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阿克苏河灌区作物需水量对气候变化的敏感性分析
引用本文:王志成.阿克苏河灌区作物需水量对气候变化的敏感性分析[J].新疆气象,2018,12(3):33-39.
作者姓名:王志成
作者单位:新疆塔里木河流域阿克苏管理局;中国科学院新疆生态与地理研究所/荒漠与绿洲生态国家重点实验室
基金项目:中国科学院“西部之光”人才培养计划(2016QNXZB12);国家自然科学基金重点项目(41630859)
摘    要:阿克苏河灌区是中纬度干旱区典型的绿洲灌溉系统,同时也是新疆第二大灌区,了解灌区作物需水量可为灌区种植结构调整、水资源优化配置提供科学依据。本研究基于联合国粮农组织(FAO)的Penman-Monteith蒸散发模型,结合作物系数法估算了阿克苏灌区作物需水量的时空变化及其对气候因子和作物种植结构的敏感性。结果表明,1960—2015年阿克苏灌区多年平均作物需水量为586 mm,且呈显著上升趋势,上升速率为38.43 mm/10 a。随着气候变化和作物种植结构的改变,1990—2015年间作物需水量急剧增加,增加速率高达99.37 mm/10 a。对于不同作物类型,果林的需水量最大,高达829.8 mm,其次是棉花、水稻和玉米,小麦需水量最低。阿克苏灌区的作物需水量对日最高气温和日照时数较为敏感,而对最低气温、风速和水汽压的敏感度较低。当日最高气温升高2℃时,作物需水量增加4%,当日照时数增加10%时,作物需水量将增加3.2%。另外,作物需水量对作物种植结构非常敏感,当果林的种植面积比例增加10%时,作物需水量增加了12.1%。

关 键 词:作物需水量  敏感性  蒸散发  阿克苏灌区
收稿时间:2017/5/15 0:00:00
修稿时间:2017/8/3 0:00:00

Sensitivity analysis of crop water requirement to meteorological factors in Aksu irrigation area
Abstract:The Aksu Irrigation Area, a typical oasis irrigation system in the mid-latitude arid region, is the second-largest irrigation unit in Xinjiang. Understanding the variations of crop water requirement can provide a scientific basis for plantation structure adjustment and water resources management. Based on the Penman-Monteith Evapotranspiration Model recommended by the Food and Agriculture Organization of the United Nations (FAO), this study estimated the temporal and spatial variations of crop water requirement and its sensitivity to meteorological factors and crop structure in the Aksu irrigation area. Results showed that the average crop water requirement of Aksu irrigation area was 586 mm, and it increased significantly during 1960~2015 with an increase rate of 38.43 mm/10a. A significant upward trend of crop water requirement during 1990 ~ 2015 was detected as a combined effects of climate change and evolution of crop structure. Crop water requirement of fruit tree was the largest (up to 829.8 mm), followed by cotton, rice and maize, and water requirement of wheat was the lowest. The crop water requirement was more sensitive to maximum daily temperature and sunshine hours, while less sensitive to minimum temperature, wind speed and water vapor pressure. The crop water requirement increases by 4% when the maximum temperature rises by 2 °C, while it increases by 3.2% when the sunshine hours increase by 10%. The crop water requirement was also sensitive to crop structure. The crop water requirement increases by 12.1% when the proportion of fruit trees increases 10%. Key words Crop water requirement; Sensitivity analysis; Evapotranspiration; Aksu Irrigation area
Keywords:Crop water requirement  Sensitivity analysis  Evapotranspiration  Aksu Irrigation area
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