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1.
本文基于对罗山县皇城山银矿矿化蚀变、矿物标志及方铅矿、闪锌矿、黄铁矿矿物标型特征分析的基础上,认为皇城山银矿床类型为浅成火山低温热液矿床中的高硫化型矿床。皇城山银矿以发育多孔状石英岩的硅化带和高级泥化带特征,矿石中主要为黄铁矿+铜蓝+辉铜矿硫化物组合,表明其具有高硫型浅成热液矿床蚀变及矿物组合特点;银矿石中闪锌矿具贫Fe、富Tl的低温型闪锌矿特征,方铅矿的Sb/Ag比值,黄铁矿Co/Ni比值及Ni-Co图,均表明皇城山银矿具火山低温热液矿床特征。皇城山银矿石中黄铁矿热电效应表现为P、P-N型、N~P型,结合深部勘查工作,判断矿体剥蚀深度小于300 m,矿体剥蚀程度属于上部或近中部,其下一步深部勘查工作难度较大,矿体基本接近尾部。  相似文献   

2.
皇城山银矿床成矿作用经历了热液期和表生氧化期。热液期经历了三个成矿阶段:黄铁矿-硅化阶段、多金属硫化物-硅化阶段和角砾岩化阶段。主成矿阶段为多金属硫化物-硅化阶段,热液作用表现为早期石英在碱性热液作用下溶解和金属硫化物沉淀,随后的温度降低和循环地下水的加入最终SiO2因过饱和而沉淀。成矿物理化学条件为低温、低盐度的酸性环境;矿化程度与火山岩的酸性程度成正比。矿床具以强硅化带为中心向外依次发育高级泥化带(高岭石+石英)和泥化带(蒙脱石+石英)的蚀变分带,与矿化有关的为中期硅化,银及多金属硫化物矿化限于强硅化蚀变带内。从矿石矿物的组合、标型、组构及矿床蚀变分带特征判断,皇城山银矿床具有浅成低温热液矿床中的高硫型矿床典型特征,属高硫型浅成低温热液矿床。  相似文献   

3.
镇康芦子园铅锌铁多金属矿床属大型铅锌铁矿床,对矿床矿石矿物的系统研究表明,矿石主要金属硫化物有闪锌矿、方铅矿、黄铜矿、黄铁矿。根据矿床地质特征、矿物共生组合及相互穿插关系,认为成矿主要分为热液成矿期和表生期,矿床是与燕山期隐伏岩体有关的岩浆热液型矿床。  相似文献   

4.
<正>金属硫化物在热液矿床中的分布非常普遍,其标型特征研究一直以来备受重视,它们与矿床形成条件密切相关,具有成因指示意义。前人对不同矿床类型的矿体中各种金属硫化物的共生关系进行研究,认为共生体中矿物生成顺序对形成时的物理化学环境具有一定的指示意义。山西耿庄金矿床是一个以金为主,伴有银、铅和锌的多金属矿床,产于燕山期隐爆角砾岩体内,属于浅成、中—低温热液型金矿床。其中毒砂、黄铁矿、黄铜矿、闪锌矿及方铅矿是本矿区的主要金属硫化物,  相似文献   

5.
大兴安岭中段系我国重要的多金属矿床和成矿远景区之一。区内经普查、勘探,发现大、中、小型矿床和矿化点数十处。本文是在矿床地质和矿石物质成分研究的基础上,着重探讨了多金属热液矿床中闪锌矿的标型特征与形成温度的关系。闪锌矿的标型特征与成因联系对探讨成矿作用的物理化学条件和提高矿床地质研究程度具有重要的理论意义。我们将取得的研究成果进行了初步综合整理予以报道,但因我们研究水平不高,文中错误不当之处,在所难免,请批评指正。一、矿床地质特征简述  相似文献   

