首页> 外文期刊>Agricultural and Forest Meteorology >Evaluation of water use of Caragana microphylla with the stem heat-balance method in Horqin Sandy Land, Inner Mongolia, China
【24h】

Evaluation of water use of Caragana microphylla with the stem heat-balance method in Horqin Sandy Land, Inner Mongolia, China

机译:茎热平衡法评价内蒙古科尔沁沙地小叶锦鸡儿用水情况

获取原文
获取原文并翻译 | 示例
       

摘要

Transpiration rates of a 15-year-old sand-fixation plantation of the leguminous shrub Caragana microphylla in the Horqin Sandy Land, northeast China, were measured by sap flow gauges throughout the summer of 2006. We extrapolated the measurements of water use by individual plants to determine the area-averaged transpiration (T-s) of the shrubland. The method used for the extrapolation assumes that the transpiration of a shrub was proportional to its leaf area. Similar results were found when comparing transpiration estimated with sap flow measurements to the actual evapotranspiration measured by the weighed lysimeter method, indicating that the scaling procedure can be used to provide reliable estimates of shrub transpiration. Daily sap flow rates and T-s were mainly controlled by photosynthetically active radiation (Q) and vapor pressure deficit (D), whereas soil moisture had more influence on monthly change in T-s. Maximum stand-level transpiration rates for C. microphylla ranged from 1.64 to 1.95 mm day(-1), with an average value of 1.19 mm day(-1). The seasonal (1 June to 31 August) total transpiration amounted to 109 mm, representing 66% of the incoming precipitation over this period. These results suggest that C. microphylla is highly effective at utilizing scarce water resources in semi-arid environments.
机译:整个2006年夏季,通过树液流量计测量了位于东北科尔沁沙地的15年生豆科小叶锦鸡儿(Caragana microphylla)固沙人工林的蒸腾速率。确定灌木丛的面积平均蒸腾量(Ts)。用于推断的方法假定灌木的蒸腾量与其叶面积成正比。当将通过树液流量测量估算的蒸腾量与通过称重溶渗仪法测量的实际蒸散量进行比较时,发现了相似的结果,表明缩放过程可用于提供灌木蒸腾量的可靠估算。每日汁液流量和T-s主要受光合有效辐射(Q)和蒸气压亏缺(D)的控制,而土壤水分对T-s月变化的影响更大。小叶锦梭鱼的最大立卧蒸腾速率范围为1.64至1.95 mm日(-1),平均值为1.19 mm日(-1)。季节性(6月1日至8月31日)总蒸腾量为109毫米,占该时期内降雨总量的66%。这些结果表明小叶锦梭鱼在半干旱环境中利用稀缺水资源非常有效。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号