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Towards a Redefinition of the National Geodetic Vertical Datum by the Integrated Geodesy Adjustment- A Viewpoint

机译:通过综合大地测量调整重新定义国家大地测量垂直基准的观点

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摘要

Determination of Mean Sea Level (MSL) as a vertical datum for orthometric heights is a vital requirement for the readjustment of the National Geodetic Levelling Network. The vertical datum is defined to be the geoid whereby it's practical realization was brought by tide gauge obervations at very few selected points e.g. ports. Geodetic levelling observation could use these tide gauges as fixed points.udUnfortunately, the so-called determined MSL differs significantly from the geoid due to local phenomena, such as sea surface topography, ocean currents, tides, etc.udThe solution leads to distortion in the levelling network or other height information.ududUsing integration approach of the Global Positioning System (GPS) data connected between tide gauges, satellite altimetry data on sea near the tide gauges, derivedudpotential differences (from levelling nets and gravity observations), gravity anomalies and the deflection of the vertical surrounding the tide gauges, the required reference surface could be precisely determined. From geodetic point of view, these data contribute to the vertical datum problem and is briefly presented inudthis paper by the expression of the associated parameters of the Integrated Geodesy Adjusment's Concept.
机译:确定平均海平面(MSL)作为垂直高度的垂直基准是重新调整国家大地测量水准网的重要要求。垂直基准被定义为大地水准面,通过它实际上是由潮汐仪观测到的极少数选定点(例如,端口。大地水准观测可以将这些潮汐仪用作固定点。 ud由于局部现象(例如海面地形,洋流,潮汐等),所谓的确定MSL与大地水准面有很大差异。 ud解决方案会导致变形 ud ud使用在潮汐仪之间连接的全球定位系统(GPS)数据的集成方法,潮汐仪附近海域的卫星测高仪数据,导出的电势差(来自水准仪网和重力观测) ),重力异常和潮汐计周围垂直方向的偏斜,可以精确确定所需的参考面。从大地测量的角度来看,这些数据对垂直基准问题有贡献,本文通过综合大地测量评估概念的相关参数表达来简要介绍。

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  • 作者单位
  • 年度 1992
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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