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1.
兀少波  邵睿涛 《地下水》2020,(1):112-115,282
扶风县城位于渭河盆地咸礼凸起西部,地热资源包括新生界碎屑岩类孔隙型地热资源和下古生界碳酸盐岩类岩溶型地热资源,地热资源条件较好。以扶风佛文化休闲产业园R2地热井为研究对象,采用钢齿牙轮钻头、PDC钻头和镶齿牙轮钻头分别对新生界松散地层和下古生界碳酸盐岩地层进行钻进,建立成井深度为1 900m的二级成井结构,对区域地热资源条件与成井工艺进行研究,结果可知:该地热井取用的新近系上新统蓝田-灞河组热储层、中新统高陵群热储层和下古生界奥陶系热储层为目的层,取水段为923. 3~1 874. 2 m,经产能测试,该井抽水降深40. 8 m时,出水量64. 11 m^3/h,井口水温66℃。按GB/T11615-2010《地热资源地质勘查规范》,扶风县城地热资源属于较适宜开采区;地热资源温度分级属于热水,可用于采暖、理疗、洗浴、温室等;地热水中氟、偏硼酸、偏硅酸、氡等矿物含量具有医疗价值,其中氟含量达到命名矿水浓度,可命名为氟水,具有较高的理疗价值。  相似文献   

2.
谢娜  喻生波  丁宏伟  张明泉 《中国地质》2020,47(6):1804-1812
甘肃省地热资源丰富,其地热资源的开发利用具有较大的潜力。本文介绍了甘肃省地热资源分布概况,结合地区构造、地热水化学特征、地热资源量及开发利用现状探讨了甘肃隆起山地对流型与沉积盆地传导型地热资源的赋存特征,并对两种类型地热资源潜力进行了分析评价。结果表明,沉积盆地地热资源分布于河西、陇西及陇东盆地等,热储类型为裂隙型和孔隙型,热储层自元古宙至新生代均有发育,岩性以砂岩为主;隆起山地型地热资源主要分布于祁连山和西秦岭造山带,热储类型为断裂破碎带,岩性以花岗岩为主;通过潜力计算得知,全省热量开采系数≥0.4的仅占29.17%,表明目前甘肃地热资源开采程度较低,开采潜力较大。  相似文献   

3.
利津县城区的地热资源主要赋存于新生代新近纪和古近纪碎屑沉积岩中,热储类型为层状孔隙-裂隙型热储,地热资源类型属热传导型。新近纪馆陶组热储层组与古近纪东营组热储层组是主要的热储层。该文在论述利津县地热地质条件的基础上,对地热开发的经济、社会、环境效益及开发利用前景进行了分析,对地热开发中的尾水排放和回灌问题进行了探讨,最后提出了地热资源开发与管理方面的建议。  相似文献   

4.
裂谷盆地是指沉积盆地在地质历史演变的某个阶段经历了裂谷时期的盆地。裂谷盆地深层在中国一般是指裂谷盆地中含油气层段埋深>3 500 m的地层,国外则指埋深>4 000 m的地层。中国东部具深层油气田的裂谷盆地主要是中、新生代盆地;全球裂谷盆地深层的大油气藏主要分布于白垩系,其次是上古生界;深层油气藏的储层形式多样,有孔隙型、裂缝型、溶洞-裂缝型及孔隙-裂缝型等;深层油气田的油气运移方向以垂向为主,圈闭则大多以岩性或与断裂有关的构造岩性圈闭为主。其次,盐岩体的活动对圈闭的形成亦十分重要,其类型则以复合型为主。  相似文献   

5.
随着能源供需矛盾的加剧,河北省地热资源开发利用呈快速增长态势,对地热流体可采量及其计算方法的研究亟待加深。通过实例,采用热储法、解析法、统计分析法和数值模拟4种方法对河北平原区层状热储地热流体可开采量进行了评价和对比; 分析了岩涪热储及资源现状。研究认为: 热储法和解析法适合勘查程度较低、无地热井或仅有少量地热开采井和产能试验数据的地热田,其计算精度较低; 统计分析法和数值模拟法适用于勘查程度较高、已开发利用多年、具有多年动态监测资料的地热田,计算结果可靠程度较高; 地热流体中岩溶热储具有温度高、易回灌、可持续性好等特点,主要赋存于古生界和中新元古界地层中; 岩溶热储被新生界地层覆盖,有利于储集层的聚热和保温; 在基岩隆起带(古潜山)岩溶裂隙发育,构成深部热水储集层,可形成有重要开发利用价值的地热田,是下一步地热勘查和开发的主要热储类型。  相似文献   

6.
在“雄县模式”和环境压力的双重驱动下,河北地区已形成我国最大的地热供暖城市群。因此,研究武城凸起地热田地热地质特征,对河北省故城县地热开发具有重要的指导意义。本文通过测井、地震和区域地质资料,结合水化学特征、同位素测试结果的分析,系统分析了地热田的不同类型热储展布、储集层物性、地下热水补给来源和循环路径特征,并精细评价了地热资源量。结果表明武城凸起地热田热储类型主要为馆陶组砂岩热储和奥陶系岩溶热储。砂岩热储区域稳定分布,主要产水层为下馆陶组,底板埋深1 200~1 600 m,单井出水量79~123 m3/h, 井口水温52~54 ℃;岩溶热储有利区带主要分布在寒武—三叠系卷入的背斜核部,呈南北向带状展布,主要产水层为上马家沟组、下马家沟组和亮甲山组,顶板埋深2 100~2 900 m,单井出水量75~98 m3/h,井口水温82~85 ℃。地下热水来源为西部太行山脉和北部燕山山脉,热水沿着NE-SW向断裂破碎带和岩溶不整合面向上水平运移进入浅层热储,通过沧县隆起和邢衡隆起在武城凸起汇集,形成中低温地热田。地下热水质类型为Cl-Na型,最大循环深度为2 822.5~3 032.5 m,14C测年表明砂岩热储和岩溶热储年龄分别为21 ka和32 ka。明化镇组和石炭—二叠系分别为两套热储的直接盖层。武城凸起地热田地热资源量分层精细评价结果表明,热储地热资源量合计4.86×1010 GJ,折合标煤16.6×108 t。年可开采地热资源量可满足供暖面积1.1×108 m2,市场开发潜力巨大。  相似文献   

