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Characterization and mechanism of regional land subsidence in the Yellow River Delta, China

机译:黄河三角洲区域地面沉降特征及机理

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In this paper, we discuss historical and recent land subsidence in the Modern Yellow River Delta. Integrated analysis of leveling and relevant background data, including groundwater level, oil extraction, and geological structure, has revealed that land displacement is driven by natural and induced components acting at various depths. Since the 1950s, intense settlements occurred in the modern estuary delta lobes. Between 2002 and 2008, the subsidence center of Dongying and Guangrao exhibited a typical subsidence area with subsidence rates of 28.2 and 64.7 mm/years, respectively. Higher magnitudes are associated with groundwater withdrawals and oil-gas field exploitations, which induce the compaction of a deep clayey layer. There existed a significant linear positive correlation between groundwater level and elevation in the center of the deep groundwater depression cone. The major contributor of natural subsidence is tectonic movements, while moderate sinking due to the natural consolidation of the recent delta subsoil is still acting.
机译:在本文中,我们讨论了现代黄河三角洲的历史和最近的地面沉降。对水准和相关背景数据(包括地下水位,石油开采和地质结构)的综合分析表明,土地位移是由作用于不同深度的自然成分和诱发成分驱动的。自1950年代以来,现代河口三角洲地区发生了激烈的定居。在2002年至2008年之间,东营和广饶的沉降中心呈现出典型的沉降区域,沉降速率分别为28.2和64.7 mm /年。较高的水位与地下水的抽取和油气田的开采有关,它们引起了深层黏土层的压实。在深水凹陷锥的中心,地下水位与海拔之间存在显着的线性正相关。自然沉降的主要因素是构造运动,而由于近期三角洲下层土壤的自然固结而导致的适度下沉仍在起作用。

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