地球动力学

  • 网络geodynamics;dynamics;GGP
地球动力学地球动力学
  1. 台湾海峡及其两岸的地球动力学环境

    Geodynamics enviroment in the Taiwan Straits and its both coasts

  2. 安第斯山岩浆活动及大地构造环境:3.花岗岩及地球动力学过程;

    Andes magmatism and its tectonic setting ; 3 . Granites and geodynamics processes ;

  3. 利用GPS观测资料研究地球动力学问题是目前地学中的热点。

    Studying geodynamics by GPS measurement is a hotspots in earth science .

  4. GPS和地球动力学进展

    Progress in GPS and its geodynamics

  5. GPS应用于地球动力学研究的进展

    Recent Progress of GPS in Geodynamics

  6. GPS精密卫星定位技术在福建沿海及台湾海峡地球动力学特征应用研究中的进展

    The advance of exact satellite measure location technique ( GPS ) applied on geodynamical characteristics in Fujian province

  7. 福建沿海、台湾海峡GPS观测分析及地球动力学特征研究

    The observation and analysis of GPS and the study of the geodynamic characteristic of the coast of Fujian and Taiwan Strait

  8. 特别是近几十年以来的GPS技术引入测量学,使经典的测量技术很难解决的一些地球动力学测试问题成为现实。

    Some earth dynamics surveying problems which are difficult to be solved in the classic survey technique become possible to be solved .

  9. 本文系统地介绍了GPS应用于精密测地和天文地球动力学的基本模式、原理和误差。

    In this paper , the basic models , principle and error sources of GPS applied to precise geodesy and astro-geodynamics are introduced systematically .

  10. 变质作用的PTt轨迹、地球动力学过程和金矿化

    Pressure temperature time paths of regional metamorphism geodynamic process and gold mineralization

  11. CCA技术的研究及其在地球动力学中的应用

    Research on CCA technology and implements in geodynamics

  12. 根据GPS测量的速度计算地应变是地球动力学研究中非常有意义的一项工作,但计算时涉及数值微分,如何减小其计算误差是一个突出的问题。

    Computation of geo - strain by GPS data is significant in geodynamics . However , it involves digital differential and how to minimize the error is a prominent problem .

  13. 应用最新的海洋模式数据,研究了海水质量再分布对地球动力学扁率变化(δJ2)的影响。

    Based on the most recently global numerical ocean models , the effect of oceanic mass redistribution on the Earth 's oblateness variation is examined .

  14. 本文基于华北地区的地震地质调查结果,以及最近10年来的GPS观测结果,探讨了华北地区现今地球动力学机制。

    Based on the geological and seismic investigation results in North China , and the measurements of about 10 years GPS surveys , the mechanism of current North China geodynamics is discussed .

  15. 最后推荐了国际地球动力学GPS服务(IGS)的内容和产品,并对我国GPS综合服务系统提出了建议。

    The contents and products of International GPS Service for Geodynamics ( IGS ) are recommended . Besides the establishment for Chinese GPS comprehensive service system is proposed .

  16. IGS为GPS用户提供高质量、高效率的服务为GPS技术广泛应用于精密大地测量和地球动力学的研究提供了可靠的保证。

    IGS gives GPS client the high quality , high efficiency service and ensure the GPS technology reliably appling for research into accurate earth survey and earth dynamics .

  17. 鄂东南地区Cu-Au-Mo-(W)矿床的成矿时代及其成矿地球动力学背景探讨:辉钼矿Re-Os同位素年龄

    Metallogenic epoch and geodynamic framework of Cu-Au-Mo - ( W ) deposits in Southeastern Hubei Province : Constraints from Re-Os molybdenite ages

  18. 吉林东部岩浆Ni-Cu-(PGE)硫化物矿床地球动力学背景初探

    An approach to the tectonic settings of typical magmatic Ni-Cu - ( PGE ) sulfide deposits in eastern Jilin Province

  19. 结合GPS在地球动力学、卫星定位等方面的应用,重点讨理了GPS系统硬件及信号分析技术方面的突破以及目前所能达到的精度水平。

    Combining the application of GPS to the earth dynamics and the satellite positioning and others , a breakthrough of the hardware and the signal analysis of GPS and the attainable accuracy are discussed emphatically .

