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| 1 | 造山型金矿的地质特征和成矿流体显示文摘造山型金矿是全球重要的金矿类型。造山型金矿包含三种类型:产于绿岩带的含金石英碳酸盐脉、产于浊积岩中的含金石英脉和产于条带状铁矿(BIF)中的含金石英脉。造山型金矿的形成受板块构造控制,处于压缩或者转换挤压的造山构造环境。造山型金矿中的绿岩带金矿主要受剪切带、转换断层控制,浊积岩型金矿受褶皱和层间走滑断层控制,而赋存于BIF中的金矿则受剪切带和断层所控制。在这些金矿床中发现了4类流体包裹体:H_2O-CO_2型、富CO_2型、气液包裹体和含Na Cl子矿物的包裹体。所有年代的造山型金矿成矿流体的成分均为低盐度的水溶液和富CO_2的流体,温度在200~400℃范围内。稳定同位素研究表明造山型金矿的成矿流体源自变质流体和岩浆流体。金在成矿流体中的络合物应为Au HS^-或Au H_2S。虽然成矿流体中有丰富的CO_2,但Au在CO_2流体中的溶解度很低,有丰富的CO_2时Au在H_2S中的溶解度增大。流体包裹体研究表明,Au的成矿流体是Na Cl-H_2O-CO_2体系的流体,并在成矿过程中发生了相分离,即Na Cl-H_2O-CO_2流体分成两个流体:H_2O-Na Cl和CO_2-H_2O,Au的沉淀是在这种相分离过程中发生的。 | 卢焕章 池国祥 朱笑青 Guha J Archambault G 王中刚 | 2018 | 大地构造与成矿学2018,42,2: | 36 |
| 2 | Structural geochemistry of gold mineralization in the Linglong-Jiaojia district, Shandong Province, China显示文摘The Linglong-Jiaojia district is one of the most important regions containing gold deposits in China. These gold deposits can be divided into: a) the pyrite-gold-quartz vein type (Linglong type), which is controlled by brittle-ductile to ductile deformation structures, and b) the alteration-zone type (Jiaojia type), characterized by small veinlets, or the disseminated type recognized in brittle shear zones. Lode gold deposits in the Jiaojia area occur in NE brittle fracture zones, formed in a dominantly simple shear deformation regime, mainly in thrust attitude with a minor sinistral strike slip component. In the Linglong area, the lode gold deposits are located at the intersection of three types of structures: NNE and NE brittle-ductile fault zones and the ENE ductile reverse shear zone in the south of the area. The structural characteristics of these brittle shear zones are consistent with a tectonic NNW-SSE principal stress field orientation. Similar stresses explain the ENE Qixia fold axes, the Potouqing and several other ENE reverse ductile shear zones elsewhere in the region, the Tancheng-Lujiang fault zone and its subsidiaries in the vicinity of the Linglong-Jiaojia district, as well as the southern ENE suture zone north of Qingdao. Therefore these structural systems occurred as part of different major tectonic events under NNW-SSE compression principal stress fields in the area. Gold deposits are hosted in smaller-scale structures within the brittle fault zones and brittle-ductile shear zones. Although ore bodies and, on a smaller scale, quartz ore veins often seem to be randomly oriented, it is possible to explain their distribution and orientation in terms of the simple shear deformation process under which they were developed. The progressive simple shear failure is characterized by various fracture modes (tension and shear) that intervene in sequence. The tension and shear fractures are influenced by the stress level (depth of burial beneath the paleosurface) in their structural behavior, show variable dilatancy (void openings) and extend on all scales. By making use of these characteristics, a progressive failure analysis can be applied to predicting the shape and extent of ore bodies as well as the styles of mineralization at any given location. | Huan-zhang LU Guy Archambault LI Yuansheng WEI Jiaxue | 2007 | Chinese Journal Of Geochemistry2007,26,3: | 10 |
| 3 | Commissioning and Quality Assurance of RapidArc Radiotherapy Delivery System显示文摘 | C. Clifton Ling Pengpeng Zhang Yves Archambault Jiri Bocanek Grace Tang Thomas LoSasso | 2008 | International Journal of Radiation Oncology, Biology, Physics2008,,2: | 2 |
| 4 | Exploring the limits of complexity: A survey of empirical studies on graph visualisation显示文摘For decades,researchers in information visualisation and graph drawing have focused on developing techniques for the layout and display of very large and complex networks.Experiments involving human participants have also explored the readability of different styles of layout and representations for such networks.In both bodies of literature,networks are frequently referred to as being‘large’or‘complex’,yet these terms are relative.From a human-centred,experiment point-of-view,what constitutes‘large’(for example)depends on several factors,such as data complexity,visual complexity,and the technology used.In this paper,we survey the literature on human-centred experiments to understand how,in practice,different features and characteristics of node–link diagrams affect visual complexity. | Vahan Yoghourdjian Daniel Archambault Stephan Diehl Tim Dwyer Karsten Klein Helen C.Purchase Hsiang-Yun Wu | 2018 | Visual Informatics2018,2,4: | 2 |