6.
新疆哈密卡拉塔格块状硫化物矿床金银赋存状态研究   总被引:3,自引:0,他引:3  
新疆哈密红海黄土坡VMS矿床位于东天山卡拉塔格隆起带,是卡拉塔格矿集区内新发现的块状硫化物矿床。矿体产于卡拉塔格隆起带核部火山沉积岩建造中,具有典型的VMS型矿床“上层下脉”二元结构特征。该矿床中含金硫化物矿石主要有块状黄铁矿黄铜矿、块状黄铁矿黄铜矿闪锌矿、块状黄铁矿闪锌矿黄铜矿和块状闪锌矿。文中在对各类含金硫化物矿石进行详细的矿相学研究基础上,结合扫描电子显微镜与能谱仪联用技术(SEM/EDS),对硫化物样品中金、银的赋存状态进行研究。结果表明,4种块状硫化物中的主要矿物形成于多个期次,主要包括VMS成矿期(黄铁矿阶段、闪锌矿黄铜矿黝铜矿方铅矿阶段、石英重晶石阶段)、热液叠加期(石英黄铁矿黄铜矿闪锌矿方铅矿阶段)和表生期(铜蓝纤铁矿阶段)。矿区首次发现4颗金银金属互化物(银金矿、碲银矿),其较大的化学成分差异指示了热液环境由中酸性中性转变为更有利于Au、Ag迁移沉淀的偏碱性。后期的偏碱性热液对VMS成矿期形成矿物产生了交代作用,使得Au、Ag活化再富集。由于后期热液叠加改造,红海VMS型矿床中Au、Ag不仅赋存于VMS成矿期后期中低温闪锌矿黄铜矿阶段,也赋存于VMS成矿期早期中高温黄铁矿阶段,并贯穿整个热液叠加期。各含金矿物组合中除4颗金银金属互化物外Au多呈显微不可见状态,推测Au、Ag主要以原子或离子形式赋存于矿物晶格中或矿物空位处。  相似文献   

7.
闪锌矿主要是岩浆期后作用的产物,广泛出现在接触交代矿床和中低温热液矿床中,与脉状矿床有密切关系。在相当数量的石英脉型钨矿床中,如内带型的黑钨矿-白钨矿-多金属硫化物组合的矿床和外带型的黑钨矿-锡石-多金属硫化物组合的矿床中,均伴有锌,在有些矿床中,锌的储量可观,可成为主要伴生矿产。锌的赋存状态主要是形成闪锌矿。闪锌矿可出现在钨矿化的各个阶段和矿体的各个部位,尤其是也出现在钨矿床的地表标志带中,因而闪锌矿的矿物学特征孕育着十分主要的成因信息与找矿信息。为探索脉钨矿床的找矿标志,我们对粤  相似文献   

8.
高凡金矿床是次火山热液型中低温金(银)矿床,对矿石中主要矿石矿物自然金、石英,黄铁矿,银矿物,闪锌矿,方铅矿和方解石等矿物标型性研究,得出了高凡金(银)矿床的矿物标型特征及空间分布规律,利用这些规律可指导该矿床深部的找矿工作及区域上同类型矿床的寻找。  相似文献   

9.
王养民 《甘肃地质》2015,24(1):53-58
陕西凤县水磨坪金矿为破碎带蚀变闪长玢岩型金矿床。通过对该矿床的地质特征、矿体特征、矿石特征等的分析研究,总结了控矿因素,探讨了矿床成因,认为近EW向断裂带控制了金矿体的产出与展布,印支期闪长玢岩脉金砷锑背景值较高,利于赋矿成矿。该矿床属晚古生代低温热液矿床,矿石工业类型为金多金属硫化物难选原生金矿石。  相似文献   

10.
复兴屯矿床位于大兴安岭南段,是一个以银为主,伴生铅锌的超大型矿床。矿体产于早白垩世火山岩及火山碎屑岩中,发育贫铁闪锌矿+方铅矿+黄铜矿+(银)黝铜矿的矿物组合,围岩蚀变以碳酸盐化、高岭土化和叶腊石化为主。其成矿可以划分为以下3个阶段:铜锌硫化物阶段(阶段Ⅰ)、铅锌硫化物阶段(阶段Ⅱ)和银锌硫化物阶段(阶段Ⅲ)。文章对复兴屯矿床闪锌矿开展了LA-ICP-MS微量元素分析,矿床中闪锌矿以富集Cu、Ag、Pb,贫Fe、Cd、Ga、Ge为特征。矿床闪锌矿均为贫铁闪锌矿,暗示复兴屯矿床形成于中低温环境。由阶段Ⅰ至阶段Ⅲ,闪锌矿中的Fe、Mn、In含量逐渐降低,Ga、Ge、Sb含量略有增加,暗示成矿流体温度逐渐下降。复兴屯闪锌矿中Ag可与Cu联合置换Zn进入闪锌矿晶格,这可能是复兴屯矿床闪锌矿中Ag含量高的重要因素。此外,闪锌矿中常见韵律环带,反映了闪锌矿形成过程中成矿流体有多次压力波动,成矿流体多次压力波动引发的流体相分离是矿质沉淀的主要机制之一。闪锌矿微量元素含量与中低温岩浆热液矿床基本一致,明显区别于MVT型矿床、块状硫化物矿床、矽卡岩型矿床和中高温岩浆热液矿床,结合矿床地质特征,认为复兴屯银铅锌矿床属于浅成低温热液矿床。  相似文献   

