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991.
结合9个野外剖面和17口井,对塔里木盆地玉尔吐斯组沉积演化及其对烃源岩的制约作用进行了系统研究和分析。在精细对比后发现,塔里木盆地下寒武统玉尔吐斯组可分为2个三级层序(SQ1、SQ2)、5个四级层序(sq1—sq5),其中三级层序SQ1可分为3个四级层序,SQ2可分为2个四级层序。SQ1发生在寒武纪初期,海进速度较慢,影响范围相对局限,而SQ2的海进则相对迅速,影响范围较大。四级层序sq1发生在第一次海侵初期,水体浅,主要沉积紫红色白云岩、灰黑色砂屑白云岩,起填平补齐的作用;sq2、sq4发生在海侵—海退的转换时期,是两套深水的沉积,岩性以黑色泥岩、硅质泥岩和硅质岩为主,局部发育泥岩与条带状白云岩互层;sq3、sq5是海退过程中的浅水沉积,主要发育灰色白云岩和藻白云岩,局部有泥质夹层。利用Mn、Fe、Ti、Rb、K、Sr、Ba、Cu、U、V、Mo等元素及其比值进行沉积环境分析表明,sq2时期,水体深度大、盐度低、气候温暖湿润,有利于生物发育,并且其硫化缺氧的环境极其有利于有机质的保存;sq4时期,水体深度较大,盐度相对较小,气候相对温暖湿润,较为适合生物生存,并且其硫化缺氧夹次氧化的环境,较为适合有机质保存。高频海平面变化与沉积环境演化影响着玉尔吐斯组的烃源岩分布与品质,sq2时沉积的烃源岩品质优于sq4,但是其分布范围小于sq4。  相似文献   
992.
黄旭  沈传波  杜利  魏广仁  罗璐  唐果 《现代地质》2021,35(4):997-1008
为探究华北平原的岩溶热储分布规律,以及如何高效开发利用献县凸起和阜城凹陷地热田的地热资源,结合前人研究成果与已有地热井的测井、地震、水化学等资料,分析了岩溶热储分布规律以及献县凸起和阜城凹陷地热田的四大要素即“源、储、通、盖”等地热地质条件,建立了地热田概念模型,并精细评价了地热资源量。研究表明地热田是形成于渤海湾盆地新生代伸展断陷背景下的受深大断裂控制的传导型地热田,主要以大气降水为补给水源,深大断裂和岩溶不整合面为水运移通道。来自太行山和燕山的水再补给、汇聚,在献县凸起及阜城凹陷岩溶热储中富集,形成中-低温传导型地热系统,具有良好的盖层以及高达3.63~5.31 ℃/100 m的地温梯度。蓟县系岩溶热储顶板埋深1 400~1 500 m,有效厚度累计336.1 m;奥陶系岩溶热储顶板埋深2 000~2 500 m,有效厚度累计55.3 m。献县凸起地热田蓟县系岩溶热储可采资源量3.75×109 GJ,折合标煤1.28×108 t,年开采地热资源量可满足供暖面积4 523×104 m2;阜城凹陷奥陶系岩溶储可采资源量0.80×109 GJ,折合标煤0.27×108 t,年开采地热资源量可满足供暖面积954×104 m2。献县凸起及阜城凹陷地热田开发潜力巨大。  相似文献   
993.
速度是水合物勘查的重要参数,但是速度的影响因素众多,给高精度识别水合物带来一定困难。水合物储层岩石物理是研究多种因素对速度影响的有效手段之一。考虑到水合物储层未固结等特征,本文采用SCA-DEM模型,重点对比了孔隙度、饱和度等对纵横波速度以及AVO特征的影响,并构建了一种新的水合物指示因子,消除了由于孔隙变化带来的假异常。岩石物理分析表明该指示因子与水合物饱和度具有很高的相关性。然后,推导得到了基于水合物指示因子的地震反射特征方程,并基于该方程反演得到了水合物指示因子,反演结果与实际钻探结果吻合较好,表明该方法具有一定的实用性以及科学性。  相似文献   
994.
