Yu Li-Peng, Huang Guan-Hua, Liu Hai-Jun, Wang Xiang-Ping, Wang Ming-Qiang
College of Water Conservancy and Civil Engineering, China Agricultural University, Beijing 100083, China.
Ying Yong Sheng Tai Xue Bao. 2010 Aug;21(8):2031-7.
In 2006-2008, a field experiment was conducted at the Tongzhou Experimental Base for Water-Saving Irrigation Research, Chinese Academy of Sciences, Beijing, aimed to study the effects of sprinkler irrigation amount on the growth, grain yield, water consumption, and water use efficiency of winter wheat. Different treatments were installed, with the irrigation amounts expressed by the multiples of the evaporation (E) from a standard 20-cm diameter pan placed above winter wheat canopy. The grain yield was the highest in treatment 0.75 E in 2006-2007 and in treatment 0.625 E in 2007-2008. In treatments with irrigation amount less than 0.25 E, winter wheat growth was subjected to water stress, and the yield loss was larger than 25%. The water consumption of winter wheat in the two growth seasons was in the range of 219-486 mm, and increased with increasing irrigation amount. The relationships between the grain yield and the water consumption and water use efficiency could be described by quadratic function. Sprinkler irrigation with an amount of 0.50-0.75 E was recommended for the winter wheat growth after its turning green stage in Beijing area.
2006年至2008年,在中国科学院北京通州节水灌溉试验基地开展了一项田间试验,旨在研究喷灌量对冬小麦生长、籽粒产量、耗水量和水分利用效率的影响。设置了不同处理,灌溉量以放置在冬小麦冠层上方的标准直径20厘米蒸发皿蒸发量(E)的倍数表示。2006 - 2007年,灌溉量为0.75E的处理籽粒产量最高;2007 - 2008年,灌溉量为0.625E的处理籽粒产量最高。在灌溉量小于0.25E的处理中,冬小麦生长受到水分胁迫,产量损失大于25%。两个生长季冬小麦的耗水量在219 - 486毫米范围内,且随灌溉量增加而增加。籽粒产量与耗水量和水分利用效率之间的关系可用二次函数描述。建议北京地区冬小麦返青后进行喷灌,喷灌量为0.50 - 0.75E。