11.
Advanced argillic lithocaps in the Bolivian tin-silver belt   总被引:2,自引:0,他引:2  
Zones of advanced argillic alteration constituting lithocaps are commonplace in the shallow parts of porphyry copper systems. Similar lithocaps are also recognized in the shallowly eroded southern part of the Bolivian tin-silver belt, where mineralization typically is centred on felsic volcanic domes. A well-preserved lithocap at Potosí is dominated by vuggy residual quartz and contained the world's largest silver resource, whereas the basal remnant of a lithocap at Pulacayo is composed of barren quartz-alunite. Minor gold occurs in the structurally controlled roots of a lithocap at Tasna. The mineralization in these lithocaps is of high-sulphidation type and was generated in the epithermal environment. In contrast, the tin- and base metal-bearing massive sulphide veins and associated sericitic and quartz-tourmaline alteration that underlie the Bolivian lithocaps are typified by sulphides of low sulphidation state, but are dominantly mesothermal rather than epithermal in character. Magma chemistry is believed to account for the characterization of Bolivian lithocaps by silver-tin-antimony and porphyry copper lithocaps by gold-copper-arsenic. Low-grade, bulk-tonnage silver mineralization within Bolivian lithocaps and high-grade tin-bearing veins concealed beneath them both constitute attractive exploration objectives. Received: 13 February 1998 / Accepted: 11 March 1998  相似文献   

12.
紫金山金铜矿床深部成矿作用研究和找矿前景评价的关键   总被引:8,自引:0,他引:8  
邱小平  蓝岳彰  刘羽 《地球学报》2010,31(2):209-215
紫金山铜金矿床是典型的高硫化浅成低温热液矿床, 发育巨厚的热液蚀变帽, 多孔状石英和高级泥化蚀变带等标志性特征; 特别是在金矿体之下出现垂直厚度超过1000米的巨大铜矿体, 属于蓝辉铜矿-铜蓝-硫砷铜矿-明矾石矿物组合的高硫化型浅成低温热液铜矿床类型, 铜硫化物的矿物学研究预示着深部可能变为斑岩型铜矿床。  相似文献   

13.
A previously reported porphyry Cu + Mo deposit in an Eocene pluton within the South Shetland Island magmatic arc has been re-interpreted as three distinct hydrothermal assemblages. The oldest assemblage (1) exsolved under confinement from the deep (~6 km?) cooling magma whereas assemblages (2) and (3) formed during tectonic ± magmatic episodes at depths of < 1.5 km in the late Cenozoic. The three assemblages occur over the 5 × 11 km mapped in Barnard Point tonalite pluton. Assemblage (1) comprises shallowly dipping sheets of aplite, biotite + tourmaline pegmatite, massive ‘grey’ quartz, and quartz + tourmaline + bornite + chalcopyrite + molybdenite veins. Magnetite + tourmaline + chalcopyrite breccias have associated biotite, K-feldspar and muscovite alteration. Fluid inclusions indicate formation from hot (~600°C), saline (40 equivalent weight % NaCl + CaCl2) aqueous-carbonic fluids that exsolved from the partly consolidated magma. The primary control on solution chemistry and nature of fracturing was the depth of pluton emplacement. Assemblage (2) consists of steep, vuggy veins and country-rock breccias, with thick propylitic alteration selvages, cemented by microcrystalline quartz, complex inter-growths of FeMg carbonate, bladed barite and trace amounts of bornite and chalcopyrite. These rocks, previously described as breccia (sensu ‘pebble’) dykes in the porphyry complex, are reinterpreted as an influx of moderately hot (175–330°C), weak to moderately saline (2–21 EWP NaCl), aqueous-carbonic fluids that underwent isobaric boiling at 0.8 to 1.3 km depth. Assemblage (3) consists of thin, hematitic fault infillings formed during a second episode of brittle faulting.  相似文献   

