首页> 外文期刊>Arabian journal of geosciences >Runoff coefficient characteristics and its dominant influence factors of the riparian Myricaria squamosa Desv. shrubs over Qinghai Lake basin, NE Qinghai-Tibet Plateau
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Runoff coefficient characteristics and its dominant influence factors of the riparian Myricaria squamosa Desv. shrubs over Qinghai Lake basin, NE Qinghai-Tibet Plateau

机译:河岸Myricaria squamosa Desv的径流系数特征及其主要影响因素。青藏高原东北部青海湖流域的灌木

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The runoff coefficient, defined as the portion of rainfall that becomes direct runoff during an event, is a key concept in engineering hydrology and is widely used for design. Also, it is useful for understanding the flood frequency controls in a particular hydrologic or climatic regime. In this paper, the runoff coefficient characteristics and the dominant influence factors of riparian Myricaria squamosa Desv. shrubs were researched based on the data of runoff coefficient, rainfall depth, rainfall intensity, the 10-min maximum rainfall intensity, and antecedent soil moisture measured in Qinghai Lake basin, which will help us to recognize the runoff coefficient and the influence factors of riparian shrubs in highly cold and semiarid districts. The runoff coefficient of riparian M. squamosa Desv. shrubs in the study area is very small (the mean value is 0.39 %). Rainfall depth, rainfall intensity, and the 10-min maximum rainfall intensity are the dominant controls on runoff coefficient of riparian M. squamosa Desv. shrubs over Qinghai Lake basin. Runoff coefficient and rainfall depth have a logarithmic function relationship, and runoff coefficient increases with the increasing of rainfall depth significantly. The relationships between runoff coefficient and rainfall intensity/the 10-min maximum rainfall intensity are both logarithmic, both rainfall intensity and the 10-min maximum rainfall intensity significantly influence runoff coefficient in the study area, and the 10-min maximum rainfall intensity influences runoff coefficient more significantly. Relationships between runoff coefficient and antecedent soil moisture of 10 and 30 cm underground are not significant. This is because of the low soil moisture of 10 and 30 cm underground due to the bad soil water retention in the study area. Significant linear relationships were found between runoff coefficient and antecedent soil moisture of 60 and 80 cm underground, where runoff coefficient decreases with the increasing of antecedent soil moisture of 60 and 80 cm underground.
机译:径流系数定义为事件期间直接径流的降雨部分,是工程水文学中的关键概念,已广泛用于设计中。同样,对于了解特定水文或气候条件下的洪水频率控制也是有用的。本文研究了河岸Myricaria squamosa Desv的径流系数特征及其主要影响因素。根据青海湖流域径流系数,降雨深度,降雨强度,最大降雨强度10min及前期土壤水分的数据对灌木进行了研究,有助于我们识别径流系数和河岸带的影响因素。寒冷和半干旱地区的灌木丛。河岸M. squamosa Desv的径流系数。研究区域的灌木很小(平均值为0.39%)。降雨深度,降雨强度和10分钟最大降雨强度是河岸M. squamosa Desv径流系数的主要控制因素。青海湖流域的灌木丛。径流系数与降雨深度呈对数函数关系,径流系数随降雨深度的增加而显着增加。径流系数与降雨强度/ 10分钟最大降雨强度之间的关系都是对数关系,降雨强度和10分钟最大降雨强度都显着影响研究区域的径流系数,而10分钟最大降雨强度影响径流量。系数更显着。径流系数与地下10 cm和30 cm前土壤湿度之间的关系不显着。这是因为研究区域中土壤保水性差,导致地下10和30 cm的土壤水分较低。径流系数与地下60和80 cm的前期土壤水分之间存在显着的线性关系,其中径流系数随地下60和80 cm的前期土壤水分的增加而降低。

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