Oil and gas shows are rich in drilling wells in Kaiping sag,however,large oilfield was still not found in this area.For a long time,it is thought that source rocks were developed in the middle-deep lacustrine facies in the Eocene Wenchang Formation,while there is no source rocks that in middle-deep lacustrine facies have been found in well.Thickness of Wenchang Formation is big and reservoirs with good properties could be found in this formation.Distribution and scale of source rock are significant for further direction of petroleum exploration.Distribution characterization of middle-deep lacustrine facies is the base for source rock research.Based on the sedimentary background,fault activity rate,seismic response features,and seismic attributes were analyzed.No limited classification method and multi-attributes neural network deep learning method were used for predicting of source rock distribution in Wenchang Formation.It is found that during the deposition of lower Wenchang Formation,activity rate of main fault controlling the sub sag sedimentation was bigger than 100 m/Ma,which formed development background for middle-deep lacustrine facies.Compared with the seismic response of middle-deep lacustrine source rocks developed in Zhu I depression,those in Kaiping sag are characterized in low frequency and good continuity.Through RGB frequency decomposition,areas with low frequency are main distribution parts for middle-deep lacustrine facies.Dominant frequency,instantaneous frequency,and coherency attributes of seismic could be used in no limited classification method for further identification of middle-deep lacustrine facies.Based on the limitation of geology knowledge,multi-attributes of seismic were analyzed through neural network deep learning method.Distribution of middle-deep lacustrine facies in the fourth member of Wenchang Formation is oriented from west to east and is the largest.Square of the middle-deep lacustrine facies in that member is 154 km2and the volume is 50 km3.Achievements could be bases for hydrocarbon accumulation study and for exploration target optimization in Kaiping sag.  相似文献   
995.
A W-Mo mineralized region is located along the northern margin of the South Qinling tectonic belt of China. WMo mineralization occurs mainly in Cambrian–Ordovician clastic and carbonate rocks, and the ore bodies are structurally controlled by NW–SE-and NNE–SSW-striking faults. Evidence for magmatism in the area is widespread and is dominated by intermediate–felsic intrusives or apophyses, such as the Dongjiangkou, Yanzhiba, Lanbandeng, and Sihaiping granitic bodies. Quartz-vein-type mineralization and fault-controlled skarn-type mineralization dominate the ore systems, with additional enrichment in residual deposits. At present, there are few or insufficient studies on(1) the age of mineralization,(2) the relationship between intermediate–felsic granite and W-Mo mineralization,(3) the source of ore-forming materials,and(4) the metallogenic and tectonic setting of the mineralized area. In this paper, we present geochronology results for numerous intrusive granitic bodies in the South Qinling tectonic belt. U-Pb zircon geochronology of the Lanbandeng monzogranite and Wangjiaping biotite monzogranite yields ages of 222.7 ± 2.3 and 201.9 ± 1.8 Ma, respectively. In contrast to the Late Triassic age of the Lanbandeng monzogranite, the age of the newly discovered Wangjiaping biotite monzogranite places it at the Triassic–Jurassic boundary. Re-Os molybdenite geochronology on the Qipangou W-Mo deposit yielded a model age of 199.7 ± 3.9 Ma, indicating the deposit formed in the early Yanshanian period of the Early Jurassic. Granitoid intrusions in the mineralized area are characterized by composite granite bodies that crystallized at ca.240–190 Ma. While there were multiple stages of intrusion, most occurred at 210–220 Ma, with waning magmatic activity at 200–190 Ma. The Re-Os age of molybdenite in the region is ca. 200–190 Ma, which may represent a newly discovered period of W-Mo metallogenesis that occurred during the final stages of magmatism. The heat associated with this magmatism drove ore formation and might have provided additional ore-forming components for metallogenesis(represented by the Wangjiaping biotite monzogranite). Ore materials in the mineralized area were derived from mixed crustal and mantle sources. Enrichment of the region occurred during intracontinental orogenesis in the late Indosinian–Yanshanian, subsequent to the main Indosinian collision. At this time, the tectonic environment was dominated by extension and strike-slip motion.  相似文献   
996.
Guo  Qian  Peng  Haijun  Hong  Bing  Yao  Hu  Zhu  Yongxuan  Ding  Hanwei  An  Ning  Hong  Yetang 《中国地球化学学报》2021,40(4):473-483
Acta Geochimica - Isotopic signature is a powerful tool to discriminate methane (CH4) source types and constrain regional and global scale CH4 budgets. Peatlands on the Qinghai-Tibetan Plateau are...  相似文献   
997.
