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Fire behaviour and smoke modelling: model improvement and measurement needs for next-generation smoke research and forecasting systems

机译:火灾行为和烟雾建模:下一代烟雾研究和预测系统的模型改进和测量需求

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摘要

There is an urgent need for next-generation smoke research and forecasting (SRF) systems to meet the challenges of the growing air quality, health and safety concerns associated with wildland fire emissions. This review paper presents simulations and experiments of hypothetical prescribed burns with a suite of selected fire behaviour and smoke models and identifies major issues for model improvement and the most critical observational needs. The results are used to understand the new and improved capability required for the next-generation SRF systems and to support the design of the Fire and Smoke Model Evaluation Experiment (FASMEE) and other field campaigns. The next-generation SRF systems should have more coupling of fire, smoke and atmospheric processes. The development of the coupling capability requires comprehensive and spatially and temporally integrated measurements across the various disciplines to characterise flame and energy structure (e.g. individual cells, vertical heat profile and the height of well-mixing flaming gases), smoke structure (vertical distributions and multiple subplumes), ambient air processes (smoke eddy, entrainment and radiative effects of smoke aerosols) and fire emissions (for different fuel types and combustion conditions from flaming to residual smouldering), as well as night-time processes (smoke drainage and super-fog formation).
机译:迫切需要下一代烟雾研究和预测(SRF)系统,以应对与野外消防排放相关的不断增长的空气质量,健康和安全问题的挑战。本综述纸张介绍了假设规定烧伤的模拟和实验,套件选定的火灾行为和烟雾模型,并确定了模型改进和最关键的观测需求的主要问题。结果用于了解下一代SRF系统所需的新功能和改进的能力,并支持火灾和烟雾模型评估实验(FASMEE)和其他场竞选方面的设计。下一代SRF系统应具有更大的火,烟雾和大气过程的耦合。耦合能力的开发需要跨各种学科的全面和空间和时间集成测量,以表征火焰和能量结构(例如单个细胞,垂直热曲线和良好混合火焰气体的高度),烟雾结构(垂直分布和多个潜艇),环境空气过程(烟雾涡流,烟雾气溶胶夹带和辐射效果)和火灾排放(用于不同的燃料类型和燃烧条件,从燃烧到残余闷烧),以及夜间过程(烟雾排水和超雾形成)。

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