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从地球重力数据推导看地球内部构造
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作者 杨明应 《贵州地质》 1998年第3期226-228,共3页
在此之前,人们对地球内部构造的观点是:“地球的内部具有层圈构造,从地表向地心,密度和压力都不断增大,而且在地心最大”。笔者根据万有引力定律和大量推算,认为这种构造模式不合理,而且自相矛盾。于此提出了一种新的层圈构造模... 在此之前,人们对地球内部构造的观点是:“地球的内部具有层圈构造,从地表向地心,密度和压力都不断增大,而且在地心最大”。笔者根据万有引力定律和大量推算,认为这种构造模式不合理,而且自相矛盾。于此提出了一种新的层圈构造模式:“地球从地表到地心,其间有一个高密度和高压力层,近地心的密度和压力都与地表很相近,可能比地表还小”。 展开更多
关键词 地球内部构造 地壳 地幔 地核 地球重力数据
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On simulation of precise orbit determination of HY-2 with centimeter precision based on satellite-borne GPS technique 被引量:4
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作者 郭金运 秦建 +1 位作者 孔巧丽 李国伟 《Applied Geophysics》 SCIE CSCD 2012年第1期95-107,117,共14页
The HY-2 satellite carrying a satellite-borne GPS receiver is the first Chinese radar altimeter satellite, whose radial orbit determination precision must reach the centimeter level. Now HY-2 is in the test phase so t... The HY-2 satellite carrying a satellite-borne GPS receiver is the first Chinese radar altimeter satellite, whose radial orbit determination precision must reach the centimeter level. Now HY-2 is in the test phase so that the observations are not openly released. In order to study the precise orbit determination precision and procedure for HY-2 based on the satellite- borne GPS technique, the satellite-borne GPS data are simulated in this paper. The HY-2 satellite-borne GPS antenna can receive at least seven GPS satellites each epoch, which can validate the GPS receiver and antenna design. What's more, the precise orbit determination processing flow is given and precise orbit determination experiments are conducted using the HY-2-borne GPS data with both the reduced-dynamic method and the kinematic geometry method. With the 1 and 3 mm phase data random errors, the radial orbit determination precision can achieve the centimeter level using these two methods and the kinematic orbit accuracy is slightly lower than that of the reduced-dynamic orbit. The earth gravity field model is an important factor which seriously affects the precise orbit determination of altimeter satellites. The reduced-dynamic orbit determination experiments are made with different earth gravity field models, such as EIGEN2, EGM96, TEG4, and GEMT3. Using a large number of high precision satellite-bome GPS data, the HY-2 precise orbit determination can reach the centimeter level with commonly used earth gravity field models up to above 50 degrees and orders. 展开更多
关键词 HY-2 satellite satellite-borne GPS technique precise orbit determination reduced-dynamic method kinematic geometry method
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大地测量专家沈云中教授
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作者 Deaprtment of Surveying and Geo-Information Tongji University 《测绘工程》 CSCD 2003年第4期61-62,共2页
关键词 大地测量 工程测量 数据处理 数据精化地球重力 GPS
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