首页> 外文期刊>Journal of Sugar Beet Research >Soil Water Extraction Patterns and Water Use Efficiency of Irrigated Sugarbeet under Full and Limited Irrigation in an Arid Climate
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Soil Water Extraction Patterns and Water Use Efficiency of Irrigated Sugarbeet under Full and Limited Irrigation in an Arid Climate

机译:在干旱气候下灌溉灌溉灌溉灌溉甘露出的土壤水萃取模式和水分利用效率

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摘要

The effects of full and limited irrigation sugarbeet production practices on soil water extraction and evapotranspiration water use efficiency were investigated in2015, 2016, and 2017 near Kimberly, Idaho. Four irrigation regimes (fully irrigated (FIT), 75% FIT, 50% FIT and 25% FIT) were studied in 2015 and 2017 and three irrigation regimes (fully irrigated, 60% FIT, 30% FIT and rainfed) were studied2016, Soil water was extracted from all layers of the 2.25 m soil profile and the pattern of extraction was impacted by irrigation regime. In general, net soil water depleted from the 2.25 m soil profile between emergence and harvest and seasonal averagesoil water extraction decreased with depth and irrigation amount. For all irrigation treatments and all study years, 70 to 90% of soil water extraction was from the 0 to 1.2 m soil profile and 4 to 10% of soil water extraction was from the 1.8 to 2.25 msoil profile. Water use efficiency increased under limited irrigation. Root yield water use efficiency was greatest for the 50% FIT, 60% FIT, and 75% FIT treatments in 2015, 2016, and 2017, respectively. Estimated recoverable sucrose water use efficiency was greatest for the 50% FIT, 60% FIT, and 50% FIT treatments in 2015, 2016, and2017, respectively. Root yield water use efficiency was greater and estimated recoverable sugar water use efficiency was equal or greater than reported in other studies.
机译:在2015年,2016年和2017年,在金伯利,爱达荷邦附近,研究了全部和有限灌溉甜菜生产实践对土壤水提取和蒸散水使用效率的影响。 2015年和2017年,研究了四次灌溉制度(完全灌溉(适合),75%拟合,50%适合),研究了三个灌溉制度(完全灌溉,60%拟合,30%FIT和雨量),是2016,土壤从2.25米土壤剖面的所有层中提取水,提取模式受灌溉制度影响。一般来说,从2.25米的出苗和收获之间的土壤曲线耗尽的净土壤水分随着深度和灌溉量而降低。对于所有灌溉治疗和所有研究岁月,70%至90%的土壤水萃取来自0至1.2米的土壤曲线,4至10%的土壤水萃取来自1.8至2.25米尔型材。在灌溉有限的情况下,用水效率增加。对于2015年,2016年,2016年,2016年,2015年,2016年和2017年的50%拟合和75%适合治疗,根产量水使用效率最大。估计可恢复的蔗糖用水效率最大,对于2015年,2016年,2016年和2017年的50%适合和50%适合治疗。根产量水使用效率较大,估计可恢复的糖用水效率等于或大于其他研究报告。

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