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Rapid-response tools and datasets for post-fire remediation: linking remote sensing and process-based hydrological models

机译:火灾后补救的快速响应工具和数据集:链接遥感和基于过程的水文模型

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摘要

Post-wildfire flooding and erosion can threaten lives, property and natural resources. Increased peak flows and sediment delivery due to the loss of surface vegetation cover and fire-induced changes in soil properties are of great concern to public safety. Burn severity maps derived from remote sensing data reflect fire-induced changes in vegetative cover and soil properties. Slope, soils, land cover and climate are also important factors that require consideration. Many modelling tools and datasets have been developed to assist remediation teams, but process-based and spatially explicit models are currently underutilised compared with simpler, lumped models because they are difficult to set up and require properly formatted spatial inputs. To facilitate the use of models in conjunction with remote sensing observations, we developed an online spatial database that rapidly generates properly formatted modelling datasets modified by user-supplied soil burn severity maps. Although assembling spatial model inputs can be both challenging and time-consuming, the methods we developed to rapidly update these inputs in response to a natural disaster are both simple and repeatable. Automating the creation of model inputs facilitates the wider use of more accurate, process-based models for spatially explicit predictions of post-fire erosion and runoff.
机译:野火后的洪水和侵蚀会威胁生命,财产和自然资源。由于地表植被覆盖的丧失以及火灾引起的土壤性质的变化,导致峰值流量和沉积物输送量增加,这是公共安全的重要问题。从遥感数据得出的烧伤严重程度图反映了火灾引起的植被覆盖率和土壤特性的变化。坡度,土壤,土地覆盖和气候也是需要考虑的重要因素。已经开发了许多建模工具和数据集来协助补救团队,但是与基于简单过程的集总模型相比,基于过程的空间明确模型目前未得到充分利用,因为它们难以设置且需要正确格式化的空间输入。为了促进将模型与遥感观测结合使用,我们开发了一个在线空间数据库,该数据库可以快速生成通过用户提供的土壤烧伤严重性图修改的格式正确的建模数据集。尽管组装空间模型输入既具有挑战性又耗时,但是我们开发的用于响应自然灾害快速更新这些输入的方法既简单又可重复。自动创建模型输入可以促进更准确地使用基于过程的模型来更广泛地用于火灾后侵蚀和径流的空间显式预测。

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