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1.
In the article the author looks back the hard development course and great progress in earth quake science and technology in China during the last near a half of century and expounds the following 3 aspects: (1) The strong desire of the whole society to mitigate seismic disasters and reduce the effect of earthquakes on social-economic live is a great driving force to push forward the development of earthquake science and technology in China; (2) To better ensure people‘ s life and property, sustainable economic development, and social stability is an essential purpose to drive the development of earthquake science and technology in China; and (3) To insist on the dialectical connection of setup of technical system for seismic monitoring with the scientific research of earthquakes and to better handle the relation between crucial task, current scientif ic level, and the feasibility are the important principles to advance the earthquake science and technology in China. Some success and many setbacks in earthquake disaster mitigation consistently enrich our knowledge regarding the complexity of the conditions for earthquake occurrence and the process of earthquake preparation, promote the reconstruction and modernization of technical system for earthquake monitoring, and deepen the scientific research of earthquakes. During the last 5 years, the improvement and modernization of technical system for earthquake monitoring have clearly provided the technical support to study and practice of earthquake prediction and pre caution, give prominence to key problems and broaden the field of scientific research of earth quakes. These have enabled us to get some new recognition of the conditions for earthquake oc currence and process of earthquake preparation, characteristics of seismic disaster, and mecha nism for earthquake generation in China‘s continent. The progress we have made not only en courages us to enhance the effectiveness of earthquake disaster mitigation, but also provides a basis for accelerating further development of earthquake science and technology in China in the new century, especially in the 10th five-year plan. Based on the history reviewed, the author sets forth a general requirement for develop ment of earthquake science and technology in China and brings out 10 aspects to be stressed and strengthened at present and in the future. These are: upgrade and setup of the network of digitized seismic observation; upgrade and setup of the network for observation of seismic pre cursors; setup of the network for observation of strong motion; setup of the laboratories for ex periment on seismic regime; establishment of technical system for seismic information, emer gency command and urgent rescue; research on short-term and imminent earthquake predic tion; research on intermediate- and long-term earthquake prediction; research on attenuation of seismic ground motion, mechanism for seismic disaster, and control on seismic disaster; ba sic research fields related to seismology and geoscience. We expect that these efforts will signifi cantly elevate the level of earthquake science and technology in China to the advanced interna tional level, improve theories, techniques, and methods for earthquake precaution and predic tion, and enhance the effectiveness of earthquake disaster mitigation.  相似文献   
2.
侯江 《江苏地质》2008,32(4):317-323
抗战时期,中央地质调查所内迁重庆北碚,中国西部科学院帮助其在纷乱的战时安定下来,开始相对稳定的科研工作,主要在西部地区开展调查、从事科研。地调所的科研血脉得以传承,成为战时国内矿产资源调查研究中心。  相似文献   
3.
GIScience Journals Ranking and Evaluation: An International Delphi Study   总被引:4,自引:0,他引:4  
Researchers’ fame in most scientific fields is closely linked to their publishing capacity, both in terms of quantity and quality. In GIScience, as in other fields, this situation demands that the researcher evaluate and to be very familiar with the scientific journals in which they could publish. Some specialized journals (e.g. Journal of Citation Reports or JCR) are devoted to ranking these reviews according to various methods and criteria. Compared to other scientific communities, GIScience is relatively new and constantly evolving. Therefore, the journals of this field do not benefit from any real formal ranking yet. The objective of this paper is to present the process and results of a study aimed at addressing this gap. More specifically, the challenge is to elaborate an importance ranking of the scientific journals in the field of GIScience. To do so, both a qualitative (Delphi study carried out with 40 international experts) and a quantitative (JCR impact factor) approach has been implemented. This triangulation method leads to an early global ranking of the journals of this field.  相似文献   
4.
 40Ar/39Ar同位素年龄测定,获得南天山蛇绿混杂岩基质黑云母石英片岩单矿物黑云母的两个坪年龄分别为(370.0±4.8)Ma和(259.0±3.3)Ma;中天山南缘长英质糜棱岩单矿物黑云母的坪年龄为(250.5±7.9)Ma,二云母花岗岩单矿物白云母的坪年龄为(348.9±0.3)Ma。结合南天山古生代沉积特征和塔里木及伊犁-哈萨克斯坦板块古地磁数据的综合分析,提出南天山晚泥盆世至石炭纪早期完成向伊犁-哈萨克斯坦板块的B型俯冲,中-晚二叠世进行陆内A型俯冲造山的板块碰撞演化模式。  相似文献   
5.
