网站地图联系我们电子所务搜索English中国科学院
 
首 页 机构概况 科研成果 研究队伍 国际交流 院地合作 研究生教育 文化 党群园地 科学传播 重点实验室
科研成果
现在位置:首页 > 科研成果 > 论文
论文编号: 138
论文题目: Soil-water storage to a depth of 5 m along a 500-km transect on the Chinese Loess Plateau
英文论文题目: Soil-water storage to a depth of 5 m along a 500-km transect on the Chinese Loess Plateau
第一作者: Zhao, YL
英文第一作者:
联系作者: Wang Yunqiang,Wang Li
英文联系作者: Wang Yunqiang,Wang Li
外单位作者单位:
英文外单位作者单位:
发表年度: 2017
卷: 150
期:
页码: 71-78
摘要:
英文摘要: Soil-water storage (SWS) is an important indicator of the sustainability of regional water resources and is the foundation for developing strategies of land-use management around the world, especially in areas with deficits of soil water. An investigation of the characteristics of SWS at large regional scales can provide valuable information. We measured SWS and available soil-water storage (ASWS) to a depth of 5 m along a 500-km transect across two climatic regions on the Chinese Loess Plateau (CLP). SWS5 m tended to decrease from southeast to northwest and was 320 mm higher in the subhumid than the semiarid zone. SWS5 m and ASWS(5 m) were lower in the dry than the rainy season, but SWS1 m and ASWS(1 m) did not differ significantly between the two seasons except in the 0-100 cm layer. SWS1 m and ASWS(1 m) tended to increase with depth in the semiarid zone and did not change substantially with depth in the subhumid zone. SWS5 m and ASWS(5 m) varied with land use, in the orders cropland > orchard > forest in the subhumid zone and grassland > shrubland > forest in the semiarid zone. Climatic conditions and soil textures were predominant factors affecting SWS at the transect scale. SWS5 m and ASWS(5 m) in the subhumid zone were dependent on clay content, elevation, latitude and the interaction of latitude and temperature, while clay content played a dominant role in the semiarid Zone. Understanding this information is helpful for assessing regional water resources, optimizing the rational use of land and modeling eco-hydrological processes on the CLP and possibly in other water-limited regions around the world.
刊物名称: CATENA
英文刊物名称: CATENA
论文全文:
英文论文全文:
全文链接: http://www.sciencedirect.com/science/article/pii/S0341816216304489
其它备注:
英文其它备注:
学科:
英文学科:
影响因子:
第一作者所在部门:
英文第一作者所在部门:
论文出处:
英文论文出处:
论文类别:
英文论文类别:
参与作者:
英文参与作者:
中国科学院地球环境研究所 版权所有:中国科学院地球环境研究所 单位邮编:710061
单位地址:陕西省西安市雁塔区雁翔路97号 电子邮件:web@ieecas.cn