空间大地测量方法在罗马尼亚的应用

N. D. Mateciuc
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引用次数: 1

摘要

空间大地测量技术对近代地壳运动的研究已被纳入地壳动力学研究,反映了地壳和地壳下岩石圈中发生的复杂地球动力学现象。除了基本性质之外,该领域的研究还具有实用性,可以与地质学和地球物理学竞争,以形成新的能源或固体矿物物质,确定居住地区或大型工业目标和公用事业拟建地区的土壤稳定性。关于影响地球上地壳运动的知识,地震之前、伴随或之后的运动,也是一个热门话题。本文介绍了罗马尼亚开发的一些最重要的研究项目,这些项目都是基于空间大地测量方法获得的测量数据。本文介绍了在每个研究项目的框架内取得的一些最重要的成果,以及所使用的采集技术所施加的限制。按照时间顺序,首先在罗马尼亚进行GPS测量,始于1994年,以Dealul Piscului观测站为中心,随后罗马尼亚参与了一个区域地球动力学项目,CERGOP,最后是一个重大的国际项目,CRC461,也在2003年之后在代尔夫特大学(荷兰)的持续帮助下继续进行,该项目导致了罗马尼亚GPS永久站扩展网络的发展。所有这些都处于运行状态,其结果为地球动力学研究提供了宝贵的支持。本文简要介绍了有限元法在Vrancea扩展网络GPS子网中的首次应用,并给出了一些最重要的结果。近年来在全球范围内发生的与1977年3月4日罗马尼亚地震类似的强烈地震及其灾难性后果充分表明,需要了解这些类型的地壳运动,以便与其他方法一起有助于解决地震预报这一非常复杂的问题。
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APPLICATIONS OF SPACE GEODESY METHODS IN ROMANIA
The studies for Recent Crustal Movements by the aid of space geodesy techniques are integrated into the researches on the Earth’s crust dynamics, as a reflection of the complex geodynamic phenomena that occur in the crust and in the subcrustal lithosphere. In addition to the fundamental nature, the research in this field presents a practical characteristic, competing alongside geology and geophysics to the shaping of new energy sources or solid mineral substances, to the determination of the soil stability degree in inhabited areas or in those in which large industrial targets and utilities are intended to be placed in. The knowledge of movements affecting the Earth’s upper crust, movements that precede, accompany or follow the earthquakes, is also a topical issue. The paper presents some of the most important research projects developed in Romania, which were based on the measurement data obtained exclusively by space geodesy methods. There are presented some of the most significant results achieved in the framework of each research project together with the limitations imposed by the used acquisition technology. In chronological order are mentioned first GPS measurements in Romania, started in 1994, in a network centered on the Dealul Piscului observatory, followed by Romania's involvement in a regional geodynamic project, CERGOP and finally a major international project, CRC461, also continued after 2003 with the continuous help of the University of Delft (Nederland), a project that led to the development of an extended network of GPS permanent stations in Romania, all in operating status and whose results are a valuable support for the geodynamic studies. There are made brief references to the first application of the Finite Element Method in a GPS subnet from the Vrancea extended network together with some of the most important obtained results. The strong earthquakes with their catastrophic consequences, which have taken place in recent years on a global scale, similar to that of 4 March 1977 in Romania, have fully demonstrated the need for the knowledge of these types of crust movements in order to contribute, together with other methods, to solve the very complex problem of the earthquake forecasting.
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