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大厂锡矿床黑色包裹体成因分析及容矿围岩的古地温研究 被引量:2
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作者 韩发 田树刚 刘建 《矿床地质》 CAS CSCD 北大核心 2020年第3期461-476,共16页
在大厂长坡-铜坑矿床,锡石中普遍存在具有代表性的2类包裹体:黑色包裹体和气-液两相的流体包裹体。文章通过对包裹体结构形态和理论分析,证明黑色包裹体是原生流体包裹体在内压超高(overpressured)条件下形成的。通过牙形石色温指数(CAI... 在大厂长坡-铜坑矿床,锡石中普遍存在具有代表性的2类包裹体:黑色包裹体和气-液两相的流体包裹体。文章通过对包裹体结构形态和理论分析,证明黑色包裹体是原生流体包裹体在内压超高(overpressured)条件下形成的。通过牙形石色温指数(CAI)及表面残余结构的研究,获得了容矿岩石的古地温为300~650℃,与前人通过气-液两相包裹体获得的矿化温度(240~540℃)高度吻合,说明容矿围岩的受热事件与同期矿化事件,其热源具有同源性,可能来自矿床下伏的燕山期花岗岩。层状主矿体锡石中原生的流体包裹体正是在这期事件的影响下,变成了黑色包裹体。这些研究证明,大厂锡矿至少有早、晚2期成矿作用。黑色包裹体的发现和古地温的恢复,为层状主矿体是在海底热液喷流沉积成因的认识提供了关键证据。 展开更多
关键词 地球化学 黑色包裹体 成因分析 指示意义 牙形石 古地温 矿床成因
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地下结构地震反应分析中确定侧向边界的等效土柱模型 被引量:2
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作者 田树刚 陈清军 《结构工程师》 北大核心 2018年第5期80-91,共12页
地基土体边界条件的确定是土-地下结构动力相互作用(SSDI)问题中的一个重要环节。基于剪切波在土柱中的传播理论,提出一种通过等效土柱模型确定SSDI问题中土体远置自由边界尺寸的方法,即建立土-结构相互作用模型,同时建立有相同土层特... 地基土体边界条件的确定是土-地下结构动力相互作用(SSDI)问题中的一个重要环节。基于剪切波在土柱中的传播理论,提出一种通过等效土柱模型确定SSDI问题中土体远置自由边界尺寸的方法,即建立土-结构相互作用模型,同时建立有相同土层特性的可代表水平成层无限半空间的等效土柱模型,对二者施加相同的输入地震动激励,当二者土层边界顶部的反应满足相对误差条件时,所选取的土-地下结构体系土体边界尺寸满足波传播的要求。以一个地下隧道工程为背景,基于ABAQUS有限元数值计算平台,应用等效土柱模型确定其远置自由边界尺寸。在此基础上,建立合适尺寸的自由边界模型并对其施加近似粘弹性人工边界及动力无限元边界条件,与通过等效土柱模型确定的自由边界模型的结构反应进行了对比,考察了不同边界条件的设置对结构动力反应的影响。结果表明:对该土-地下隧道工程,通过等效土柱模型确定的可以满足波传要求的自由边界为1 200 m时可控制相对误差在2%以内;自由边界模型与设置了近似黏弹性人工边界及动力无限元边界模型的结构动力反应符合较好;设置近似黏弹性边界及无限元单元的模型能以相对小的计算成本达到与等效土柱模型确定的大尺寸自由边界模型相近的计算效果。确定土体自由边界尺寸的等效土柱模型方法为SSDI问题中土体自由边界的选取与设置提供了有效借鉴与参考。 展开更多
关键词 地下空间结构 地震反应分析 等效土柱模型 土-结构相互作用 侧向边界
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政府工程中全过程工程咨询单位履约评价研究 被引量:1
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作者 田树刚 张艺源 《建设监理》 2022年第11期20-22,28,共4页
目前全过程工程咨询快速发展,但国家仍未发布关于此行业的标准文件,各项目、各单位所履行的全过程工程咨询服务各有不同,对于全过程工程咨询服务委托方来说存在着管理困难。因此,主要站在全过程工程咨询服务委托方的角度,为规范化全过... 目前全过程工程咨询快速发展,但国家仍未发布关于此行业的标准文件,各项目、各单位所履行的全过程工程咨询服务各有不同,对于全过程工程咨询服务委托方来说存在着管理困难。因此,主要站在全过程工程咨询服务委托方的角度,为规范化全过程工程咨询服务单位的履约行为,结合实际管理经验以及全过程工程咨询合同的工作内容与职责要求,构建出包含4个一级指标、7个二级指标和21个三级指标的全过程工程咨询单位履约行为评价指标体系。 展开更多
关键词 全过程工程咨询 履约评价 指标体系
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Late Paleozoic reefs and their significance for tectonics and oil-gas exploration in the Hinggan-Inner Mongolia area 被引量:8
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作者 tian shugang ZHANG YongSheng +1 位作者 WANG JunTao NIU ShaoWu 《Science China Earth Sciences》 SCIE EI CAS 2011年第2期212-222,共11页
Many reefs of the Late Paleozoic have been discovered recently in the Hinggan-lnner Mongolia area. These reefs clearly are geographically extensive, and possess distinctive features and well-developed reef-facies. The... Many reefs of the Late Paleozoic have been discovered recently in the Hinggan-lnner Mongolia area. These reefs clearly are geographically extensive, and possess distinctive features and well-developed reef-facies. They have been found to contain five reef-building communities and were constructed in four periods. Colonial coral-algal reefs at Aohan and Chifeng represent a warm shallow-sea in the Carboniferous. Different reefs in the Xiwu Banner were formed in three periods: early Late Carboniferous, late Late Carboniferous and Early Permian. These reefs were built in warm sea conditions. Their buildup types include colonial coral frameworks, algae-buildings and lime-mud