期刊文献+
共找到94篇文章
< 1 2 5 >
每页显示 20 50 100
Geology, geochronology, and exploration of the Jiama giant porphyry copper deposit (11 Mt), Tibet, China: A review
1
作者 Bin Lin Ju-xing Tang +8 位作者 Pan Tang Wen-bao Zheng Yang Song Fa-qiao Li Qiu-feng Leng Zhi-chao Wang Jing Qi Miao Sun Juan David Bello Rodríguez 《China Geology》 CAS CSCD 2023年第2期338-357,I0042-I0045,共24页
Jiama,with more than 11 Mt of copper metal,is the largest porphyry-skarn copper system in the Gangdese metallogenic belt,Tibet,China,creating ideal conditions for deciphering the origin of porphyry ores in a collision... Jiama,with more than 11 Mt of copper metal,is the largest porphyry-skarn copper system in the Gangdese metallogenic belt,Tibet,China,creating ideal conditions for deciphering the origin of porphyry ores in a collision setting.Despite massive studies of the geology,chronology,petrogenesis,and ore-related fluids and their sources in Jiama,there is a lack of systematic summaries and reviews of this system.In contrast to traditional porphyry copper systems in a subduction setting,recent studies and exploration suggest that the Jiama deposit includes porphyry-type Mo-Cu,skarn-type Cu polymetallic,vein-type Au and manto orebodies.This paper reviews the latest studies on the geology,chronology,petrogenesis,fluid inclusions,and isotopic geochemistry(hydrogen,oxygen,sulfur,and lead)of the Jiama deposit.Accordingly,a multi-center complex mineralization model was constructed,indicating that multi-phase intrusions from the same magma reservoir can form multiple hydrothermal centers.These centers are mutually independent and form various orebodies or are superimposed on each other and form thick,high-grade orebodies.Finally,a new comprehensive exploration model was established for the Jiama porphyry copper system.Both models established in this study help to refine the theories on continental-collision metallogeny and porphyry copper systems. 展开更多
关键词 Copper deposit Porphyry copper system O-S-Pb isotope Multicenter complex mineralization Comprehensive exploration model Mineral exploration engineering Gangdese metallogenic belt JIAMA TIBET
下载PDF
EXPLORATION ENGINEERING
2
《Abstracts of Chinese Geological Literature》 1997年第4期91-93,共3页
关键词 ISSN exploration engineering CN HOLE ROCK HEG
原文传递
Lateral bearing characteristics of subsea wellhead assembly in the hydrate trial production engineering
3
作者 Jing Zeng Wen-wei Xie +8 位作者 Bei-bei Kou Jing-an Lu Xing-chen Li De-jun Cai Hao-xian Shi Ke-wei Zhang Hua-qing Liu Jin Li Bo Li 《China Geology》 CAS CSCD 2023年第3期455-465,共11页
Conductor and suction anchor are the key equipment providing bearing capacity in the field of deep-water drilling or offshore engineering,which have the advantages of high operation efficiency and short construction p... Conductor and suction anchor are the key equipment providing bearing capacity in the field of deep-water drilling or offshore engineering,which have the advantages of high operation efficiency and short construction period.In order to drill a horizontal well in the shallow hydrate reservoir in the deep water,the suction anchor wellhead assembly is employed to undertake the main vertical bearing capacity in the second round of hydrate trial production project,so as to reduce the conductor running depth and heighten the kick-off point position.However,the deformation law of the deep-water suction anchor wellhead assembly under the moving load of the riser is not clear,and it is necessary to understand the lateral bearing characteristics to guide the design of its structural scheme.Based on 3D solid finite element method,the solid finite element model of the suction anchor wellhead assembly is established.In the model,the seabed soil is divided into seven layers,the contact between the wellhead assembly and the soil is simulated,and the vertical load and bending moment are applied to the wellhead node to simulate the riser movement when working in the deep water.The lateral bearing stability of conventional wellhead assembly and suction anchor wellhead assembly under the influence of wellhead load is discussed.The analysis results show that the