汪昌树,杨鹏年,于宴民,邸飞艳,黄繁昌.膜下滴灌布置方式对土壤水盐运移和产量的影响[J].干旱地区农业研究,2016,34(4):38~45
膜下滴灌布置方式对土壤水盐运移和产量的影响
Effect of different pipe arrangements on soil water-salt transport and yield of cotton under mulched drip-irrigation
  
DOI:10.7606/j.issn.1000-7601.2016.04.07
中文关键词:  膜下滴灌  毛管布置  水盐运移  灌溉水生产效率  产量
英文关键词:mulched drip-irrigation  pipe arrangements  water-salt transport  irrigation water use efficiency  yield
基金项目:新疆维吾尔自治区“十二五”重大科技专项(201130103-3);中德合作“中国塔里木河流域沿河绿洲的可持续管理(SuMaRiO)”;新疆维吾尔自治区水文学及水资源重点学科资助(xjswszyzdxk20101202)
作者单位
汪昌树 新疆农业大学水利与土木工程学院 新疆 乌鲁木齐 830052 
杨鹏年 新疆农业大学水利与土木工程学院 新疆 乌鲁木齐 830052 
于宴民 新疆农业大学水利与土木工程学院 新疆 乌鲁木齐 830052 
邸飞艳 新疆农业大学水利与土木工程学院 新疆 乌鲁木齐 830052 
黄繁昌 新疆农业大学水利与土木工程学院 新疆 乌鲁木齐 830052 
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中文摘要:
      以棉花主要根系层各生育期保持适宜土壤含水率为灌水目标,设置一膜单管四行和一膜双管四行两种毛管布置方式,以TRIME-T3管式TDR测定土壤含水率指示灌水,开展膜下滴灌大田试验,研究了干旱区膜下滴灌棉田土壤水盐运移规律及分布特征,并对不同滴灌模式下的棉花产量和灌溉水生产效率进行评价。结果表明:膜下滴灌单、双管布置棉花生育期内灌溉定额分别为390、550 mm;双管布置在10~40 cm棉花主要根系层形成适宜作物生长的淡化脱盐区,生育期内棉花主要根系层土壤含水率处于适宜的范围,灌水均匀度高,控盐效果好,棉花生长不受水盐胁迫;单管布置盐分随水分运移至湿润锋边缘至外行,棉花主要根系层有积盐的趋势,加上滴头流量大,不利于淡化脱盐区的形成。膜下滴灌毛管布置方式决定土壤水盐分布特征,进而影响植株对水分和养分的吸收,单、双管布置棉花产量分别为5 355、6 075 kg·hm-2,灌溉水生产效率分别为1.38、1.11 kg·m-3,单管布置灌溉水生产效率较高。
英文摘要:
      The soil water content for the main root layer of cotton at growth stages was kept constantly favorable in the experiment, with different treatments including a single pipe (drip-irrigation pipe) and two pipes on four rows of cotton planting. In addition, TRIME-T3 tubular TDR was employed to measure the soil water content, the water-salt transportation and salt distribution characteristics was studied to evaluate the cotton yield and irrigation water use efficiency under different pipe arrangement in arid area. The results indicated that the irrigation quota for single pipe and two pipes treatment under mulched drip-irrigation were 390 mm and 550 mm, respectively, during the whole growth period of cotton. Two pipes treatment resulted in desalination areas which fitted for the growing of cotton in the main root layer of 10~40 cm depth, the soil water content was in appropriate range, had higher irrigation uniformity and a beneficial effect on the controlling of salt, and the cotton growth was not affected by water and salt stress. The single pipe treatment showed that the salt transport was followed with water movement to the edge of wetting front, and the salt accumulation occurred in the main root layer of cotton. The larger dropper flow was not conducive to the formation of the desalination area. The drop-irrigation pipe arrangement influenced the soil water-salt distribution characteristic, and then affected the water and nutrients absorption of cotton, with the single pipe and two pipes arrangements having the yield of 6 075 kg·hm-2 and 5 355 kg·hm-2, and the irrigation water use efficiency of 1.11 kg·m-3 and 1.38 kg·m-3 respectively. The single pipe treatment can obtain higher irrigation water use efficiency.
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