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Responses of winter wheat (Triticum aestivum L.) evapotranspiration and yield to sprinkler irrigation regimes.

机译:冬小麦蒸腾和产量对喷灌方式的响应。

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The North China Plain (NCP) is one of the main productive regions for winter wheat (Triticum aestivum L.) and summer maize (Zea mays L.) in China. However, water-saving irrigation technologies (WSITs), such as sprinkler irrigation technology and improved surface irrigation technology, and water management practices, such as irrigation scheduling have been adopted to improve field-level water use efficiency especially in winter wheat growing season, due to the water scarcity and continuous increase of water in industry and domestic life in the NCP. As one of the WSITs, sprinkler irrigation has been increasingly used in the NCP during the past 20 years. In this paper, a three-year field experiment was conducted to investigate the responses of volumetric soil water content (SWC), winter wheat yield, evapotranspiration (ET), water use efficiency (WUE) and irrigation water use efficiency (IWUE) to sprinkler irrigation regimes based on the evaporation from an uncovered, 20-cm diameter pan located 0-5 cm above the crop canopy in order to develop an appropriate sprinkler irrigation scheduling for winter wheat in the NCP. Results indicated that the temporal variations in SWC for irrigation treatments in the 0-60-cm soil layer were considerably larger than what occurred at deeper depths, whereas temporal variations in SWC for non-irrigation treatments were large throughout the 0-120-cm soil layer. Crop leaf area index, dry biomass, 1000-grains weight and yield were negatively affected by water stress for those treatments with irrigation depth less than 0.50E, where E is the net evaporation (which includes rainfall) from the 20-cm diameter pan. While irrigation with a depth over 1.0E also had negative effect on 1000-grains weight and yield. The seasonal ET of winter wheat was in a range of 206-499 mm during the three years experiments. Relatively high yield, WUE and IWUE were found for the irrigation depth of 0.63E. Therefore, for winter wheat in the NCP the recommended amount of irrigation to apply for each event is the total 0.63E that occurred after the previous irrigation provided total E is in a range of 30-40 mm.
机译:华北平原(NCP)是中国冬小麦( Triticum aestivum L.)和夏玉米( L。)的主要产区之一。但是,由于采用了节水灌溉技术(WSIT),例如喷灌技术和改进的地表灌溉技术,以及水管理实践(例如灌溉计划),以提高田间水平的用水效率,特别是在冬小麦生长季节。 NCP中工业和家庭生活中的水资源短缺和水的持续增长。作为WSIT之一,在过去20年中,NCP越来越多地使用喷灌。本文进行了为期三年的田间试验,研究了土壤水量(SWC),冬小麦产量,蒸散量(ET),水分利用效率(WUE)和灌溉用水效率(IWUE)对喷头的响应。灌溉制度的依据是位于作物冠层上方0-5厘米的无遮盖的直径20厘米的盘的蒸发量,以便为NCP的冬小麦制定适当的洒水灌溉计划。结果表明,在0-60cm的土壤层中,灌溉处理的SWC的时间变化比在更深的深度时大,而在整个0-120cm的土壤中,非灌溉处理的SWC的时间变化都很大。层。对于灌溉深度小于0.50 E (其中 E 为净值)的处理,水分胁迫对作物叶面积指数,干生物量,1000粒重和产量产生负面影响。直径20厘米的锅蒸发掉(包括降雨)。灌溉深度超过1.0 E 对1000粒重和产量也有不利影响。在三年的实验中,冬小麦的季节性ET在206-499 mm范围内。灌溉深度为0.63 E 时,发现WUE和IWUE相对较高。因此,对于NCP中的冬小麦,建议对每个事件进行的灌溉量是上次灌溉后发生的总0.63 E ,前提是总 E 在一定范围内30-40毫米

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