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A discussion of height reductions for Zenith Hydrostatic Delays derived from weather models

机译:从天气模型得出的天顶静水延迟高度降低的讨论

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摘要

Accurate a priori Zenith Hydrostatic Delays (ZHDs) are required during the processing of space geodetic observations. The data provided by the European Centre for Medium-Range Weather Forecasts (ECMWF) are routinely processed and translated in terms of ZHDs by the Vienna University of Technology. The usual way to compute gridded ZHDs at a particular location is to correct the four nearest nodes of the grid for their difference in height with respect to the site height and to then interpolate these reduced values. This paper compares and discusses the performance achieved by five methods of reduction that have been proposed in the literature. The interpolated ZHD values are compared with the site-specific ones for a global network of 363 sites over a three-year period. The methods that only use vertical profiles of atmospheric pressure lead to annual signals that are correlated with ground temperature, while the methods that take temperature into account do not contain such annual signals. The reduction methods that use a constant temperature lead to errors of ~2 mm in terms of equivalent height. We also find that the a posteriori errors of the reduced gridded ZHDs are strongly correlated with the pressure over temperature ratio. We recommend that gridded ZHDs be reduced with the combination of both pressure and temperature when processing space geodetic observations.
机译:在空间大地观测的处理过程中,需要先验的真力时静水力延迟(ZHD)。欧洲中型天气预报中心(ECMWF)提供的数据由维也纳科技大学按ZHD的标准进行处理和翻译。计算特定位置处的网格化ZHD的通常方法是,针对网格的四个最近节点相对于站点高度的高度差异进行校正,然后对这些减小的值进行插值。本文比较并讨论了文献中提出的通过五种减少方法获得的性能。将插值的ZHD值与针对特定站点的ZHD值进行比较,以比较在三年期间内363个站点的全球网络。仅使用大气压垂直剖面的方法会导致与地面温度相关的年度信号,而将温度考虑在内的方法不包含此类年度信号。使用恒温的还原方法在等效高度方面导致〜2 mm的误差。我们还发现,减少的网格化ZHD的后验误差与压力与温度的比值密切相关。我们建议在处理空间大地观测时,同时使用压力和温度来降低网格化的ZHD。

著录项

  • 来源
    《Journal of applied geodesy》 |2011年第2期|p.71-80|共10页
  • 作者

    F. Fund; L. Morel; A. Mocquet;

  • 作者单位

    Laboratoire de Geomatique et de Geodesie (L2G) ESGT/CNAM 1 boulevard Pythagore 72000 Le Mans, France;

    Laboratoire de Geomatique et de Geodesie (L2G) ESGT/CNAM 1 boulevard Pythagore 72000 Le Mans, France;

    Universite de Nantes Nantes Atlantique Universite, CNRS Laboratoire de Planetologie et Geodynamique UMR 6112, UFR des Sciences et des Techniques 2 rue de la Houssiniere BP 92208, Nantes Cedex 3 F-44322, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    troposphere; zenith hydrostatic delays; iers conventions;

    机译:对流层天顶静水延迟;各项公约;

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