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Channel networks within lava flows: Formation, evolution, and implications for flow behavior

机译:熔岩流中的渠道网络:形成,演化及其对流动行为的影响

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New high-resolution maps of Hawaiian lava flows highlight complex topographically controlled channel networks. Network geometries range from distributary systems dominated by branching around local obstacles, to tributary systems constricted by topography. We combine 2-D network analysis tools developed for river systems and neural networks with 3-D lidar morphologic analysis and historical records of flow emplacement to investigate both the origins of channel networks and their influence on flow morphology and behavior. We find that network complexity is a function of underlying slope and that the degree of flow branching, network connectivity, and longevity of individual channels all influence the final flow morphology (flow and channel widths and levee heights). Furthermore, because channel networks govern the distribution of lava supply within a flow, changes in the channel topology can dramatically alter the effective volumetric flux in any one branch, which affects both flow length and advance rate. Specifically, branching will slow and shorten flows, while merging can accelerate and lengthen them. Consideration of channel networks is thus important for predicting lava flow behavior and mitigating flow hazards with diversion barriers. Observed relationships between network geometry, flow parameters, and morphology also offer insight into the interpretation of these features elsewhere on Earth and other terrestrial planets.
机译:夏威夷熔岩流的新高分辨率地图突显了复杂的地形控制通道网络。网络的几何形状范围从以局部障碍物为主的支配系统到受地形限制的支流系统。我们将为河流系统和神经网络开发的2-D网络分析工具与3-D激光雷达形态学分析和流量位置历史记录相结合,以研究渠道网络的起源及其对流量形态和行为的影响。我们发现网络的复杂性是基础坡度的函数,流分支的程度,网络连通性以及单个通道的寿命都会影响最终的流形态(流和通道宽度以及堤坝高度)。此外,由于渠道网络支配着熔岩流的分布,因此渠道拓扑结构的变化会极大地改变任一分支中的有效体积通量,从而影响流量长度和推进速度。具体来说,分支将减缓和缩短流量,而合并则可以加速和延长流量。因此,对通道网络的考虑对于预测熔岩流行为和减轻带导流屏障的流动危害非常重要。观察到的网络几何形状,流量参数和形态之间的关系也为洞悉地球和其他地球行星上这些特征的解释提供了见识。

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