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本文通过对MSS和TM图像的分析与研究,结合其它地质资料,指出修水地区的金成矿主要受高湖-蕉溪岭断裂和幽居-船滩断裂控制,二者是郯-庐断裂带西侧一支在本区的散开部分。高湖-蕉溪岭断裂既控岩又控盆。本区金矿床、矿田的定位模式为控金断裂与北东东向断裂相交,发育与岩浆活动有关的环状构造,并有金源层分布的地段。与该定位模式相似的地段有7处。模式地段的构造条件提供有利的成矿环境,如存在其它矿源层(体),也可形成相应的金属矿产。在模式地段应用TM图像对含矿构造及蚀变进行研究,可有效地为找矿服务。 相似文献
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内蒙古大青山新地沟金矿地质特征、成矿条件及成矿规律 总被引:1,自引:0,他引:1
新地沟金矿是华北地台北缘大青山段绿岩型金矿的代表性矿床,矿体主要产于上太古界色尔腾山岩群绿片岩组合中的蚀变糜棱岩带中。矿石类型有:蚀变糜棱岩、千糜岩、石英脉等。主要蚀变为硅化、钾化、黄铁矿化、绢云母化。矿体与围岩糜棱面理产状基本一致,绿片岩为矿源层。影响成矿的主要因素是两期不同层次的韧性剪切变形变质作用和早期同构造侵位的晚太古代二长花岗岩。矿床形成是上述地质事件综合作用的产物。显生宙以来的花岗岩侵位对成矿影响不大,基底硬化后脆性断裂对矿体起破坏作用。 相似文献
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用矢量微分推导出光压摄动加速度对卫星位置矢量的偏导数公式,并用数值微分方法检验了公式的正确性。 相似文献
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GLONASS precise point positioning (PPP) performance is affected by the inter-frequency biases (IFBs) due to the application of frequency division multiple access technique. In this contribution, the impact of GLONASS pseudorange IFBs on convergence performance and positioning accuracy of GLONASS-only and GPS + GLONASS PPP based on undifferenced and uncombined observation models is investigated. Through a re-parameterization process, the following four pseudorange IFB handling schemes were proposed: neglecting IFBs, modeling IFBs as a linear or quadratic polynomial function of frequency number, and estimating IFBs for each GLONASS satellite. One week of GNSS observation data from 132 International GNSS Service stations was selected to investigate the contribution of simultaneous estimation of GLONASS pseudorange IFBs on GLONASS-only and combined GPS + GLONASS PPP in both static and kinematic modes. The results show that considering IFBs can speed up the convergence of PPP using GLONASS observations by more than 20%. Apart from GLONASS-only kinematic PPP, the positioning accuracy of GLONASS-only and GPS + GLONASS PPP is comparable among the four schemes. Overall, the scheme of estimating IFBs for each GLONASS satellite outperforms the other schemes in both convergence time reduction and positioning accuracy improvement, which indicates that the GLONASS IFBs may not strictly obey a linear or quadratic function relationship with the frequency number. 相似文献
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High precision orbit determination of CHAMP satellite 总被引:2,自引:0,他引:2
ZHAO Qile LIU Jingnan GE Maorong 《地球空间信息科学学报》2006,9(3):180-186
IntroductionCHAMP satellite was launched on July 15 ,2000 to study the earth gravity field, magneticfield, and at mosphere/ionosphere . CHAMPmission is managed by GeoForshungsZentrum(GFZ) Potsdam withinternational partners .In-cluding accelerometer ,star … 相似文献
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基于非差观测的网络实时动态定位(RTK)方法通过提供每颗卫星的误差改正量,使网内用户获得与网络RTK方法等价的快速精密单点定位服务。当用户跨越连续运行基准站(CORS)网内由不同参考站组成的子网(参考子网)甚至跨越不同CORS网时,都能有效避免因所选取的主参考站变化而引起的模糊度重新初始化,从而保持观测时段内用户定位结果的连续可靠和跨CORS网服务时算法上的无缝衔接。通过对海上实测动态数据处理结果的分析,验证该方法的定位精度、初始化时间与现有网络RTK方法在量级上的一致性,以及跨不同参考子网和CORS网时实现无缝衔接的有效性。 相似文献
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Real-time precise point positioning regional augmentation for large GPS reference networks 总被引:6,自引:1,他引:5
An increasing number of GNSS reference stations are installed around the world to provide real-time precise positioning services. In most of the current services, a full network solution is required for the precise determination of biases. Such a network solution is time consuming and difficult to achieve for very large regions such as Europe or China. Therefore, we developed a multi-layer processing scheme for precise point positioning (PPP) regional augmentation to avoid processing large networks. Furthermore, we use L1 and L2 raw observations and estimate atmospheric delays, which were properly constrained to the atmospheric corrections derived from the reference stations. Therefore, inaccurate representation of atmospheric delays due to temporal and/or spatial atmospheric fluctuations in the processing can be compensated. The proposed scheme of PPP regional augmentation was implemented into the operational real-time PPP service system at GFZ for validation. The real-time orbit and clock corrections, the uncalibrated phase delays, and regional augmentation corrections are generated by this system. The augmentation corrections from the regional network are investigated and the positioning performance in terms of positioning accuracy and time for fixed solution is demonstrated in real-time. Our results indicate that a reliable fixing is possible after 5 s on average. The positioning accuracy is about 12, 10, and 25 mm in east, north, and vertical direction, respectively. 相似文献