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Computational modeling of extreme wildland fire events: A synthesis of scientific understanding with applications to forecasting, land management, and firefighter safety

机译:极端荒地火灾事件的计算建模:对预测,土地管理和消防员安全的应用综合

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摘要

The understanding and prediction of large wildland fire events around the world is a growing interdisciplinary research area advanced rapidly by development and use of computational models. Recent models bidirectionally couple computational fluid dynamics models including weather prediction models with modules containing algorithms representing fire spread and heat release, simulating fire-atmosphere interactions across scales spanning three orders of magnitude. Integrated with weather data and airborne and satellite remote sensing data on wildland fuels and active fire detection, modern coupled weather-fire modeling systems are being used to solve current science problems. Compared to legacy tools, these dynamic computational modeling systems increase cost and complexity but have produced breakthrough insights notably into the mechanisms underlying extreme wildfire events such as fine-scale extreme winds associated with interruptions of the electricity grid and have been configured to forecast a fire's growth, expanding our ability to anticipate how they will unfold. We synthesize case studies of recent extreme events, expanding applications, and the challenges and limitations in our remote sensing systems, fire prediction tools, and meteorological models that add to wildfires' mystery and apparent unpredictability.
机译:世界各地的大型野外火灾事件的理解和预测是跨学科研究领域的发展,通过开发和使用计算模型。最近模型双向耦合的计算流体动力学模型,包括天气预报模型,其中包含算法的模块,该模块代表着火和热释放的算法,模拟跨越三个数量级的鳞片的火灾气氛相互作用。与天气数据和空气传播和卫星遥感数据集成在野外燃料和主动火灾探测,现代耦合天气灭火模型系统正在用于解决当前的科学问题。与遗留工具相比,这些动态计算建模系统增加了成本和复杂性,但显着地产生了突破性的洞察力,以获得极端野火事件(如与电网中断相关的微量野风事件)的机制,并且已被配置为预测火灾的增长,扩大我们预测他们如何展开的能力。我们综合了对最近的极端事件,扩展应用以及遥感系统,消防预测工具和气象模型的挑战和限制的案例研究,这些模型增加了野火的神秘和明显的不可预测性。

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