14.
塔北南缘中奥陶统地层序列完整,其上无长期暴露的不整合面,但是钻井揭示其中岩溶储层发育。以上奥陶统桑塔木组剥蚀线为界,塔北隆起可划分为潜山区和内幕区两部分,潜山区以洞穴型、裂缝+孔洞型储层为主;内幕区以裂缝+孔隙+孔洞型储层为主,孔隙+孔洞型储层和洞穴型储层也有发育。岩溶储层总体上呈层状分布,集中发育于中奥陶统顶面以下100 m范围内;平面上自潜山区向内幕区储层发育程度逐渐减弱,局部沿断裂集中分布。通过岩心、薄片、成像测井、水化学等资料和地质背景的分析认为,内幕区上奥陶统富泥质地层隔挡了潜流带地下水外泄地表,致使潜水面处于非完全稳定状态,其下"缓流带"具较高水势,为内幕区地下水运移提供了动力,从而在中奥陶统发生顺层岩溶作用。古隆起及斜坡背景为顺层岩溶储层的发育提供了地质背景,渗透性好的颗粒灰岩和裂缝系统为顺层岩溶作用提供了有效的流体通道,顺层岩溶作用则是各类储集空间形成的关键。  相似文献   

15.
大湖-秦南钼矿床位于小秦岭金矿田北矿带,属于东秦岭钼钨成矿带小秦岭-外方山成矿亚带。其矿床类型为含钼石英脉型,与小秦岭北矿带含金石英脉空间上伴生。根据野外地质观察、PIMA测试等结果,对大湖-秦南含钼石英脉的产出、矿石结构构造、蚀变特征进行了研究。含钼石英脉为奶白色,易碎,发育蜂窝状、团块状、角砾状构造。角砾成分为太华群片麻岩角砾、细脉状浸染状辉钼矿化的中生代花岗斑岩角砾等。蚀变有钾化、硅化、绢云母化、高岭土化以及硬石膏化等。根据野外地质特征,蚀变可分为早期钾化+硅化+绢云母化+黄铁矿化+辉钼矿化,晚期为硅化+高岭土化+硬石膏化等。含钼石英脉中的围岩角砾或多或少地发育高岭土化。辉钼矿化主要充填于石英脉的裂隙和蜂窝中。根据包裹体显微测温数据推测含钼石英脉的成矿温度为134~463℃。含钼石英脉中的δ18 O石英值为10.7‰~11.5‰,δDH2O为-96‰~-110‰;这一特征反映了既有岩浆水,也有变质水和天水的参入,高岭土δ18 O为0.1‰~2.3‰,反映了热液成因。黄铁矿δ34S值为-5.778‰~-7.841‰,以富含轻硫为特征,反映了其形成时有生物硫参入。在此基础上,通过区域地质分析,讨论了高岭土化的成因,进而认为大湖-秦南含钼石英脉很可能是与秦岭造山带在245~211Ma全面陆陆碰撞过程有关的花岗斑岩侵位形成的斑岩型钼矿体,在后期金矿形成时,在酸性热液淋滤下进一步富集。  相似文献   

