【24h】

Microclimatic characteristics of the Heihe oasis in the hyperarid zone of China

机译:高干旱区黑河绿洲微气候特征

获取原文

摘要

The microclimate of a desert oasis in hyper-arid zone of China was monitored using micrometeorological methods and compared with those of areas adjacent to forested land. Differences in ground-level photosynthetically active radiation (PAR) on clear, cloudy and dust storm days and their subtending causes are analysed and discussed. Desert oases serve the ecological functions of altering solar radiation, adjusting near-ground and land surface temperatures, reducing soil temperature differences, lowering wind velocity, and increasing soil and atmospheric humidity. The total solar radiation in the interior of the oasis was roughly half of that outside a forest canopy. During the growing season, air temperatures in Populus euphratica Oliv. (poplar) and Tamarix ramosissima Ledeb. (tamarisk) forests were 1.62℃ and 0.83℃ lower, respectively than those in the areas around the forests. Furthermore, the taller the forest cover, the greater the temperature drops; air temperatures in the upper storey were greater than those in the lower storey, i.e., air temperature rose with increasing height. Over the growing season, the relative humidities of the air in the poplar and tamarisk forests were 8.5% and 4.2% higher, respectively, than that in areas around the forests. Mean wind velocity in poplar-forested lands was 0.33 m s-1, 2.31 m s-1 lower than that in the surrounding area. During dust storm days the PAR was significantly lower than on cloudy or clear days, when it was high and varied in an irregular manner.
机译:利用微气象学方法对中国高干旱地区荒漠绿洲的微气候进行了监测,并与林地相邻地区进行了比较。分析和讨论了晴天,阴天和沙尘暴天的地面光合有效辐射(PAR)的差异及其引起原因。沙漠绿洲具有改变太阳辐射,调节近地和陆地表面温度,减少土壤温度差异,降低风速以及增加土壤和大气湿度的生态功能。绿洲内部的总太阳辐射约为森林冠层外部太阳辐射的一半。在生长季节中,胡杨的气温。 (杨)和Tamarix ramosissima Ledeb。 (ta柳)森林分别比森林周围地区低1.62℃和0.83℃。此外,森林覆盖率越高,温度下降幅度越大;上层的空气温度高于下层的空气温度,即空气温度随高度的升高而上升。在整个生长季节,白杨和柳林的空气相对湿度分别比森林周围地区高8.5%和4.2%。杨树林地的平均风速为0.33 m s-1,比周围地区低2.31 m s-1。在沙尘暴期间,PAR显着低于阴天或晴天,那时PAR很高并且以不规则的方式变化。

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