The Dongjun Pb-Zn-Ag deposit in the northern part of the Great Xing’an Range (NE China) consists of quartz-sulfide vein-type and breccia-type mineralization, related to granite porphyry. Hydrothermal alteration is well-developed and includes potassic-silicic-sericitic alteration, phyllic alteration and propylitic alteration. Three stages of mineralization are recognized on the basis of field evidence and petrographic observation, demarcated by assemblages of quartz-pyrite-arsenopyrite (early stage), quartz-polymetallic sulfide (intermediate stage) and quartz-carbonate-pyrite (late stage). Zircon LA-ICP-MS U-Pb dating indicates that the granite porphyry was emplaced at 146.7 ± 1.2 Ma (Late Jurassic). Microthermometry and laser Raman spectroscopy shows that ore minerals were deposited in conditions of intermediate temperatures (175–359°C), low salinity (0.5–9.3 wt% NaCl eqv.) and low density (0.60–0.91 g/cm3). Ore-forming fluids were derived largely from magmatic hydrothermal processes, with late-stage addition of meteoric water, belonging to a H2O-NaCl-CO2 ± CH4 system. The δ34SV-CDT values range from 0.75‰ to 4.70‰. The 206Pb/204Pb, 207Pb/204Pb, and 208Pb/204Pb values of the ore minerals are in the ranges of 18.240–18.371, 15.542–15.570, and 38.100–38.178, respectively. Data for the S and Pb isotopic systems indicate that the ore-forming metals and sulfur were derived from Mesozoic magma. Based on the geological characteristics and geochemical signatures documented in this study, we conclude that the Dongjun deposit is a mesothermal magmatic hydrothermal vein-type Pb-Zn-Ag deposit controlled by fractures and related to granite porphyry, in response to Late Jurassic tectonic–magmatic–hydrothermal activity. We further conclude that fluid immiscibility, fluid mixing and fluid-rock interactions were the dominant mechanisms for deposition of the ore-forming materials.  相似文献   
998.
The hydrogeochemical characteristics of geothermal fluids can reveal the genesis of geothermal systems and act as important references for developing and using geothermal resources.This study presents hydrogeochemical processes and thermal cycle mechanisms of typical geothermal fields in Western Sichuan.Based on the geological conditions in Western Sichuan,29 hot springs in three geothermal fields in the Batang and Litang areas were selected for hydrochemical and isotopic (δD andδ~(18)O) analyses.Furthermore,the temperature of the thermal reservoir was calculated and the upflow cooling process of the hot springs was analyzed.Most of the subterranean hot waters in Batang and Litang are of the HCO_3-Na hydrochemical type.The ion variation in Batang is primarily affected by water-rock interactions.There is a strong positive correlation between Na~+,B~-,and Cl~-in Litang,suggesting that they have the same material source.The Na~+and metaboric acid content is relatively high,which indicates that the groundwater runoff in both areas is relatively long-lasting,with reduced flow velocity;moreover,the metasilicic acid content is relatively high,which supports this conclusion.Both hydrogen and oxygen isotopes plot near the atmospheric precipitation line,indicating that groundwater recharge is functionally obtained from precipitation.The calculated thermal storage temperatures in Batang and Litang were 88–199°C and 96–154°C,respectively.The proportion of cold water mixing in Batang was 64%–67%,while that in Litang was 60%–68%.According to the calculated results,the initial thermal cycle depth of the Batang area (4540–4780 m) was greater than that of the Litang area (3150–3960 m).The enthalpy of the deep parental geothermal fluid in Batang was 1550 J/g with a Cl~-concentration of 37 mg/L,while that in Litang was 2100 J/g with a Cl~-concentration of 48 mg/L.  相似文献   
999.
商丹断裂带是一条多期次活动的大型断裂带,区域上也是大型金属矿的赋存带,对金属矿产具有重要的控制作用。文章以商丹断裂带(河南段)为研究对象,在基于孔沟至寨根一带构造剖面的宏观特征和显微构造特征解析的基础上,对研究区控矿构造和机理提出了新的认识。综合研究表明,商丹断裂带(河南段)具多期活动特征,整体呈现"正花状构造"样式。分析方解石机械双晶、矿物动态重结晶及变质矿物组合等显微构造显示,断裂带以韧性变形为主,两侧地层以韧性和脆性变形叠加为特征。区内变质变形温度以绿片岩相、中低温为主,局部可达角闪岩相。早期的韧性剪切活动控制本区金矿的总体控矿界面,晚期的构造活动形成的韧-脆性破碎带对先期形成的矿床进行改造、富集、最终定位,主断裂两侧的次级韧-脆性构造带是未来寻找金矿的有利部位。  相似文献   
1000.
贵州三都—丹寨Hg-Au-Sb成矿带大地构造位于扬子克拉通黔南台陷与华南褶皱带西缘交界处,成矿带内断裂构造极其复杂,矿体延伸、展布明显受构造控制。排正金矿床位于该成矿带中南段,对其成矿有利靶区进行成矿元素地球化学样品分析,探讨成矿元素相关性和赋存状态,反演成矿机制。分析结果显示:(1)矿石中Au元素与As、Pb+Zn、Hg元素均具有正相关性,与Mo元素相关性不强;As元素与Hg、Pb+Zn、Mo元素均具有正相关性,表明矿床内载金矿物主要为毒砂。(2)该金矿床成矿物质主要来源于深部高温含矿岩浆热液,在热液沿构造断裂上移过程中萃取古老地层中成矿元素,As离子作为活化剂,在还原环境下富集成矿。(3)排正金矿床为一处以Au、Pb、Zn金属元素为主的多金属矿床,应加大对伴生Hg、Mo等金属元素的含矿性评价。  相似文献   
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