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首页> 外文期刊>Boundary-layer Meteorology >Using a Sodar to Measure Optical Turbulence and Wind Speed for the Thirty Meter Telescope Site Testing. Part I: Reproducibility
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Using a Sodar to Measure Optical Turbulence and Wind Speed for the Thirty Meter Telescope Site Testing. Part I: Reproducibility

机译:在三十米望远镜现场测试中,使用声dar测量光学湍流和风速。第一部分:再现性

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In this two-part study, we investigate the usefulness of Sodars as part of a large instrument suite for the study of high mountains in the site selection process of the Thirty Meter Telescope (TMT). In this first part, we describe the reproducibilityof the measurements and the comparability of results from different sites for data taken with two complementary Sodar models: the XFAS and SFAS models manufactured by Scintec Inc. To this end, a cross-calibration campaign was conducted on two of the sites comparing both the wind speeds and the optical turbulence measurements of the different units. The specific set-up conditions and the low atmospheric pressure require us to make a compromise between the amount of data available for statistics and the quality of the data. For the comparison of the wind speed, results from the same models show a systematic difference of 12 and 9% for the XFAS and SFAS, respectively. The scatter between individual measurements, which includes instrumental, set-up and statistical fluctuation contributions, was found to be 21 and 23%. For optical turbulence, the respective values are 6 and 3% for the systematic difference and 46 and 46 and 67% for the scatter. These results show that Sodars can be useful tools for astronomical site testing for projects such as the TMT.
机译:在这个由两部分组成的研究中,我们调查了三十波望远镜(TMT)的选址过程中,将Sodars作为大型仪器套件的一部分对高山进行研究的有用性。在第一部分中,我们描述了测量的可重复性以及使用两个互补的Sodar模型(由Scintec Inc.制造的XFAS和SFAS模型)所获得的数据在不同地点的结果的可比性。为此,我们开展了一项交叉校准活动两个站点比较了不同单元的风速和光学湍流测量结果。具体的设置条件和低气压要求我们在可用于统计的数据量和数据质量之间做出折衷。为了比较风速,相同模型的结果显示XFAS和SFAS的系统差异分别为12%和9%。各个测量之间的分散程度分别为21%和23%,其中包括仪器,设置和统计波动贡献。对于光学湍流,系统差分别为6%和3%,散射值分别为46%和46%和67%。这些结果表明,Sodars是用于TMT等项目的天文站点测试的有用工具。

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