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Low-Level Jet observational study for the Brazilian Nuclear Reactor region

机译:巴西核反应堆区的低级喷射观测研究

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A doppler wind lidar was employed to investigate the features of the Low-Level Jet (LLJ) at Ipero, Sao Paulo State, Brazil. The Ipero Municipality already host a nuclear facility for uranium enrichment and a new plant, a nuclear reactor, is planned to be built there. The nuclear activities require a good understanding of atmospheric dispersion, as for normal operation conditions as for accidental emissions. The LLJ is a natural phenomenon that may occur within the Planetary Boundary Layer and plays an important role for the atmospheric dispersion. Knowing the LLJ characteristics is essential to evaluate the performances of the weather forecast models that are used as input for the atmospheric dispersion models. The field campaign results showed that the LLJs occur with high frequency at Ipero and that the Stable Boundary Layer (SBL) is shallow, which in turn is unfavored for pollutant dilution because all surface emissions remain confined within the SBL. The 2 weather forecast models evaluated didn't reproduce the LLJ, despite their high horizontal resolution. The numerical models also underestimated the wind speed. Both the LLJ and the wind speed are key parameters for dispersion simulations. As the weather forecast models diverge of the observational data, they must be better parameterized for provide reliable simulations before being adopted as input for any atmospheric dispersion models. The field campaign (planned to extend for 1 year) data are essential for the parameterization of the numerical models.
机译:使用多普勒风激光雷达,研究了巴西的IPero,圣保罗州的低级喷气机(LLJ)的特征。 IPero市已经举办了核心核设施,为铀浓缩和新工厂,核反应堆计划在那里建造。核动动活动需要对大气分散的良好理解,正常运行条件为偶然排放。 LLJ是一种自然现象,可以在行星边界层内发生,并对大气分散起着重要作用。了解LLJ特征对于评估用作大气分散模型的输入的天气预报模型的性能至关重要。现场运动结果表明,在IPero的高频下,LLJ在高频上发生,稳定的边界层(SBL)是浅的,因为污染物稀释时,由于所有表面排放仍然限制在SBL内。尽管其高水平分辨率,评估的2种评估的天气预报模型并未重现LLJ。数值模型也低估了风速。 LLJ和风速都是色散仿真的关键参数。随着天气预报模型的观察数据分歧,必须更好地参数化,以便在采用任何大气分散模型的输入之前提供可靠的模拟。现场活动(计划延长1年)数据对于数值模型的参数化至关重要。

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