首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Soil moisture dynamics of typical ecosystems in response to precipitation: A monitoring-based analysis of hydrological service in the Qilian Mountains
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Soil moisture dynamics of typical ecosystems in response to precipitation: A monitoring-based analysis of hydrological service in the Qilian Mountains

机译:典型生态系统对降水的土壤水分动态:基于监测的祁连山水文服务分析

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Hydrological service by soil under mountain ecosystems is a hot topic in current ecological research. We monitored the precipitation and soil moisture dynamics and measured the soil hydrological parameters of grassland and forest ecosystems along an elevation gradient in the Dayekou catchment of the central Qilian Mountains in northwestern China. Soil moisture dynamics in response to rainfall events exhibit different characteristics with different ecosystems and at different elevations. The soil conditions (including soil texture, soil structure, and soil hydrological parameters), the local meteorological condition, and the physiological characteristics of the vegetation can help explain eco-hydrological differences. The total rainfall increased with an increase in elevation across the rainy season. Soil moisture content increased with an increase in altitude and differs with land cover on average values. Grassland and forest at low elevations have 50% and 41.7% of the soil moisture content level under shrubland at high elevations, and Qinghai spruce forest soil has the greatest "green water (the water used mainly by the ecosystem itself)" capacity. Fluctuation in soil moisture diminishes with increased depth, yet the trend is not obvious under shrubland at high elevations. The sensitivity of soil moisture response to rainfall differed depending on land cover and soil depth. Soil moisture under alpine shrubland is far more sensitive to single rainfall events, whereas other land-cover types display only typical responses in periods of frequent rainfall events (continued-rainfall scale). The study of soil moisture dynamics contributes to research on hydrological service in mountain ecosystems, and is helpful in promoting knowledge innovation regarding the relationship between water and ecosystems. (C) 2015 Elsevier B.V. All rights reserved.
机译:山区生态系统下土壤的水文服务是当前生态学研究的热点。我们监测了西北祁连山大叶口流域海拔高度梯度上草地和森林生态系统的降水和土壤水分动态,并测量了土壤水文参数。响应降雨事件的土壤水分动力学在不同的生态系统和不同的海拔高度表现出不同的特征。土壤条件(包括土壤质地,土壤结构和土壤水文参数),当地气象条件以及植被的生理特征可以帮助解释生态水文差异。随着雨季海拔的升高,总降雨量增加。土壤水分含量随着海拔的升高而增加,并且平均值随土地覆盖而不同。在高海拔灌木丛下,低海拔草地和森林分别占土壤水分含量的50%和41.7%,而青海云杉林土壤具有最大的“绿水(主要由生态系统本身使用的水)”能力。土壤水分的波动随着深度的增加而减小,但是在高海拔灌木丛下这种趋势并不明显。土壤水分对降雨的敏感性取决于土地覆盖和土壤深度。高寒灌丛下的土壤水分对单一降雨事件更为敏感,而其他土地覆盖类型仅在频繁降雨事件(持续降雨尺度)期间显示典型响应。对土壤水分动力学的研究有助于研究山区生态系统的水文服务,并有助于促进有关水与生态系统之间关系的知识创新。 (C)2015 Elsevier B.V.保留所有权利。

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