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Capturing Plume Rise and Dispersion with a Coupled Large-Eddy Simulation: Case Study of a Prescribed Burn

机译:捕获羽流升高和分散与耦合的大涡模拟:对规定烧伤的情况研究

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Current understanding of the buoyant rise and subsequent dispersion of smoke due to wildfires has been limited by the complexity of interactions between fire behavior and atmospheric conditions, as well as the uncertainty in model evaluation data. To assess the feasibility of using numerical models to address this knowledge gap, we designed a large-eddy simulation of a real-life prescribed burn using a coupled semi-emperical fire–atmosphere model. We used observational data to evaluate the simulated smoke plume, as well as to identify sources of model biases. The results suggest that the rise and dispersion of fire emissions are reasonably captured by the model, subject to accurate surface thermal forcing and relatively steady atmospheric conditions. Overall, encouraging model performance and the high level of detail offered by simulated data may help inform future smoke plume modeling work, plume-rise parameterizations and field experiment designs.
机译:目前对由于野火引起的浮力升高和随后的烟雾分散的理解受到火灾行为与大气条件之间的相互作用的复杂性的限制,以及模型评估数据中的不确定性。为了评估使用数值模型来解决这一知识差距的可行性,我们设计了使用耦合的半垂直火灾 - 大气模型设计了实际规定的烧伤的大涡模拟。我们使用了观测数据来评估模拟的烟雾羽流,以及识别模型偏差的来源。结果表明,通过模型可合理地捕获火灾排放的上升和分散,受到精确的表面热迫使和相对稳定的大气条件。总体而言,令人鼓舞的模型性能和模拟数据提供的高水平细节可能有助于通知未来的烟雾羽毛建模工作,流量提高参数化和现场实验设计。

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