16.
The Rosia Poieni deposit is the largest porphyry copper deposit in the Apuseni Mountains, Romania. Hydrothermal alteration and mineralization are related to the Middle Miocene emplacement of a subvolcanic body, the Fundoaia microdiorite. Zonation of the alteration associated with the porphyry copper deposit is recognized from the deep and central part of the porphyritic intrusion towards shallower and outer portions. Four alteration types have been distinguished: potassic, phyllic, advanced argillic, and propylitic. Potassic alteration affects mainly the Fundoaia subvolcanic body. The andesitic host rocks are altered only in the immediate contact zone with the Fundoaia intrusion. Mg-biotite and K-feldspar are the main alteration minerals of the potassic assemblage, accompanied by ubiquitous quartz; chlorite, and anhydrite are also present. Magnetite, pyrite, chalcopyrite and minor bornite, are associated with this alteration. Phyllic alteration has overprinted the margin of the potassic zone, and formed peripheral to it. It is characterized by the replacement of almost all early minerals by abundant quartz, phengite, illite, variable amounts of illite-smectite mixed-layer minerals, minor smectite, and kaolinite. Pyrite is abundant and represents the main sulfide in this alteration zone. Advanced argillic alteration affects the upper part of the volcanic structure. The mineral assemblage comprises alunite, kaolinite, dickite, pyrophyllite, diaspore, aluminium-phosphate-sulphate minerals (woodhouseite-svanbergite series), zunyite, minamyite, pyrite, and enargite (luzonite). Alunite forms well-developed crystals. Veins with enargite (luzonite) and pyrite in a gangue of quartz, pyrophyllite and diaspore, are present within and around the subvolcanic intrusion. This alteration type is partially controlled by fractures. A zonal distribution of alteration minerals is observed from the centre of fractures outwards with: (1) vuggy quartz; (2) quartz + alunite; (3) quartz + kaolinite ± alunite and, in the deeper part of the argillic zone, quartz + pyrophyllite + diaspore; (4) illite + illite-smectite mixed-layer minerals ± kaolinite ± alunite, and e) chlorite + albite + epidote. Propylitic alteration is present distal to all other alteration types and consists of chlorite, epidote, albite, and carbonates. Mineral parageneses, mineral stability fields, and alteration mineral geothermometers indicate that the different alteration assemblages are the result of changes in both fluid composition and temperature of the system. The alteration minerals reflect cooling of the hydrothermal system from >400 °C (biotite), to 300–200 °C (chlorite and illite in veinlets) and to lower temperatures of kaolinite, illite-smectite mixed layers, and smectite crystallization. Hydrothermal alteration started with an extensive potassic zone in the central part of the system that passed laterally to the propylitic zone. It was followed by phyllic overprint of the early-altered rocks. Nearly barren advanced argillic alteration subsequently superimposed the upper levels of the porphyry copper alteration zones. The close spatial association between porphyry mineralization and advanced argillic alteration suggests that they are genetically part of the same magmatic-hydrothermal system that includes a porphyry intrusion at depth and an epithermal environment of the advanced argillic type near the surface.Editorial handling: B. Lehmann  相似文献   

17.
大兴安岭地区位于兴蒙造山带的东段,构造、岩浆活动强烈,蕴藏着丰富的内生有色金属、贵金属矿产资源。本文通过对该区内生铜矿床的地质特征、成因类型和年代学研究,初步将区内内生铜矿床划分为斑岩型、浅成热液高硫化型(铜银、铜锡)和接触交代型三种成因类型,除铜锡矿床外,它们的成矿作用均与高钾钙碱系列I型花岗质岩浆密切相关;其中斑岩型和浅成热液高硫化型(铜、银)的成矿分别发生在485Ma、180~170Ma和170~160Ma;而浅成热液高硫化型(铜锡)矿床与A型花岗质岩浆相关,成矿在150~135Ma之间;接触交代型与它们相伴生,主要发生在180~160Ma和150~135Ma。其成矿动力学背景分别与早古生代兴安地块与松嫩地块的拼合碰撞造山、中侏罗世的西伯利亚板块和华北板块的陆缘增生带碰撞缝合造山与早白垩世碰撞造山后的地壳伸展减薄作用过程相适应,矿床在不同阶段的造山挤压与伸展转换或造山期后的伸展阶段就位,这项研究为深入研究该区内生多金属成矿规律提供了科学依据。  相似文献   