  20. 近年来,利用GPS观测技术研究全球及区域地壳运动和构造变形,探索地球动力学现象在全世界得到迅猛发展。

    Recently , the employing of GPS observing technique has gained rapid development in the area of studying the global and regional crustal movement and tectonic deformation , and in the exploring of the Geodynamic phenomena .

  21. 华北克拉通北缘岩浆Ni-Cu-(PGE)硫化物矿床地质特征、形成时代及其地球动力学背景

    Geological Characteristics , Geochronology and Tectonic Settings of Typical Magmatic Ni-Cu - ( PGE ) Sulfide Deposits in the Northern Margin of the North China Craton

  22. 本文简述了GPS测量技术,重点介绍了福建地壳形变GPS观测网利用GPS定位技术在地壳形变监测方面及其在地球动力学方面的应用,并取得了有重要意义的科学成果。

    In this paper , It was brief depicted about the measure technology of GPS , And it was stress introduced the applications and the importance meaning science fruit of crustal deformation and geodynamics to obtain for GPS Observation network of Fujian province .

  23. 地球动力学观测技术在西班牙Lanzarote火山预测中的应用研究

    Geodynamics Technique Applied in the Volcanic Forecast of Lanzarote Island in Spain

  24. 地壳应变场研究是地球动力学研究的一个基础性领域,以往文献的探索大多集中在地壳形变的测量和研究上,包括大面积水准测量和GPS观测等。

    Study on crustal strain field is a basic field in geodynamic researches . The researches in the field are mainly centralized in the survey and studies of the crustal deformation , including the leveling survey and GPS survey in a large area , etc.

  25. 讨论了InSAR与GPS等其它空间技术组合的可能性,提出了GPS/VLBI/SLR/InSAR组合的新设想,并详细讨论了该方法在地球动力学、现代地壳运动、地球体积和形状变化研究中的应用。

    A new notion of GPS / VLBI / SLR / InSAR combination is brought forward , its application to study of present day crust movement and changes of the earth 's bulk and figure are discussed as well .

  26. 中国、西班牙在莱斯诺德(LANZAROTE)岛的火山与地球动力学合作研究的首期结果

    The first results of cooperative research on volcano and geodynamics by China and Spain at Lanzarote

  27. Lanzarote火山与地球动力学实验场的地壳变形、地热流动态监测研究

    Dynamic observation and monitoring of crustal deformation and geothermal flow in the volcano and geodynamics Laboratory of Lanzarote

  28. 根据黄河小浪底地区的地球动力学环境,本文采用扩容一沟通(DL)模式,对小浪底水库诱发地震进行了分析和计算。

    Based on the geophysical dynamic environment of Xiaolangdi area , the analysis and calculation for the seismicity which can be induced by Xiaolangdi reservoir under plan on Yellow River were made by using the model Dilatancy-Link .

  29. 并讨论了在目前的天体测量新技术如甚长基线干涉仪(VLBI)、激光测卫(SLR)、激光测月(LLR)已成功地用于天文地球动力学的情况下,GPS发展的可能前景。

    Under the recent situation that new astronomical technigues , for example , Very Long Baseline Interferometry ( VLBI ), Satellite Laser Ranging ( SLR ) and Lunar Laser Ranging ( LLR ), are successfully applied to astro-geodynamics , the possible trends of GPS are discussed .

  30. VSOP还不适合于频繁改变观测对象,所以无法提供针对多个射电源的观测量,而这正是大地测量和地球动力学所需要的。

    Also , VSOP cannot frequently change observing object , hence it cannot supply more observations to many quasars , which are required for geodesy and geodynamics .