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Sediment Flux to the Sea as Influenced by Changing Human Activities and Precipitation: Example of the Yellow River, China

机译:人类活动和降水变化对沉积物入海的影响-以中国黄河为例

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摘要

Since the 1970s, the sediment flux of the Yellow River to the sea has shown a marked tendency to decrease, which is unfavorable for wetland protection and oil extraction in the Yellow River delta. Thus, an effort has been made to elucidate the relation between the sediment flux to the sea and the drainage basin factors including climate and human activities. The results show that the sediment flux to the sea responds to the changed precipitation in different ways for different runoff and sediment source areas in the drainage basin. If other factors are assumed to be constant, when the annual precipitation in the area between Longmen and San- menxia decreases by 10 mm, the sediment flux to the sea will decrease by 27.5 million t/yr; when the precipitation in the area between Hekouzhen and Longmen decreases by 10 mm, the sediment flux to the sea will decrease by 14.3 million t/yr; when the precipitation in the area above Lanzhou decreases by 10 mm, the sediment flux to the sea will decrease by 17.4 million t/yr. A multiple regression equation has been established between the sediment flux to the sea and the influencing factors, such as the area of land terracing and tree and grass planting, the area of the land created by the sediment trapped by check dams, the annual precipitation, and the annual quantity of water diversion by man. The equation may be used to estimate the change in the sediment flux to the sea when the influencing variables are further changed, to provide useful knowledge for the environmental planning of the Yellow River drainage basin and its delta.
机译:自1970年代以来,黄河入海的泥沙通量呈现出明显下降的趋势,这不利于黄河三角洲的湿地保护和石油开采。因此,已经做出努力以阐明向海洋的沉积物通量与包括气候和人类活动在内的流域因素之间的关系。结果表明,流域内径流和泥沙源区不同,入海泥沙通量对降水变化的响应方式不同。如果假设其他因素不变,那么当龙门至三门峡之间的年降水量减少10 mm时,流向海洋的沉积物通量将减少2750万吨/年。当河口镇至龙门之间的降水量减少10 mm时,入海的泥沙通量将减少1,430万吨/年。当兰州以上地区的降水量减少10 mm时,入海的泥沙通量将减少1,740万吨/年。在向海中的泥沙通量和影响因素之间建立了多元回归方程,这些因素包括土地梯田和树木和草木的种植面积,由止水坝截留的泥沙产生的土地面积,年降水量,以及每年的人工引水量。当影响变量进一步变化时,该方程可用于估算入海的泥沙通量的变化,从而为黄河流域及其三角洲的环境规划提供有用的知识。

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