mounds. Bryozoan reefs in the Zhalaite and Dongwu banners were built in the late Middle Permian and thrived in a cold shallow-sea. All reefs grew independently on two kinds of sedimentary platforms, carbonate and carbonate-clastic mixed platforms. Four reef-forming periods occurred later from south to north, along a collisional course between the North China Plate and the Siberian Plate. These reefs can be arranged into three 'reef-links' or reef zones that extend along plate margins. Among these, the Aohan-Chifeng reef-link indicates a northern margin of the North China Plate, the Zhalaite-Dongwu reef-link marks a southern margin of the Siberian Plate, and the Xiwu-Beishan reef-link reflects the former existence of some inter-plates. The strata of each reef-facies are thick and contain rich asphalt deposits. Overlapping and heteropic layers are very thick and contain dark oil/gas-rich horizons; TOC analyses verify that most of these are good hydrocarbon source rocks. This study shows that the study area is an excellent candidate for oil-gas exploration. 展开更多
关键词 REEFS Late Paleozoic Hinggan-Inner Mongolia fold-zone oil-gas exploration
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Sequence stratigraphy of Jurassic-Cretaceous boundary strata in Luanping, Northern Hebei, China 被引量:1
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作者 tian shugang LIU Yongqing +2 位作者 LI Peixian PANG Qiqing NIU Shaowu 《Science China Earth Sciences》 SCIE EI CAS 2004年第7期607-617,共11页
A sediment-continuous section of Jurassic-Cretaceous (J-K) boundary strata was found in Zhangjiagou of Luanping, northern Hebei Province, China. The boundary strata were systematically divided into 5 sequences, 13 sub... A sediment-continuous section of Jurassic-Cretaceous (J-K) boundary strata was found in Zhangjiagou of Luanping, northern Hebei Province, China. The boundary strata were systematically divided into 5 sequences, 13 subsequences and 139 parasequences by sedimentary cyclicities and facies analysis. According to stable time-ranges of subsequences and parasequences, some boundary ages can be marked as 142.90 Ma of the SQ I (Dabeigou Fm) basal bound, 141.16 Ma of the SQ II basal bound, 140.00 Ma of the SQ III (Dadianzi Fm) basal bound, 138.24 Ma of the SQ VI (Zhangjiagou Fm) basal bound and 135.34 Ma of the SQ V (Zhangjiagou Fm) top-bound. A sequence-stratigraphic framework of the Dabeigou-Zhangjiagou Fms has been constructed by tracing sequence-bounds, marker-beds and fossil zones. The basin-development and tectonic activities are studied based on sequence-stratigraphic evidence. 5 sequences represent 5 tectonic cycles and all the 6 sequence-bounds reflect tectonic activities. Tectonic activities clearly influence the basin-development that can be divided into 3 stages in the J-K transitional period. Each stage consists of a down-faulting-rising process, i.e. from strongly rising of basin-bottom, then violently faulting down (with volcanic eruptions) and to gently rising. The development shows a pattern of bottom down-faulting with basin narrowing and rising with spreading. Keywords sequence - stratigraphy - terrestrial stratotype - Jurassic-Cretaceous bound DOI: 10.1360/03yd0451 展开更多
关键词 sequence STRATIGRAPHY terrestrial stratotype Jurassic-Cretaceous bound DOI: 10.1360/03yd0451
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