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Towards the forecast of atmospheric parameters and optical turbulence above an astronomical site on 24h time scale

机译:在24小时时标上对天文学站点上方的大气参数和光学湍流的预测

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Forecast of the atmospheric parameters and optical turbulence applied to the ground-based astronomy is very crucial mainly for the queue scheduling. So far, most efforts have been addressed by our group in developing algorithms for the optical turbulence (C_N~2 ) and annexed integrated astroclimatic parameters and quantifying the performances of the Astro-Meso-Nh package in reconstructing such parameters. Besides, intensive analyses on the Meso-Nh perfonnances= in reconstructing atmospheric parameters relevant for the ground-based astronomy has been carried out. Our studies referred always to the night time regime. To extend the applications of our studies to the day time regime, we present, in this contribution, preliminary results obtained by comparing model outputs and measurements of classical atmospheric parameter relevant for the ground-based astronomy in night and day time. We chose as a test case, the Roque de los Muchachos Observatory (Canary Islands), that offers a very extended set of measurements provided by different sensors belonging to different telescopes on the same summit/Observatory. The convective regime close to the ground typical of the day time is pretty different from the stable regime characterising the night time. This study aims therefore to enlarge the domain of validity of the Astro-Meso-Nh code to new turbulence regimes and it permits to cover the total 21 hours of a day. Such an approach will permit not only an application to solar telescopes (e.g. EST) but also applications to a much extended set of scientific fields, not only in astronomical context such as satellite communications.
机译:大气参数和光学湍流的预测对地面天文学的应用非常重要,这主要对队列调度非常重要。到目前为止,我们的小组已致力于开发光学湍流(C_N〜2)的算法,并附加了综合的气象参数,并对Astro-Meso-Nh软件包在重建此类参数方面的性能进行了量化。此外,在重建与地面天文学有关的大气参数方面,还对中,Nh性能进行了深入分析。我们的研究始终提到夜间制度。为了将我们的研究应用扩展到白天模式,我们在此贡献中提供了通过比较模型输出和夜间和白天与地面天文学相关的经典大气参数的测量结果而获得的初步结果。我们选择了Roque de los Muchachos天文台(加那利群岛)作为测试用例,该天文台提供了一组扩展的测量值,这些测量值是由同一顶峰/天文台的不同望远镜中的不同传感器提供的。白天典型的接近地面的对流方式与夜间的稳定方式大不相同。因此,本研究旨在将Astro-Meso-Nh码的有效性范围扩大到新的湍流状态,并允许覆盖一天的总时间21个小时。这种方法不仅将允许应用于太阳望远镜(例如,EST),而且还允许应用于扩展得多的科学领域,不仅在诸如卫星通信之类的天文环境中。

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