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The effect of an intelligent surface drip irrigation method on sorghum biomass, energy and water savings.

机译:智能地表滴灌方法对高粱生物量,能源和节水的影响。

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Over the last few decades, precipitation has decreased as a result of climate change. This change increases crop water requirements, while irrigation water is wasted because of improper irrigation scheduling. Soil moisture sensors could be used to improve irrigation scheduling and save both water and energy. The objective was to study the energy and water savings, and the gross margin achieved, when using an intelligent surface drip irrigation method on Sorghum bicolor (L.) Moench. In the years 2008 and 2009, a study was conducted at the farm of the University of Thessaly, Central Greece. A Class A evaporation pan and an automated frequency domain reflectometry soil moisture sensor were used for irrigation scheduling. Two treatments in four replications were organized in a randomized complete block design: (1) pan surface drip irrigation (PSDI100) and amount of water equal to 100% of the daily evapotranspiration (ETd), as determined by a Class A evaporation pan, and (2) automated surface drip irrigation (ASDI100) and amount of water equal to 100% of the ETd, as determined by an automated soil moisture sensor. The mean dry biomass production and the gross margin were greater in the PSDI100 treatment. The fully automated treatment remained profitable despite the high first costs. The mean water saving was 12.5%, while the mean energy saving was 12.4%, and the irrigation water-use efficiency was higher in the ASDI100 treatment.
机译:在过去的几十年中,由于气候变化,降水减少了。这种变化增加了作物的需水量,同时由于灌溉计划不当而浪费了灌溉水。土壤湿度传感器可用于改善灌溉计划并节省水和能源。目的是研究在高粱双色(L.)Moench上使用智能表面滴灌技术时的节能节水情况以及实现的毛利率。在2008年和2009年,在希腊中部色萨利大学的农场进行了一项研究。使用A类蒸发锅和自动频域反射法土壤湿度传感器进行灌溉计划。采用随机完整区组设计,进行了四次重复的两种处理:(1)锅表面滴灌(PSDI100),水量等于每日蒸发量(ETd)的100%(由A级蒸发锅确定),以及(2)自动地面滴灌(ASDI100),其水量等于ETd的100%(由自动土壤湿度传感器确定)。 PSDI100处理的平均干生物量产量和毛利率更高。尽管首次治疗费用很高,但全自动治疗仍然有利可图。在ASDI100处理中,平均节水为12.5%,而平均节能为12.4%,灌溉用水效率更高。

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