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Comparison of atmospheric transport calculation over complex terrain using a mobile profiling system and rawinsondes

机译:使用移动分析系统和Rawinsondes比较复杂地形上的大气传输计算

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A comparison of atmospheric transport and dispersion calculations over complex terrain was investigated using a mobile profiling system (MPS) versus standard meteorological balloons. Meteorological and sulfur hexafluoride (SF_6) concentration data were collected and used to evaluate the performance of a transport and diffusion model coupled with a mass consistency wind field model. Meteorological data were collected throughout April 1995, and parts of August 1995. Both meteorological and concentration data were measured in December 1995. Once the model were validated, the comparison of performance with different upper-air data were accomplished. The models used included the SCIPUFF (Second-order Closure Integrated Puff) transport and diffusion model and the MINERVE mass consistency wind model. Evaluation of the models was focused primarily on their effectiveness as a short-term (one to four hours) predictive tool. These studies showed how the combination of weather and transport models could be used to help direct emergency response following a hazardous material release. The models were used in tandem to direct the deployment of mobile sensors intended to intercept and measure tracer clouds. The MINERVE model was validated for the specific terrain of interest using April 1995 data. The capability of SCIPUFF driven by realistic three-dimensional wind fields generated by MINERVE is demonstrated using data collected in December 1995.
机译:使用移动轮廓分析系统(MPS)与标准气象气球比较了在复杂地形上的大气传输和扩散计算的比较。收集了气象和六氟化硫(SF_6)浓度数据,并将其用于评估运输和扩散模型以及质量一致性风场模型的性能。 1995年4月和1995年8月的部分时间收集了气象数据。1995年12月对气象数据和浓度数据进行了测量。模型经过验证后,便完成了与不同高空数据的性能比较。使用的模型包括SCIPUFF(二阶封闭积分吹法)运输和扩散模型以及MINERVE质量一致性风模型。对模型的评估主要集中在其作为短期(一到四个小时)预测工具的有效性上。这些研究表明,如何结合使用天气和运输模型来指导有害物质释放后的应急响应。串联使用这些模型来指导旨在拦截和测量示踪剂云的移动传感器的部署。使用1995年4月的数据对MINERVE模型进行了特定感兴趣地形的验证。利用1995年12月收集的数据证明了MINERVE产生的逼真的三维风场驱动SCIPUFF的能力。

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