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991.
涪陵二期建产区地质构造比一期更加复杂,目的层埋深更深,水平段倾角变化较大,这些客观因素造成钻井施工困难,钻井周期普遍延长。焦页91平台是部署在二期江东区块西南部的边缘井,地质条件复杂,钻井工程施工难度大。本文深入分析了该平台的第1口井焦页912HF井施工过程中遇到的复杂情况以及造成钻井周期长的主要原因,在后续2口井的施工过程中,针对第1口井出现的问题,采取改进堵漏措施,钻头、螺杆优选,优化井眼轨道,配套提速工具,提高钻井液性能,使用旋转导向工具等技术措施,精细施工,取得了良好的效果,钻头行程和机械钻速大幅提升,钻井周期大大缩短,为涪陵二期江东区块钻井施工提供了经验。 相似文献
992.
浅对流云(Shallow Convective Cloud,SCC)对于认识和预报深对流强雷暴、辐射平衡以及气候变化有着十分重要的科学和意义。然而浅对流云水平、垂直尺度较小,并且生命尺度短,对其观测技术有限,目前针对浅对流云的观测研究仍然较少。本文采用2009~2010年CloudSat、CALIPSO(Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation satellite)和MODIS(Moderate-resolution Imaging Spectroradiometer)卫星融合产品2B-CLDCLASS-LIDAR和2B-GEOPRO对SCC进行研究,研究分析表明内蒙古草原区域SCC出现频率有明显季节变化,主要发生在夏季和秋季,其出现频率水平分布呈现西北低、东南高的趋势,与海拔梯度变化密切相关。SCC平均云底高度,8月最高,12月最低,呈现明显的冬夏差异。通过比较不同地区SCC云底高度发现,随着观测区域海拔高度增加,SCC云底高度有上升趋势。除此以外,海拔越高SCC云底高度变化幅度越大。 相似文献
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995.
R.-X. CHEN Y.-F. ZHENG Z.-F. ZHAO J. TANG F.-Y. WU X. M. LIU 《Journal of Metamorphic Geology》2007,25(8):873-894
A combined study of zircon morphology, U–Pb ages and Hf isotopes as well as whole‐rock major and trace elements was carried out for ultrahigh‐pressure (UHP) eclogite and felsic gneiss from the main hole (MH) of the Chinese Continental Scientific Drilling (CCSD) project in the Sulu orogen. The results show contrasting Hf isotope compositions for bimodal UHP metaigneous rocks, pointing to contrasting origins for their protoliths (thus dual‐bimodal compositions). The samples of interest were from two continuous core segments from CCSD MH at depths of 734.21–737.16 m (I) and 929.67–932.86 m (II) respectively. Zircon U–Pb dating for four samples from the two core segments yields two groups of ages at 784 ± 17 and 222 ± 3 Ma, respectively, corresponding to protolith formation during supercontinental rifting and metamorphic growth during continental collision. Although the Triassic UHP metamorphism significantly reset the zircon U–Pb system of UHP rocks, the Hf isotope compositions of igneous zircon can be used to trace their protolith origin. Contrasting types of initial Hf isotope ratios are, respectively, correlated with segments I and II, regardless of their lithochemistry. The first type shows positive ?Hf(t) values of 7.8 ± 3.1 to 6.0 ± 3.0, with young Hf model age of 1.03 and 1.11 Ga. The second type exhibits negative ?Hf(t) values of ?6.9 ± 1.6 to ?9.1 ± 1.1, with old Hf model ages of 2.11 and 2.25 Ga. It appears that the UHP rocks from the two segments have protoliths of contrasting origin. Consistent results are also obtained from their trace element compositions suggesting that mid‐Neoproterozoic protoliths of bimodal UHP metaigneous rocks formed during supercontinental rifting at the northern margin of the South China Block. Thus, the first type of bimodal magmatism formed by rapid reworking of juvenile crust, whereas the second type of bimodal magmatism was principally generated by rift anatexis of Paleoproterozoic crust. Melting of orogenic lithosphere has potential to bring about bimodal magmatism with contrasting origins. Because arc–continent collision zones are the best place to accumulate both juvenile and ancient crusts, the contrasting types of bimodal magmatism are proposed to occur in an arc–continent collision orogen during the supercontinental rifting, in response to the attempted breakup of the supercontinent Rodinia at c. 780 Ma. 相似文献
996.
