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Channel network scaling laws in submarine basins

机译:海底盆地的渠道网络缩放定律

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摘要

Fluvial drainage basin area is often related to channel length and local slope through power law relationships and the relatively small range of exponents observed in these relationships is thought to result from physical mechanisms. Proposed mechanisms assume that the observed correlation between drainage area and fluid discharge is caused by precipitation. Using high resolution DEMs of channelized continental slope settings offshore Monterey, CA and Brunei Darussalam we extracted submarine channel profiles and drainage area statistics from five basins. In-situ and remote observations suggest discharge in these oceanic settings is determined by boundary conditions at the shelf-edge. In spite of substantial differences in environment and physical process, the data yield submarine scaling exponents within the range of terrestrial ( fluvial) observations. The convergence in scaling relationships from two very different settings supports theoretical arguments that channel network structure results from the aggregation of random walks.
机译:河流流域面积通常通过幂律关系与河道长度和局部坡度有关,并且据认为在这些关系中观察到的相对较小范围的指数是由于物理机制引起的。拟议的机制假设流域面积和排液量之间的相关性是由降水引起的。使用加利福尼亚州蒙特雷和文莱达鲁萨兰国近海的通道化大陆坡设置的高分辨率DEM,我们从五个盆地中提取了海底通道剖面和流域面积统计数据。实地和远程观测表明,在这些海洋环境中的排放量取决于架子边缘的边界条件。尽管环境和物理过程存在实质性差异,但数据仍会在海底(河流)观测范围内得出海底尺度指数。来自两个截然不同的设置的缩放比例关系的收敛支持理论论点,即信道网络结构是由随机游走的聚集产生的。

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