present irrigation level at a shallow groundwater table of 1.5-2.0 m. Capillary rise comprised 29% of the water use of wheat, within the period from regreening to harvest, at 1.5 m groundwater table depth, and was reduced with an increase in table depth. A relationship between groundwater contribution and groundwater table depth was also found. In the present irrigation conditions, the water productivity (WPb) of wheat was enhanced from 3.59 kg m-3 at a shallower groundwater level depth of 1.5 m, to 4.58 kg m-3 at a deeper groundwater level depth of 3.5 m. WPb can be higher if deficit irrigation is enforced and can reach 3.93-6.03 kg m-3. Similarly, a relationship between WPb and groundwater table depth was found. Hence, the irrigation amount per time for local wheat can be reduced to 45.0-67.5 mm, depending on the groundwater level depth, in order to use water resources effectively.Digital Object Identifier http://dx.doi.org/10.1002/ird.685
机译:在溶渗仪实验中考虑了三种灌溉水域(90.0、67.5和45.0 mm)和五个地下水位深度(1.5、2.0、2.5、3.0和3.5 m),以研究地下水水位和灌溉量对水通量的影响在地下水位和小麦用水方面。结果表明,在1.5-2.0 m的浅层地下水位中,目前的灌溉水平在相当大的程度上发生了深层渗流(灌溉量为16-23%)。从重新绿化到收获期间,在地下水位1.5 m处,毛细血管上升占小麦用水量的29%,并且随着表层深度的增加而下降。还发现了地下​​水贡献与地下水位深度之间的关系。在目前的灌溉条件下,小麦的水分生产率( WP b )从3.59 kg m -3 在1.5 m的较浅地下水位深度处,在3.5 m的较深地下水位深度处达到4.58 kg m -3 。如果实施亏缺灌溉,则 WP b 可能会更高,达到3.93-6.03 kg m -3 。类似地,发现 WP b 与地下水位之间的关系。因此,根据地下水位深度,可以将本地小麦的每次灌溉量减少到45.0-67.5 mm,以便有效利用水资源。数字对象标识符http://dx.doi.org/10.1002/ird .685

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