Determination of radii of curvature for high resolution geoid models using the harmonic synthesis algorithm

Q4 Computer Science
Raaed Mohamed Kamel Hassouna
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引用次数: 0

Abstract

Different types of radii of curvature were assessed for the geoid based on the GECO geopotential model, up to degree and order 2190. The route values of gravity and the three horizontal gravity gradients were computed based on such geopotential model and the angular velocity of the Earth. The investigation was performed on coarse global grids and finer grids covering the Egyptian territory. Respective latitudinal and longitudinal profiles for the geoidal radii were extracted. Comparisons were held with the radii of curvature on the WGS-84 ellipsoid, and with the geoidal radii derived from other models of lower resolutions. Unlike the ellipsoid, the values of the geoidal radii exhibited a rather irregular behaviour that is far from any geographical symmetry. The principal radii of the geoid do not generally occur along the meridian and prime-vertical directions. Such irregularities were found to be more exaggerated with higher degrees. At all investigated resolution levels, the signs of the principal radii assured the convexity of the geoid surface. This enabled to define, compute and compare the Gaussian mean radii for the geoid. The local residual geoidal radii showed a decaying spectral tendency. Also, the results implied that the utilized algorithm proved to be convergent. 
用调和合成算法确定高分辨率大地水准面模型的曲率半径
基于GECO位势模型评估了大地水准面的不同类型的曲率半径,最高可达2190度和2190阶。基于这种位势模型和地球角速度计算了重力路径值和三个水平重力梯度。调查是在覆盖埃及领土的粗略全球网格和精细网格上进行的。提取了大地水准面半径的纬度和经度剖面。与WGS-84椭球上的曲率半径以及其他分辨率较低的模型得出的大地水准面半径进行了比较。与椭球体不同,大地水准面半径的值表现出相当不规则的行为,与任何地理对称性相去甚远。大地水准面的主要半径通常不沿子午线和主垂直方向出现。研究发现,这种不规则性随着程度的增加而更加夸张。在所有研究的分辨率水平上,主半径的符号保证了大地水准面的凸性。这样可以定义、计算和比较大地水准面的高斯平均半径。局部残余大地水准面半径呈现衰减的光谱趋势。结果还表明,所使用的算法是收敛的。
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来源期刊
测绘地理信息
测绘地理信息 Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
0.20
自引率
0.00%
发文量
4458
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