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黑龙江省旱田排水模数降雨~径流关系回归模型研究 被引量:1
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作者 鲍文菊 李洋 《黑龙江水利科技》 2015年第10期7-8,共2页
黑龙江省旱田排水模数的计算方法为平均排除法和经验公式法,降雨~径流关系是此计算方法的基础。作者通过降雨~径流关系回归方程的建立,简化降雨~径流关系曲线,方便快捷的计算径流深,从而简化黑龙江省旱田排水模数的计算,有效提高计算效率。
关键词 旱田排水模数 设计暴雨 降雨~径流关系 回归方程 简化设计 分区成果
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月径流系列修正方法探讨
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作者 薛金平 荣丰涛 《山西水利科技》 2007年第3期1-3,9,共4页
20世纪80年代以来,由于流域下垫面条件的改变,山西许多流域的降雨径流规律都发生了重大变化。在同样的年降水量条件下,80年代以后的年径流量显著低于80年代以前的年径流量值。为了保持水文系列的一致性,在工程的规划设计中,须首先修正8... 20世纪80年代以来,由于流域下垫面条件的改变,山西许多流域的降雨径流规律都发生了重大变化。在同样的年降水量条件下,80年代以后的年径流量显著低于80年代以前的年径流量值。为了保持水文系列的一致性,在工程的规划设计中,须首先修正80年代以前的年径流系列值,随后相应年份的月径流系列也必须修正。文中提出了根据降雨资料相似性对月径流系列进行修正的方法,并给出了一个算例。 展开更多
关键词 降雨~径流关系 径流系列修正 成长曲线 兰氏距离
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Impacts of Land-use and Land-cover Changes on River Runoff in Yellow River Basin for Period of 1956–2012 被引量:9
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作者 WANG Fang GE Quansheng +2 位作者 YU Qibiao WANG Huaxin XU Xinliang 《Chinese Geographical Science》 SCIE CSCD 2017年第1期13-24,共12页
River runoff is affected by many factors, including long-term effects such as climate change that alter rainfall-runoff relationships, and short-term effects related to human intervention(e.g., dam construction, land-... River runoff is affected by many factors, including long-term effects such as climate change that alter rainfall-runoff relationships, and short-term effects related to human intervention(e.g., dam construction, land-use and land-cover change(LUCC)). Discharge from the Yellow River system has been modified in numerous ways over the past century, not only as a result of increased demands for water from agriculture and industry, but also due to hydrological disturbance from LUCC, climate change and the construction of dams. The combined effect of these disturbances may have led to water shortages. Considering that there has been little change in long-term precipitation, dramatic decreases in water discharge may be attributed mainly to human activities, such as water usage, water transportation and dam construction. LUCC may also affect water availability, but the relative contribution of LUCC to changing discharge is unclear. In this study, the impact of LUCC on natural discharge(not including anthropogenic usage) is quantified using an attribution approach based on satellite land cover and discharge data. A retention parameter is used to relate LUCC to changes in discharge. We find that LUCC is the primary factor, and more dominant than climate change, in driving the reduction in discharge during 1956–2012, especially from the mid-1980 s to the end-1990 s. The ratio of each land class to total basin area changed significantly over the study period. Forestland and cropland increased by about 0.58% and 1.41%, respectively, and unused land decreased by 1.16%. Together, these variations resulted in changes in the retention parameter, and runoff generation showed a significant decrease after the mid-1980 s. Our findings highlight the importance of LUCC to runoff generation at the basin scale, and improve our understanding of the influence of LUCC on basin-scale hydrology. 展开更多
关键词 land-use and land-cover change natural discharge retention parameter runoff generation Yellow River Basin
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