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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小时刻度上向天文场上的大气参数和光学湍流预测

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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~2_N) 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 performances=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 24 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:施加到地面天文学的大气参数和光学湍流的预测主要是用于排队调度的至关重要。到目前为止,我们的小组在开发光学湍流(C〜2_N)和附加的综合星形表达参数中的开发算法以及量化了在重建这些参数时的性能的算法,以及量化的大多数努力。概述了Astro-Meso-NH封装的性能。此外,已经进行了Meso-NH性能的强化分析=重建与地面天文学相关的大气参数。我们的研究总是提到夜间制度。为了将研究的应用扩展到日期制度,我们在本贡献中,通过比较夜间和白天时间与地面天文学相关的古典大气参数的模型输出和测量来获得的初步结果。我们选择了作为一个测试案例,Roque de Los Moderachos天文台(加那利群岛),它提供了由不同望远镜上的不同望远镜的不同传感器提供的一组非常扩展的测量系列。与日期典型的典型地面接近地面的对流制度与夜间表征的稳定制度相差。因此,本研究旨在扩大Astro-Meso-NH码的有效性到新的湍流制度,并且它允许覆盖每天24小时的总量。这种方法不仅允许应用于太阳望远镜(例如EST),而且还允许应用于大量扩展的科学领域,而不仅仅是在卫星通信等天文背景中。

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