18.
Agua Rica (27°26′S–66°16′O) is a world class Cu–Au–Mo deposit located in Catamarca, Argentina. In the E–W 6969400 section examined, the Seca Norte and the Trampeadero porphyries that have intruded the metasedimentary rock are cut by interfingered igneous and hydrothermal heterolithic and monolithic breccias, and sandy dikes. Relic biotite and K-feldspar of the early potassic alteration (370° to > 550 °C) with Cu (Mo–Au) mineralization are locally preserved and encapsulated in a widespread, white mica + quartz + rutile or anatase halo (phyllic alteration) with pyrite + covellite that suggests fluids with temperatures ≤ 360 °C and high f(S2). The Trampeadero porphyry and the surrounding metasedimentary rock with phyllic alteration have molybdenite in stringers and B-type quartz veinlets and the highest Mo grades (> 1000 ppm).Multistage advanced argillic alteration overprinted the earlier stages. Early andalusite ± pyrite ± quartz is preserved in the roots of the argillic halo rimmed by an alumina–silica material and white micas. This alteration assemblage is considered to have been formed at temperatures ≥ 375 °C from condensed magmatic vapor. At higher levels, pyrophyllite replaces muscovite and illite in clasts of hydrothermal breccias in the center and east sector of the study section, suggesting temperatures of 280 to 360 °C. Clasts of vuggy silica in the uppermost levels of the central breccia, indicates that at lower temperatures (< 250 °C), fluids reached very low pH (pH < 2). In this early stage of the advanced argillic alteration, hydrothermal fluids seem to have not precipitated sulfides or sulfosalts.Hydrothermal brecciation was concurrent with fluid exsolution (↑? V), which precipitated intermediate-temperature advanced argillic alunite (svanbergite + woodhouseite) ± diaspore ± zunyite as breccia cement along with abundant covellite + pyrite + enargite ± native sulfur ± kuramite at intermediate depths and in lateral transitional zones to unbrecciated rocks. This mineral assemblage indicates temperatures near 300 °C, oxidized and silica-undersaturated hydrothermal fluids with high sulfur fugacity to prevent gold precipitation. Multiple generations of pyrite, emplectite, colusite, Pb- and Bi-bearing sulfosalts, and native sulfur with Au and Ag, accompanied by alunite introduction in the upper level breccias, probably occurred at lower temperatures, but still high sulfur and oxygen activity. An independent Zn and Pb (as galena) mineralization stage locally coincides with Au–Ag and sulfosalts, and advanced at depth, controlled by fractures and overprinting much of the previous mineralization. A later paragenesis of veinlets of alunite + woodhouseite + svanvergite + pyrite ± enargite that cut the phyllic halo suggests temperatures ~ 250 °C and without woodhouseite + svanvergite, temperatures ~ 200 °C. Kaolinite occurs in the phyllic halo as a late mineral in clots and in veinlets thus, in this zone, the fluid had cooled enough for its formation.  相似文献   

19.
Episyenite is a quartz-depleted vuggy rock resulting from hydrothermal alteration of granitic rocks. This is the first report of its existence in an island arc, which is identified in a deep drill core of the Toki Cretaceous granite distributed in central Japan. In order to understand the petrographical features of the episyenite, neutron porosity measurement, geochemical analysis, microscopic observation, and X-ray computed tomography scanning were carried out. The results show remarkably high porosity (35.4 %) due to interconnecting vugs and the removal of quartz, plagioclase, and biotite. The Rb–Sr isotopic results and the paragenetic sequence of secondary minerals in the vugs suggest that the hydrothermal alteration process can be divided into an episyenitization stage and a later hydrothermal stage. At the episyenitization stage (70.6 ± 3.1 Ma) ca. 6 million years after the emplacement of the unaltered granite (76.3 ± 1.5 Ma), dissolution of quartz, biotite, and plagioclase occurred and was followed by the precipitation of albite, vermicular chlorite, and platy calcite. The episyenitization is considered as a local alteration of the Toki granite in an isotopically closed system. At the later hydrothermal stage, illite and secondary quartz precipitated from circulating meteoric-derived water in the dissolution vugs. Superimposing alteration at the later hydrothermal stage is limited, which results in the preservation of the episyenite in an almost primitive condition.  相似文献   

20.
在含有底水的气藏开发过程中,随着气体的采出,气井井底压力逐渐降低,底水会发生向上锥进的现象,严重影响产气。因此若能预先求得气井水侵动态,这对于开发底水气藏具有重要的意义。同时,与常规底水气藏不同,缝洞型底水气藏呈现出三重介质的特性,溶洞和天然裂缝较发育,其非均质性较强,气体渗流的过程更为复杂。通过采用渗透率变异处理储层中裂缝、溶洞的发育,考虑到裂缝和溶洞的存在仅改变了储集层的渗透率,同时在均质底水气藏水平井水锥动态计算方法的基础上,利用渗透率变异理论建立了缝洞型底水气藏临界产量和水锥突破时间公式,并对其影响因素进行了分析。根据所得公式可以近似求解缝洞型底水气藏中水平井的临界产量、见水时间以及见水位置,可用来指导实际缝洞型储层水平井的合理开发,延缓开发过程中底水锥进,延长见水时间,同时还可以确定见水位置为后续压锥及堵水调剖的实施提供依据。通过建立的数值模拟模型以及实际生产数据,验证了本方法研究的可靠性,数值模拟结果从直观上展示了缝洞型底水气藏水平井水锥研究的正确性。  相似文献   

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