Arid
DOI10.1007/s40333-018-0059-1
Interactive effects of wind speed, vegetation coverage and soil moisture in controlling wind erosion in a temperate desert steppe, Inner Mongolia of China
Meng Zhongju1; Dang Xiaohong1; Gao Yong1; Ren Xiaomeng2; Ding Yanlong1; Wang Meng3
通讯作者Gao Yong
来源期刊JOURNAL OF ARID LAND
ISSN1674-6767
EISSN2194-7783
出版年2018
卷号10期号:4页码:534-547
英文摘要

The rapid desertification of grasslands in Inner Mongolia of China poses a significant ecological threaten to northern China. The combined effects of anthropogenic disturbances (e.g., overgrazing) and biophysical processes (e.g., soil erosion) have led to vegetation degradation and the consequent acceleration of regional desertification. Thus, mitigating the accelerated wind erosion, a cause and effect of grassland desertification, is critical for the sustainable management of grasslands. Here, a combination of mobile wind tunnel experiments and wind erosion model was used to explore the effects of different levels of vegetation coverage, soil moisture and wind speed on wind erosion at different positions of a slope inside an enclosed desert steppe in the Xilamuren grassland of Inner Mongolia. The results indicated a significant spatial difference in wind erosion intensities depending on the vegetation coverage, with a strong decreasing trend from the top to the base of the slope. Increasing vegetation coverage resulted in a rapid decrease in wind erosion as explained by a power function correlation. Vegetation coverage was found to be a dominant control on wind erosion by increasing the surface roughness and by lowering the threshold wind velocity for erosion. The critical vegetation coverage required for effectively controlling wind erosion was found to be higher than 60%. Further, the wind erosion rates were negatively correlated with surface soil moisture and the mass flux in aeolian sand transport increased with increasing wind speed. We developed a mathematical model of wind erosion based on the results of an orthogonal array design. The results from the model simulation indicated that the standardized regression coefficients of the main effects of the three factors (vegetation coverage, soil moisture and wind speed) on the mass flux in aeolian sand transport were in the following order: wind speed > vegetation coverage > soil moisture. These three factors had different levels of interactive effects on the mass flux in aeolian sand transport. Our results will improve the understanding of the interactive effects of wind speed, vegetation coverage and soil moisture in controlling wind erosion in desert steppes, and will be helpful for the design of desertification control programs in future.


英文关键词desert steppe wind erosion desertification aeolian process sand transport Xilamuren grassland
类型Article
语种英语
国家Peoples R China
收录类别SCI-E
WOS记录号WOS:000437782700004
WOS关键词ECOSYSTEM SERVICES ; NORTHERN CHINA ; WINDBREAKS ; TRANSPORT ; TUNNEL ; SAND ; AUSTRALIA ; VELOCITY ; FIELD ; LAND
WOS类目Environmental Sciences
WOS研究方向Environmental Sciences & Ecology
来源机构北京林业大学
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/210629
作者单位1.Inner Mongolia Agr Univ, Desert Control Sci & Engn Coll, Hohhot 010018, Peoples R China;
2.Inner Mongolia Inst Meteorol Sci, Hohhot 010051, Peoples R China;
3.Beijing Forestry Univ, Forestry Coll, Beijing 100083, Peoples R China
推荐引用方式
GB/T 7714
Meng Zhongju,Dang Xiaohong,Gao Yong,et al. Interactive effects of wind speed, vegetation coverage and soil moisture in controlling wind erosion in a temperate desert steppe, Inner Mongolia of China[J]. 北京林业大学,2018,10(4):534-547.
APA Meng Zhongju,Dang Xiaohong,Gao Yong,Ren Xiaomeng,Ding Yanlong,&Wang Meng.(2018).Interactive effects of wind speed, vegetation coverage and soil moisture in controlling wind erosion in a temperate desert steppe, Inner Mongolia of China.JOURNAL OF ARID LAND,10(4),534-547.
MLA Meng Zhongju,et al."Interactive effects of wind speed, vegetation coverage and soil moisture in controlling wind erosion in a temperate desert steppe, Inner Mongolia of China".JOURNAL OF ARID LAND 10.4(2018):534-547.
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