| 5 | Current status and future outlook for bonded permanent magnet显示文摘 | V Archambault D Pere Emerge | 1999 | Mat Res Soc Symp Proc1999,1,: | 1 |
| 6 | Measuring output factorsof small fields formed by collimator jaws and multileaf collimatorusing plastic scintillation detectors显示文摘 | Klein DMiTailor RC Archambault L | 2010 | Med Phys2010,37,10: | 1 |
| 7 | Comparative safety and immunogenicity of two yellow fever 17D vaccines(ARILVAX and YF-VAX)in a phase III multicenter,doubleblind clinical trial显示文摘 | Monath TP Nichols R Archambault WT | 2002 | Am J Trop Med Hyg2002,66,5: | 1 |
| 8 | Methods for using patents in cross- country comparisons显示文摘 | ARCHAMBAULT | 2002 | Scientometrics2002,54,1: | 1 |
| 9 | Stretch and interleukin-1beta induce matrix metalloproteinases in rabbit tendon cells in vitro 显示文摘 | Archambault J Tsuzaki M Herzog W | 2002 | J Orthop Res2002,20,1: | 1 |
| 10 | Operation of cladding-pumped Yb^3+-doped silica fiber lasers in 1 μm region显示文摘 | Pask H M Archambault J L Hanna D C | 1994 | Electron Lett1994,30,11: | 1 |
| 11 | Examining TPACK among K-12 Online Distance Educators in the United States显示文摘 | LEANNA ARCHAMBAULT KENT CRIPPEN | | 0,,01: | 1 |
| 12 | Commissioning and quality assurance of RapidArc radiotherapy delivery system显示文摘 | Ling CC Zhang P Archambault Y | | 0,,: | 1 |
| 13 | Mycoplasma bovis pneumonia in cattle显示文摘 | Caswell JL Archambault M | 2007 | Anim Health Res Rev2007,8,2: | 1 |
| 14 | Discrimination between strain and temperature effects using dual-wavelength fiber grating sensors显示文摘 | Archambault M G Xu J L Reekie L | 1994 | Electron Lett1994,30,: | 1 |
| 15 | An experimental method to link morphological properties of rock fracture surfaces to their mechanical properties显示文摘 | Lopeza P Rissa J Archambault G | | 0,,: | 1 |
| 16 | Precipitation sequences during quenching of the AA 7010 alloy 显示文摘 | GODARD D ARCHAMBAULT P AEBY-GAUTIER E | 2002 | Acta Materialia2002,50,: | 1 |
| 17 | Scale of coastal heterogeneity and benthic intertidal species richness, diversity and abun- dance 显示文摘 | ARCHAMBAULT P BOURGET E | 1996 | Marine Ecology Progress Series1996,136,: | 1 |
| 18 | Smoking and asthma: clinical and radiologic features, lung function, and airway inflamamtion 显示文摘 | Boulet LP Lemiere C Archambault F | 2006 | Chest2006,129,3: | 1 |
| 19 | Protein Resistant Polyurethane Surfaces by Chemical Grafting of PEO : amino - terminated PEO as Grafting Reagent 显示文摘 | Archambault J G Brash J L | 2004 | Colloids and Surfaces B : Biointerfaces2004,39,: | 1 |
| 20 | Traffic Dataset and Dynamic Routing Algorithm in Traffic Simulation显示文摘The purpose of this research is to create a simulated environment for teaching algorithms,big data processing,and machine learning.The environment is similar to Google Maps,with the capacity of finding the fastest path between two points in dynamic traffic situations.However,the system is significantly simplified for educational purposes.Students can choose different traffic patterns and program a car to navigate through the traffic dynamically based on the changing traffic.The environments used in the project are Visual IoT/Robotics Programming Language Environment(VIPLE)and a traffic simulator developed in the Unity game engine.This paper focuses on creating realistic traffic data for the traffic simulator and implementing dynamic routing algorithms in VIPLE.The traffic data are generated from the recorded real traffic data published on the Arizona Maricopa County website.Based on the generated traffic data,VIPLE programs are developed to implement the traffic simulation with support for dynamic changing data. | Zhemin Zhang Gennaro De Luca Brian Archambault Juan MChavez and Brandon Rice | 2022 | Journal of Artificial Intelligence and Technology2022,2,3: | 1 |