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基于生态水文过程的塔里木河下游植被生态需水量研究 被引量:50

Ecological Water Demand of Vegetation Based on Eco-hydrological Processes in the Lower Reaches of Tarim River
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摘要 根据2005年塔里木河下游8个断面25服地下水位观测井和25个植物样地野外采集的数据,运用DPS统计软件计算植被物种多样性指数,进而对地下水、土壤水与植被的关系进行了分析,结果表明地下水位、土壤含水量与植被多样性之间都有极强的相关性,在此基础上确定出塔里木河下游潜水蒸发的极限埋深是5m。并采用阿维里扬诺夫公式和群克水均衡场公式对塔里木河下游天然植被的月潜水蒸发量进行计算,将两者计算结果加以算术平均得到塔里木河下游不同埋深对应的潜水蒸发量;采用两种方法对植被面积进行分类。在此分类基础上计算生态需水量,将两个结果再次平均,得到天然植被全年最低需水量约为3.2×108m3。通过对月生态需水量的分析发现4月到9月的生态需水量占全年的81%,尤其是5、6、7三个月占全年总需水量的47%,是生态需水的主要时期。 This paper appraised the relationships between soil moisture, groundwater depth and plant species diversity in the lower reaches of the Tarim River, western China, by analyzing the field data from 25 monitoring wells across eight study sites and 25 vegetation survey plots in 2005. The results showed that groundwater depth, soil moisture and plant species diversity had close relativity. It was proved that the critical phreatic water depth was 5 m in the lower reaches of the Tarim River. Averaging the two results of the phreatic evaporations calculated by ABepbRHOB formula and Qunke formula, the mean phreatic evaporations of different groundwater levels in each month were acquired. Based on the calculation of two methods of vegetation acreage classification, the total ecological water demand (EWD) of natural vegetation was 3.2 × 10^8 m^3 in the lower reaches of the Tarim River. Analyzing the monthly EWD, it was found that the EWD in the growth season (from April to September) was 81% of the year's total, with May, June and July accounting for 47% of the year's total, which would supply a gist for choosing the best time to deliver water. This research aimed to realize water resources sustainable development and provide scientific basis for water resource management and sound collocation of the Tarim River Basin.
出处 《地理学报》 EI CSCD 北大核心 2007年第5期451-461,共11页 Acta Geographica Sinica
基金 中国科学院知识刨新项目(KZCX2-YW-127) 国家自然科学基金(90502004 40671014) 国家支撑项目(2006BAC01A03) 国家"973"重点基础研究发展规划项目(2004CB720200)~~
关键词 生态需水 植被 生态水文过程 塔里木河 ecological water demand vegetation eco-hydrological processes Tarim River
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