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Reconstruction of Channelized Systems Through a Conditioned Reverse Migration Method

机译:通过条件反向迁移方法重建信道化系统

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AbstractGeological heterogeneities directly control underground flow. In channelized sedimentary environments, their determination is often underconstrained: it may be possible to observe the most recent channel path and the abandoned meanders on seismic or satellite images, but smaller-scale structures are generally below image resolution. In this paper, reconstruction of channelized systems is proposed with a stochastic inverse simulation reproducing the reverse migration of the system. Maps of the recent trajectories of the Mississippi river were studied to define appropriate relationships between simulation parameters. Measurements of curvature and migration vectors showed (i) no significant correlation between curvature and migration offset and (ii) correlation trends of downstream and lateral migration offsets versus the curvature at half-meander scale. The proposed reverse migration method uses these trends to build possible paleo-trajectories of the river starting from the last stage of the sequence observed from present-day (satellite or seismic) data. As abandoned meanders provide clues about the paleo-locations of the river, they are integrated time step by time step during the reverse simulation process. We applied the method to a satellite image of a fluvial system. Each of the different resulting geometries of the system honored most of the available observations and presented meandering patterns similar to the observed ones.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>地质异质性直接控制地下流动。在通道化沉积环境中,它们的确定通常是欠抗的:可以观察到最近的沟道路径和地震或卫星图像上的废弃蜿蜒,但是较小的结构通常在图像分辨率之下。在本文中,提出了一种具有随机逆模拟的信道化系统的重构,再现系统的反向迁移。研究了密西西比河最近轨迹的地图,以定义模拟参数之间的适当关系。测量曲率和迁移载体的测量显示(i)曲率和迁移偏移之间没有显着相关性,并且(ii)下游和横向迁移偏移的相关趋势与半曲率规模的曲率。所提出的反向迁移方法利用这些趋势来从当天(卫星或地震)数据观察到的序列的最后阶段开始河流可能的古轨迹。由于废弃的蜿蜒提供关于河流的古地点的线索,它们在反向仿真过程中逐步一步是累纳时间步骤。我们将该方法应用于河流系统的卫星图像。系统的每个不同的结果几何形状授予大多数可用的观察结果,并呈现与观察到的蜿蜒模式。 ]]>

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