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41.
推进煤矸石资源化利用的对策建议 总被引:10,自引:0,他引:10
煤矸石是我国排放量和堆存量最大的工业固体废弃物之一,但又是可以利用的资源,只要加以资源化利用,就能会变废为宝。在研究我国煤矸石综合利用现状的基础上,指出了煤矸石综合利用中存在的主要问题,从制定规划、完善经济政策、加强法制建设等方面提出了加快推进煤矸石资源化利用的建议。 相似文献
42.
地质单位财务管理咨询刍议 总被引:6,自引:0,他引:6
地质单位对自身无力解决的重要财务管理问题应该寻求外部咨询机构的有效帮助,针对地质单位财务管理中存在的主要问题提出需要咨询课题,而咨询机构通过对地质单位的财务状况进行调查分析后,提出科学、合理有效的财务管理改善方案和指导实施方案。 相似文献
43.
本文通过对国土资源部科技成果管理现状和国内外科技成果管理水平的分析,构建了国土资源科技成果管理主流程信息化发展的基本思路和框架,并对实施国土资源科技成果管理信息化提出了建设性意见。 相似文献
44.
盾构法施工的要点是需要在井下布设高精度的控制支导线,当我们根据盾构推进进度对导线接测时,由于观测条件、观测方法、观测仪器基本相同,但观测、的成果往往会存在一定的差异,有时我们无法直接判断成果的正确与否,此时,采用测量平差中的统计检验的方法来分析这些观测数据,可以取得比较满意的结果。 相似文献
45.
旅游信息系统建设模式探讨——以佛山市为例 总被引:6,自引:0,他引:6
作为当前旅游信息系统开发的两种主要基础平台,地理信息系统和多媒体制作系统都存在一定的缺陷。多媒体制作系统缺乏旅游地图的有效管理,空间查询,分析和统计功能,旅游地理信息系统则缺乏旅游信息的多媒体表达能力。从实用性和普及性出发,集合二者优点开发模式具有更大的推广应用价值。因此,论文提出在同一界面下基于GIS和多媒体集成的旅游信息系统开发模式;(1)在GIS中增加多媒体信息表达能力,以关系数据库为核心,把多媒体文件名信息存储在地理信息系统属性库,依靠多媒休段实现多媒体数据与地理信息系统图形和属性的关联,实现查询的基本概念;(2)在多媒体系统中开发部分GIS空间查询功能。以此思路,佛山科技学院GIS技术实验室利用VB进行GIS和多媒体二次开发,成功地完成了佛山旅游信息系统的设计和开发。 相似文献
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We use 23298 Pn arrival-time data from Chinese national and provincial earthquake bulletins to invert fine structure of Pn velocity and anisotropy at the top of the mantle beneath the Sichuan-Yunnan and its adjacent region. The results suggest that the Pn velocity in this region shows significant lateral variation; the Pn velocity varies from 7.7 to 8.3 km/s. The Pn-velocity variation correlates well with the tectonic activity and heat flow of the region. Low Pn velocity is observed in southwest Yunnan, Tengchong volcano area, and the Panxi tectonic area. These areas have very active seismicity and tectonic activity with high surface heat flow. On the other hand, high Pn velocity is observed in some stable regions, such as the central region of the Yangtze Platform; the most pronounced high velocity area is located in the Sichuan Basin, south of Chengdu. Pn anisotropy shows a complex pattern of regional deformation. The Pn fast direction shows a prominent clockwise rotation pattern from east of the Tibetan block to the Sichuan-Yunnan diamond block to southwest Yunnan, which may be related to southeastward escape of the Tibetan Plateau material due to the collision of the Indian Plate to the Eurasia Plate. Thus there appears to be strong correlation between the crustal deformation and the upper mantle structure in the region. The delay times of events and stations show that the crust thickness decreases from the Tibetan Plateau to eastern China, which is consistent with the results from deep seismic sounding. 相似文献
49.
The Vincent Thomas Bridge in the Los Angeles metropolitan area, is a critical artery for commercial traffic flow in and out of the Los Angeles Harbor, and is at risk in the seismically active Southern California region, particularly because it straddles the Palos Verdes fault zone. A combination of linear and non‐linear system identification techniques is employed to obtain a complete reduced‐order, multi‐input–multi‐output (MIMO) dynamic model of the Vincent Thomas Bridge based on the dynamic response of the structure to the 1987 Whittier and 1994 Northridge earthquakes. Starting with the available acceleration measurements (which consists of 15 accelerometers on the bridge structure and 10 accelerometers at various locations on its base), an efficient least‐squares‐based time‐domain identification procedure is applied to the data set to develop a reduced‐order, equivalent linear, multi‐degree‐of‐freedom model. Although not the main focus of this study, the linear system identification method is also combined with a non‐parametric identification technique, to generate a reduced‐order non‐linear mathematical model suitable for use in subsequent studies to predict, with good fidelity, the total response of the bridge under arbitrary dynamic environments. Results of this study yield measurements of the equivalent linear modal properties (frequencies, mode shapes and non‐proportional damping) as well as quantitative measures of the extent and nature of non‐linear interaction forces arising from strong ground shaking. It is shown that, for the particular subset of observations used in the identification procedure, the apparent non‐linearities in the system restoring forces are quite significant, and they contribute substantially to the improved fidelity of the model. Also shown is the potential of the identification technique under discussion to detect slight changes in the structure's influence coefficients, which may be indicators of damage and degradation in the structure being monitored. Difficulties associated with accurately estimating damping for lightly damped long‐span structures from their earthquake response are discussed. The technical issues raised in this paper indicate the need for added spatial resolution in sensor instrumentation to obtain identified mathematical models of structural systems with the broadest range of validity. Copyright © 2003 John Wiley & Sons, Ltd. 相似文献
50.
Petrology, geochemistry and isotopic ages of eclogites from the Dulan UHPM Terrane, the North Qaidam, NW China 总被引:35,自引:0,他引:35
The Dulan eclogite–gneiss region is located in the eastern part of the North Qaidam eclogite belt, NW China. Widespread evidence demonstrates that this region is a typical ultrahigh-pressure (UHP) metamorphic terrane. Eclogites occur as lenses or layers in both granitic and pelitic gneisses. Two distinguished sub-belts can be recognized and differ in mineralogy, petrology and geochemistry. The North Dulan Belt (NDB) has tholeiitic protoliths with high TiO2 and lower Al2O3 and MgO contents. REE patterns and trace element contents resemble those of N-type and E-type MORB. In contrast, eclogites in the South Dulan Belt (SDB) are of island arc protoliths with low TiO2, high Al2O3 and show LREE-enriched and HFSE-depleted patterns. Sm–Nd isotope analyses give isochron ages of 458–497 Ma for eclogite-facies metamorphism for the two sub-belts. The ages are similar to those of Yuka and Altun eclogites in the western extension of the North Qaidam-Altun eclogite belt. The Dulan UHP metamorphic terrane, together with several other recently recognized eclogite-bearing terrenes within the North Qaidam-Altun HP-UHP belt, constitute the key to the understanding of the tectonic evolution of the northern Tibetan Plateau. The entire UHP belt extends for more than 1000 km from the Dulan UHP terrane in the southeast to the Altun eclogite–gneiss terrane in the west. This super-belt marks an early Paleozoic continental collision zone between the Qaidam Massif and the Qilian Massif. 相似文献