介绍了温州世贸中心大厦钻孔灌注桩的主要特点和施工难点,以及在生产施工中所采取的主要技术措施,特别针对该工程中风化残留体施工难度大、桩孔深的特点,介绍了相应的处理办法和注意事项。  相似文献   
6.
介绍了超深大直径钻孔灌注桩在温州世贸中心大厦桩基工程中的应用情况,对其施工中出现的主要问题进行了分析和处理,并提出了解决措施。  相似文献   
7.
基于特征的非平面GIS-T数据模型在中心服务范围中的应用   总被引:2,自引:0,他引:2  
交通网络具有极强的空间性与时序性。交通系统运用现代化的空间分析工具来提高对它的管理以及工作效率,是城市建设、交通建设部门普遍关注的问题。GIS-T专门为交通网络问题而设计,运用了专门的交通建模手段,在技术上加强了几何空间网络概念及线的叠置,并有一套以动态分段为代表的专门技术,是智能交通系统的有机组成部分,是辅助城市交通管理与规划的有效技术手段,特别是与其它高新技术,如:GPS、无线通讯、Internet、虚拟显示等进行有机结合后,能为建立广泛的实时数字交通信息用户服务体系。  相似文献   
8.
The International Laser Ranging Service (ILRS) was established in September 1998 as a service within the IAG to support programs in geodetic, geophysical, and lunar research activities and to provide data products to the International Earth Rotation Service (IERS) in support of its prime objectives. Now in operation for 5 years, the ILRS develops: (1) the standards and specifications necessary for product consistency and (2) the priorities and tracking strategies required to maximize network efficiency. The service collects, merges, analyzes, archives and distributes satellite and lunar laser ranging data to satisfy a variety of scientific, engineering, and operational needs and encourages the application of new technologies to enhance the quality, quantity, and cost effectiveness of its data products. The ILRS works with: (1) the global network to improve station performance; (2) new satellite missions in the design and building of retroreflector targets to maximize data quality and quantity and (3) science programs to optimize scientific data yield. The ILRS Central Bureau maintains a comprehensive web site as the primary vehicle for the distribution of information within the ILRS community. The site, which can be accessed at: http://ilrs.gsfc.nasa.gov is also available at mirrored sites at the Communications Research Laboratory (CRL) in Tokyo and the European Data Center (EDC) in Munich.During the last 2 years, the ILRS has addressed very important challenges: (1) data from the field stations are now submitted hourly and made available immediately through the data centers for access by the user community; (2) tracking on low satellites has been significantly improved through the sub-daily issue of predictions, drag functions, and the real-time exchange of time biases; (3) analysis products are now submitted in SINEX format for compatibility with the other space geodesy techniques; (4) the Analysis Working Group is heavily engaged in Pilot Projects as it works toward an ILRS “standard” global solution and (5) SLR has significantly increased its participation in the International Terrestrial Reference Frame (ITRF) activity, which is important to the success of IGGOS.  相似文献   
9.
本文着重叙述了渣尔泰山群增隆昌组的沉积特征和沉积相序特征 ,并对其成因进行了分析 ,区内的增隆昌组白云岩为一风暴沉积相序 ,该相序的发现对进一步研究渣尔泰山群的沉积环境及古地理特征具有一定意义。  相似文献   
10.
李雪平  徐光黎  吴强  李元琴 《岩土力学》2010,31(Z2):276-280
采用Logistic回归模型进行岩溶空间发育规律评价,为深圳大运中心场地岩溶地面塌陷预测提供依据。结合岩溶发育影响因素和场地现有资料,选取地层岩性、地下水埋深、地质构造3个因素作为影响场地岩溶发育的地质因素。根据钻孔揭示的土溶洞埋藏深度频率层次聚类分析结果,将场地岩溶发育划分为<10、10~22、22~30、30~36、≥36 m共5个埋深组。将场地在平面上按10 m×10 m大小划分为6 843个评价单元。在GIS技术的支持下,以钻孔揭示的岩溶发育情况为样本空间,分别建立场地5个埋深组的3因素Logistic回归模型。通过5个埋深组的钻孔Logistic回归模型,分别计算各个埋深组情况下场地各评价单元的Logistic回归值PL。以不同埋深组土溶洞发生频率为权重,将同一位置、5个埋深组的单元PL值进行加权累加,得到场地各单元岩溶发育综合评价P值。将P值进行层次聚类分析,把场地划分为岩溶发育区、岩溶发育-不发育过渡区、岩溶不发育区。结果表明模型具有一定的可信度,可为岩溶地面塌陷评价提供依据。  相似文献   
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