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采用低温电镀工艺生产PDC石油全面钻头对金刚石无任何热损伤,对喷咀进行组合设计,在两口井中进行试验,取得了很好的经济效益和社会效益,并分析了钻头的特点及存在的问题。 相似文献
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通过回顾我国地质岩心钻探设备发展历程,分析岩心钻探设备的现状,优势和不足,提出了对其今后发展的几点看法。 相似文献
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Gennady A. Kivman 《Surveys in Geophysics》1997,18(6):621-643
The problem of deriving tidal fields from observations by reason of incompleteness and imperfectness of every data set practically available has an infinitely large number of allowable solutions fitting the data within measurement errors and hence can be treated as ill-posed. Therefore, interpolating the data always relies on some a priori assumptions concerning the tides, which provide a rule of sampling or, in other words, a regularization of the ill-posed problem. Data assimilation procedures used in large scale tide modeling are viewed in a common mathematical framework as such regularizations. It is shown that they all (basis functions expansion, parameter estimation, nudging, objective analysis, general inversion, and extended general inversion), including those (objective analysis and general inversion) originally formulated in stochastic terms, may be considered as utilizations of one of the three general methods suggested by the theory of ill-posed problems. The problem of grid refinement critical for inverse methods and nudging is discussed. 相似文献
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基于MAPGIS的钻孔柱状图绘制软件的编制 总被引:17,自引:4,他引:17
绘制钻孔地质柱状图是地质工作中的一项重要工作。在计算机没有普及时,主要是通过手工绘制完成的。随着计算机在地质学中的广泛应用,地质工作者就如何利用计算机高效快速地绘制钻孔地质柱状图进行了很多尝试,如使用一些商业绘图软件或编制了一些软件,但往往不尽人意。基于MAPGIS开发一个钻孔柱状图绘制软件,可以方便地读取数据库中的数据进行柱状图绘制,生成图形为MAPGIS文件格式,可以在MAPIS中修改及打印。这里介绍了MAPGIS二次开发平台,并阐述了软件系统设计思路和关键技术的实现方法。 相似文献
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Z. X. Zhang 《Rock Mechanics and Rock Engineering》2004,37(3):239-248
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A combined gravity map over the Indian Peninsular Shield (IPS) and adjoining oceans brings out well the inter-relationships between the older tectonic features of the continent and the adjoining younger oceanic features. The NW–SE, NE–SW and N–S Precambrian trends of the IPS are reflected in the structural trends of the Arabian Sea and the Bay of Bengal suggesting their probable reactivation. The Simple Bouguer anomaly map shows consistent increase in gravity value from the continent to the deep ocean basins, which is attributed to isostatic compensation due to variations in the crustal thickness. A crustal density model computed along a profile across this region suggests a thick crust of 35–40 km under the continent, which reduces to 22/20–24 km under the Bay of Bengal with thick sediments of 8–10 km underlain by crustal layers of density 2720 and 2900/2840 kg/m3. Large crustal thickness and trends of the gravity anomalies may suggest a transitional crust in the Bay of Bengal up to 150–200 km from the east coast. The crustal thickness under the Laxmi ridge and east of it in the Arabian Sea is 20 and 14 km, respectively, with 5–6 km thick Tertiary and Mesozoic sediments separated by a thin layer of Deccan Trap. Crustal layers of densities 2750 and 2950 kg/m3 underlie sediments. The crustal density model in this part of the Arabian Sea (east of Laxmi ridge) and the structural trends similar to the Indian Peninsular Shield suggest a continent–ocean transitional crust (COTC). The COTC may represent down dropped and submerged parts of the Indian crust evolved at the time of break-up along the west coast of India and passage of Reunion hotspot over India during late Cretaceous. The crustal model under this part also shows an underplated lower crust and a low density upper mantle, extending over the continent across the west coast of India, which appears to be related to the Deccan volcanism. The crustal thickness under the western Arabian Sea (west of the Laxmi ridge) reduces to 8–9 km with crustal layers of densities 2650 and 2870 kg/m3 representing an oceanic crust. 相似文献