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Impacts of climatic factors on runoff coefficients in source regions of the Huanghe River

机译:气候因素对黄河源区径流系数的影响

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Runoff coefficients of the source regions of the Huanghe River in 1956–2000 were analyzed in this paper. In the 1990s runoff of Tangnaihai Hydrologic Station of the Huanghe River experienced a serious decrease, which had attracted considerable attention. Climate changes have important impact on the water resources availability. From the view of water cycling, runoff coefficients are important indexes of water resources in a particular catchment. Kalinin baseflow separation technique was improved based on the characteristics of precipitation and streamflow. After the separation of runoff coefficient (R/P), baseflow coefficient (Br/P) and direct runoff coefficient (Dr/P) were estimated. Statistic analyses were applied to assessing the impact of precipitation and temperature on runoff coefficients (including Dr/P, Br/P and R/P). The results show that in the source regions of the Huanghe River, mean annual baseflow coefficient was higher than mean annual direct runoff coefficient. Annual runoff coefficients were in direct proportion to annual precipitation and in inverse proportion to annual mean temperature. The decrease of runoff coefficients in the 1990s was closely related to the decrease in precipitation and increase in temperature in the same period. Over different sub-basins of the source regions of the Huanghe River, runoff coefficients responded differently to precipitation and temperature. In the area above Jimai Hydrologic Station where annual mean temperature is −3.9°C, temperature is the main factor influencing the runoff coefficients. Runoff coefficients were in inverse relation to temperature, and precipitation had nearly no impact on runoff coefficients. In subbasin between Jimai and Maqu Hydrologic Station Dr/P was mainly affected by precipitation while R/P and Br/P were both significantly influenced by precipitation and temperature. In the area between Maqu and Tangnaihai hydrologic stations all the three runoff coefficients increased with the rising of annual precipitation, while direct runoff coefficient was inversely proportional to temperature. In the source regions of the Huanghe River with the increase of average annual temperature, the impacts of temperature on runoff coefficients become insignificant.
机译:本文分析了1956-2000年黄河源区的径流系数。 1990年代,黄河唐乃海水文站径流量严重减少,引起了人们的广泛关注。气候变化对水资源的可用性有重要影响。从水循环的角度来看,径流系数是特定流域水资源的重要指标。基于降水和水流特征,改进了加里宁底流分离技术。径流系数(R / P)分离后,估算基础流量系数(Br / P)和直接径流系数(Dr / P)。统计分析用于评估降水和温度对径流系数(包括Dr / P,Br / P和R / P)的影响。结果表明,在黄河源区,年均基流系数高于年均直接径流系数。年径流系数与年降水量成正比,与年平均温度成反比。 1990年代,径流系数的减少与同期降水的减少和温度的升高密切相关。在黄河源区的不同子流域,径流系数对降水和温度的响应不同。在集麦水文站以上年平均气温为−3.9°C的地区,温度是影响径流系数的主要因素。径流系数与温度成反比,降水对径流系数几乎没有影响。在集麦和玛曲水文站之间的子流域,Dr / P主要受降水影响,而R / P和Br / P均受降水和温度影响。在玛曲至唐乃海水文站之间的区域,这三个径流系数都随年降水量的增加而增加,而直接径流系数与温度成反比。在黄河源区,随着年平均气温的升高,温度对径流系数的影响不明显。

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