bending moment is the main factor affecting the lateral deformation of the wellhead string;the anti-bending performance from increasing the outer conductor diameter is better than that from increasing the conductor wall thickness;for the subsea wellhead,the suction anchor obviously improves the lateral bearing capacity and reduces the lateral deformation.The conduct of the suction anchor wellhead assembly still needs to be lowered to a certain depth that below the maximum disturbed depth to ensure the lateral bearing stability,Thus,a method for the minimum conductor running depth for the suction anchor wellhead assembly is developed.The field implementations show that compared with the first round of hydrate trial production project,the conductor running depth is increased by 9.42 m,and there is no risk of wellhead overturning during the trial production.The method for determining the minimum conductor running depth in this paper is feasible and will still play an important role in the subsequent hydrate exploration and development. 展开更多
关键词 Natural gas hydrate Deep-water Subsea wellhead Suction anchor Wellhead stability 3D solid finite element method Hydrate trial exploration engineering Natural gas hydrate trial production Shenhu area The South China Sea
下载PDF
EXPLORATION ENGINEERING
4
《Abstracts of Chinese Geological Literature》 1997年第2期111-114,共4页
关键词 ISSN exploration engineering CN HIGH ROCK
原文传递
EXPLORATION ENGINEERING
5
《Abstracts of Chinese Geological Literature》 1999年第2期107-109,共3页
关键词 ISSN CN TD ROCK exploration engineering
原文传递
EXPLORATION ENGINEERING
6
《Abstracts of Chinese Geological Literature》 1998年第1期97-98,共2页
关键词 ISSN CN TD exploration engineering PCBN
原文传递
EXPLORATION ENGINEERING
7
《Abstracts of Chinese Geological Literature》 1996年第1期120-121,共2页
关键词 ISSN CN EE exploration engineering DEEP
原文传递
EXPLORATION ENGINEERING
8
《Abstracts of Chinese Geological Literature》 1998年第4期99-100,共2页
关键词 ROCK CN ISSN exploration engineering
原文传递
EXPLORATION ENGINEERING
9
《Abstracts of Chinese Geological Literature》 1999年第4期102-103,共2页
关键词 ISSN exploration engineering ZHANG HEAD
原文传递
EXPLORATION ENGINEERING
10
《Abstracts of Chinese Geological Literature》 1997年第3期76-77,共2页
关键词 ISSN exploration engineering CN DTH
原文传递
EXPLORATION ENGINEERING
11
《Abstracts of Chinese Geological Literature》 2016年第4期193-,共1页
20162863 Liu Tianle(Engineering Research Center of Rock-Soil Drilling and Excavation and Protection,Ministry of Education,China University of Geosciences,Wuhan 430074,China);Li Lixia A New Drilling Fluid for Drilling ... 20162863 Liu Tianle(Engineering Research Center of Rock-Soil Drilling and Excavation and Protection,Ministry of Education,China University of Geosciences,Wuhan 430074,China);Li Lixia A New Drilling Fluid for Drilling in Marine Gas Hydrate Bearing Sediments(Earth Science,ISSN1000-2383,CN42-1233/P,40(11),2015,p.1913- 展开更多
关键词 ISSN CN PDC exploration engineering
原文传递
EXPLORATION ENGINEERING
12
《Abstracts of Chinese Geological Literature》 1994年第3期119-121,共3页
关键词 ISSN exploration engineering DOWN
原文传递
EXPLORATION ENGINEERING
13
《Abstracts of Chinese Geological Literature》 1994年第4期105-106,共2页
关键词 ISSN exploration engineering GP
原文传递
EXPLORATION ENGINEERING
14
《Abstracts of Chinese Geological Literature》 1998年第3期93-94,共2页
关键词 ISSN CHEN exploration engineering
原文传递
EXPLORATION ENGINEERING
15
《Abstracts of Chinese Geological Literature》 1995年第2期95-96,共2页
关键词 ISSN exploration engineering CN
原文传递
EXPLORATION ENGINEERING
16
《Abstracts of Chinese Geological Literature》 1995年第4期96-97,共2页
关键词 ISSN exploration engineering CN
原文传递
EXPLORATION ENGINEERING
17
《Abstracts of Chinese Geological Literature》 1999年第1期100-103,共4页
关键词 ISSN CN exploration engineering
原文传递
EXPLORATION ENGINEERING
18
《Abstracts of Chinese Geological Literature》 2000年第3期115-116,共2页
关键词 ISSN CN exploration engineering
原文传递
EXPLORATION ENGINEERING
19
《Abstracts of Chinese Geological Literature》 2001年第2期113-114,共2页
关键词 ISSN CN exploration engineering
原文传递
EXPLORATION ENGINEERING
20
《Abstracts of Chinese Geological Literature》 1994年第1期103-106,共4页
关键词 ISSN exploration engineering CN
原文传递
上一页 1 2 5 下一页 到第
使用帮助 返回顶部