文章摘要
李瑞平,史海滨,赤江刚夫,张艺强.基于水热耦合模型的干旱寒冷地区冻融土壤水热盐运移规律研究[J].水利学报,2009,40(4):
基于水热耦合模型的干旱寒冷地区冻融土壤水热盐运移规律研究
Study on water_heat_salt transfer in soil freezing_thawing based on Simultaneous Heat and Water model
  
DOI:
中文关键词: 河套灌区  冻融土壤  水热盐运移  秋浇  SHAW模型
英文关键词: Hetao Irrigation District  freezing_thawing of soil  water_heat_salt transfer  Simultaneous Heat and Water (SHAW) model  autumn irrigation
基金项目:
作者单位
李瑞平 内蒙古农业大学 水利与土木建筑工程学院内蒙古 呼和浩特 010018 
史海滨  
赤江刚夫  
张艺强  
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中文摘要:
      运用水热耦合模型(SHAW)对内蒙古河套灌区3种盐渍化土壤冻融期水热盐的动态变化进行了模拟研究。研究结果表明:重度盐渍化土壤累积蒸发量最大,主要是由于土壤中盐分含量较大,降低了土壤的冰点,延长了土壤的冻结时间,从而增大了土壤的蒸发量,导致翌年土壤水分大量损失,影响作物播种出苗和发芽。而且重度盐渍化土壤在冻结和融解过程中表层盐分聚积严重,而中度和轻度盐化土壤在冻结期和融解期盐分增加幅度略小一些;当秋浇定额大于150mm时,其中30%~50%水量储存于0~1m土层中,具有明显的储水保墒作用。秋浇定额和秋浇时间对于土壤蒸发量以及1m土层的储水量和含盐量的影响只是在冻结前影响较大。
英文摘要:
      The Simultaneous Heat and Water model (SHAW) was used to simulate the dynamic variation of water_heat_salt in the process of soil freezing_thawing for three kinds of salinized soil, with different degrees of saline, in the Inner Mongolia Hetao Irrigation District. The results show that the accumulated evaporation of serious saline soil is the largest among the three kinds of soils. It is caused by the high content of salt which can depress the ice point and prolong the period of soil freezing. Consequently, it results in the loss of soil moisture in next year and affects the germination of crop. The 30%~50% of quota irrigation water in autumn will be deposited in soil layer within the depth of 1.0m when it excesses 150mm. The effect of autumn irrigation quota and schedule affecting the soil evaporation and water stored in soil layer happen to the period before freezing of soil only.
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