Guimei WAN Liangjie TANG Wenzheng JIN . Basin Reservoir Research Centre China University of Petroleum Beijing China. Key Laboratory for Hydrocarbon Accumulation Mechanism of Ministry of Education China University of Petroleum Ministry of Education Beijing China 《东北亚地学研究》2007,10(2):156-165
Compared Kuqa foreland basin with Persian Gulf Basin in development of salt layers, salt tectonics, and the relation between salt tectonics and hydrocarbon, it is concluded that the salt diapirs are relative to hydrocarbon. Searching salt diapirs and related traps in Kuqa foreland basin is important. The forming mechanism of salt tectonic in Kuqa foreland basin is different from that of Hormuz Series, but similar to that of Lower Fars Series/Gachsaran Formation. Inspired by the role of salt tectonics of Lower Fars Series/Gachsaran Formation in hydrocarbon accumulation, the authors considered that the exploration below salt layer should be enforced, and the traps below salt layer in the southern part of the Kuqa foreland basin would be found where salt layer is thicker. On the contrary, the traps should be found both above and below the salt layer in front of the northern mountain where salt layer is thin. The Triassic and Jurassic source rocks are rich in this area with great exploration prospective. 相似文献
997.
998.
研究了国家天文台兴隆观测基地1m反射望远镜新安装的VersArray1340×1300BCCD照相机的性能。它有几乎没有图案的良好本底(bias),极低的读出噪声和暗流。用平场序列露光来检测其线性时,能得到线性良好的转移曲线(transfercurve)。但是,不论在平场露光(面光源)还是在恒星(点光源)的观测中,当像元值约高于55000adu时(增益3.7e^-/adu),都会产生溢出。此时CCD并未满井。因此,使用它做点扩散函数分析研究时,要避免使用太亮的星像。不过,由于电荷守恒原理,对产生溢出的孤立亮星像,仍然可以做孔径测光。此外,该相机的快门函数也已测定。 相似文献
999.
1000.
LIN Bin TANG Juxing TANG Pan SUN Yan QI Jing M. SANTOSH XIE Jinling DENG Shilin LI Faqiao XIE Fuwei ZHOU Aorigele 《《地质学报》英文版》2024,98(1):83-103
Rubidium (Rb) deposits mostly occur in the South China and Central Asia orogenic belts and are often closely associated with highly differentiated granites. This study investigates a newly-discovered giant Rb deposit at Gariatong in the Central Lhasa terrane in Tibet. Detailed field studies and logging data revealed that the Rb mineralization mainly occurs in monzogranite and is related to greisenization. LA-ICP-MS U-Pb dating of zircon yielded ages of 19.1 ± 0.2 Ma and
19.0 ± 0.2 Ma for greisenized monzogranite and fresh monzogranite, respectively. The monzogranites are characterized as strongly peraluminous, with high contents of SiO2, Al2O3, K2O and Na2O as well as a high differentiation index. They are enriched in light rare earth and large ion lithophile elements with signi?cant negative Eu anomalies and depleted high field-strength elements. Petrological and geochemical features of these ore-related monzogranites suggest that they are highly fractionated S-type granites, derived from remelting of crustal materials in a post-collisional setting. The geochemistry of zircon and apatite points to a low oxygen fugacity of the ore-related monzogranite during the magma’s evolution. The discovery of the Gariatong Rb deposit suggests that the Central Lhasa terrane may be an important region for rare metal mineralization. 相似文献