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Some Requirements for Simulating Wildland Fire Behavior Using Insight from Coupled Weathera??Wildland Fire Models

机译:使用结合的Weathera?Wildland Fire模型的洞察力来模拟Wildland Fire行为的一些要求

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A newer generation of models that interactively couple the atmosphere with fire behavior have shown an increased potential to understand and predict complex, rapidly changing fire behavior. This is possible if they capture intricate, time-varying microscale airflows in mountainous terrain and fire-atmosphere feedbacks. However, this benefit is counterbalanced by additional limitations and requirements, many arising from the atmospheric model upon which they are built. The degree to which their potential is realized depends on how coupled models are built, configured, and applied. Because these are freely available to users with widely ranging backgrounds, I present some limitations and requirements that must be understood and addressed to achieve meaningful fire behavior simulation results. These include how numerical weather prediction models are formulated for specific scales, their solution methods and numerical approximations, optimal model configurations for common scenarios, and how these factors impact reproduction of fire events and phenomena. I discuss methods used to adjust inadequate outcomes and advise on critical interpretation of fire modeling results, such as where errors from model limitations may be misinterpreted as natural unpredictability. I discuss impacts on other weather model-based applications that affect understanding of fire behavior and effects.
机译:将大气层与火灾行为交互耦合的新一代模型显示出了增强的理解和预测复杂,迅速变化的火灾行为的潜力。如果他们能够捕获山区地形中复杂的,随时间变化的微尺度气流和火气反馈,则有可能实现。但是,此好处被其他限制和要求所抵消,其他限制和要求很多是由建立它们的大气模型引起的。实现其潜力的程度取决于如何建立,配置和应用耦合模型。由于这些内容可供具有广泛背景的用户免费使用,因此我提出了一些局限性和要求,必须理解和解决这些局限性和要求,才能获得有意义的火灾行为模拟结果。其中包括如何针对特定比例制定数值天气预报模型,其求解方法和数值逼近,针对常见场景的最佳模型配置,以及这些因素如何影响火灾事件和现象的再现。我讨论了用于调整结果不足的方法,并就火灾建模结果的严格解释提供了建议,例如,模型限制的错误可能被误解为自然不可预测性。我讨论了对其他基于天气模型的应用程序的影响,这些应用程序会影响人们对火灾行为和后果的理解。

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