论文标题

永久潮汐和国际高度参考框架IHRF

The permanent tide and the International Height Reference Frame IHRF

论文作者

Mäkinen, Jaakko

论文摘要

IAG在2015年通过的国际高度参考系统(IHR)包含两个新颖性。首先,采用平均潮汐系统来处理永久性潮汐。其次,高度系统的参考水平由等电位表面定义,该等电位表面具有传统值W0 = 62636853.4 m2s-2。该值首先在经验上确定,以提供与全球平均海平面的良好近似值,然后通过约定作为参考值。我根据W0分析参考水平的潮汐方面。根据定义,W0与等电位表面采用的潮汐系统无关,但是对于不同的潮汐系统,方程W = W0的W的W涉及不同的功能。我发现,从潮汐系统的角度来看,所采用估计W0的经验确定是不一致的。但是,采用的估计和一致的估计值从相同的数据圆满到相同的值。我提出了对IHRF地理电位数字的简化定义,该定义将使使用简单的基准划分表面在IHRF和零潮中的地理电位数字之间进行转换。 IHRF应采用常规(最佳)对永久潮汐潜力的估计,例如IERS公约中包含的常规潮汐潜力,并将其用作其他常规公式的基础。 ITRF的无潮汐坐标,无潮汐全局地势模型在IHRF目的的地势建模中至关重要。我提出了一组校正公式,该公式可用于在处理之前,中间或之后,最后到均值IHRF移动到零晶模型。为了减少多种潮汐系统的混淆,我建议建模应主要在零潮中的系统中进行,并具有均值的潜力作为附加组件。

The International Height Reference System (IHRS) adopted by the IAG in 2015 contains two novelties. First, the mean-tide system is adopted for handling the permanent tide. Second, the reference level of height system is defined by the equipotential surface where the geopotential has a conventional value W0=62636853.4 m2s-2. This value was first determined empirically to provide a good approximation to the global mean sea level and then adopted as a reference value by convention. I analyse the tidal aspects of the reference level based on W0. The W0 is by definition independent of the tidal system adopted for the equipotential surface, but for different tidal systems, different functions are involved in the W of the equation W=W0. I find that the empirical determination of the adopted estimate W0 is inconsistent from the viewpoint of tidal systems. However, the adopted estimate and the consistent estimate from the same data round off to the same value. I propose a simplified definition of IHRF geopotential numbers that would make it possible to transform between IHRF and zero-tide geopotential numbers using a simple datum-difference surface. IHRF should adopt a conventional (best) estimate of the permanent tidal potential such as is contained in the IERS Conventions and use it as a basis for other conventional formulas. The tide-free coordinates of the ITRF, and tide-free Global Geopotential Models are central in the modelling of geopotential for the purposes of the IHRF. I present a set of correction formulas that can be used to move to the zero-tide model before, in the middle, or after the processing, and finally to the mean-tide IHRF. To reduce the confusion around the multitude of tidal systems I propose that modelling should primarily done in the zero-tide system, with the mean-tide potential as an add-on.

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