7.
西藏亚东-谷露裂谷带是新生代的活动构造带,具有构造活跃、地震频繁、热泉广布、大地热流高等特征,孕育了丰富的地热资源。已实现商业开发多年的羊八井地热田和羊易地热田正是位于亚东-谷露裂谷带的中部,而位于该构造带北部的谷露地热田地热资源前景和勘探方向还有待深入认识。为此,本文解析了地表地热构造,对比了羊八井地热模式,分析了谷露地热田的深部热动力学背景,并结合钻井试采资料揭示谷露地热田具有良好的地热资源前景。在此基础上,利用大地电磁和重力预测了谷露地热田的地热分布具有南北分带性,即北部和中部具有深部和浅部两个层次的地热储层,而南部地热储层则以浅部为主。为深入研究亚东-谷露裂谷带的地热系统模式及指导地热勘探开发提供了重要的地球物理依据。  相似文献   

8.
为揭示广东惠州燕山期以来的地质构造演化,以惠州石坝-黄沙洞地区为例,并综合基础地质调查、大地电磁学、岩石地球化学、年代学等方法来分析研究.大地电磁结果显示研究区深部存在连为一体厚超5 km的燕山期花岗岩体岩床,并被新生代断裂切割;丹霞组底砾岩矿物磨圆较差显示出近源沉积特征;谐和年龄及年龄谱图揭示底砾岩年龄约160 Ma...  相似文献   

9.
武汉西部蔡甸地区拥有丰富的地热资源,其热源为地球内部传导热,主要热储层为古生界碳酸盐岩。鉴于武汉中心城区各类地球物理勘查手段受限,充分利用前期江汉油田的石油勘探和水文资料勘探成果,结合2021年4月成功钻探的索河1地热井资料,分析后认为蔡甸地区储热储水构造主要为背斜构造,导热导水通道则主要为断裂;蔡甸地区地热资源主控因素为断裂和古生界碳酸盐岩溶储层,且岩溶储层埋深适中,具备很好的地热资源开发前景;蔡甸地区有利地热资源勘查目标是与深大断裂相伴的各类背斜构造。  相似文献   

10.
中亚地区与中国西部盆地类比及其油气勘探潜力   总被引:7,自引:2,他引:7  
中国西部盆地和中亚某些含油气盆地在地质背景和石油地质条件等方面有一定的相似性,从盆地结构上看,中亚地区的盆地与中国西部盆地大多为具有不同构造属性的构造阶段,相互叠置的叠合盆地;从烃源岩发育特征来看,中下侏罗统的含煤岩系使中国西部与中亚地区烃源层有较好的可比性。勘探实践证明,无论在中亚还是在中国西部该含煤岩系是最重要的烃源层之一,但中国西部绝大多数盆地广泛发育古生界烃源岩,这无疑大大增强了中国西部盆地的生烃潜力。从储集岩特征来看,中亚地区含油气盆地以发育中—新生界储层为主,而中国西部大部分盆地不仅广泛分布中—新生界储层,具有发育古生界储集层的优势;从资源类型来看,中亚地区以天然气占有绝对优势,而中国西部除天然气外,石油资源也有良好的勘探前景。总的来看,中国西部的油气勘探潜力要优于中亚地区的大多数盆地。  相似文献   

11.
中国东部中、新生代含油气盆地众多,为断陷盆地类型,断层发育也往往表现为正断层形式。对这些盆地性质、形成机制以及正断层的力学性质的认识众说纷纭,但以张、张扭性盆地和张、张扭性断层之说占主导。本文从大地构造体系环境、构造型式特点、区域与局部应力场分析、定向岩心破裂面观察、地震反射信息,晚近时期构造形迹(如天然地震裂隙、断裂)组合规律的地质分析以及正断层控油特点等方面,对盆地及控盆断层性质进行了分析研究,认为中国东部某些断陷盆地、NE向控盆正断层和盆内主干NE向正断层为扭性或压扭性,其形成缘于构造应力与重力联合作用的结果。   相似文献   

12.
张杰  程鑫 《山东地质》2009,(8):14-16
烟台市地热资源主要分布在北纬37°15′以北的花岗岩地区断裂构造带交会部位,多属断裂构造控制的对流型中低温地热田。烟台市现有地热井24口,均属热水型,其温度范围26~87℃,主要用于洗浴、养殖、采暖、娱乐4个方面。通过对地热资源的勘查开发利用现状和开发中存在的问题分析研究,进而提出地热资源勘查开发利用的远景规划。  相似文献   

13.
Fault has an important influence on the storage and movement of geothermal water. The Zhangzhou Basin is wholly located in a granodiorite rock mass. Due to the low permeability of granodiorite, faulted structure has an evident control action on the hydrothermal activity of geothermal fields. Hot springs in Zhangzhou Basin crack along Pingtan-Dongshan Fault to the northeastern direction and emerge along Fu’an-Nanjing Fault. Through measurement of the temperature of several hot springs in the Basin, we found the temperature along the northwestern direction of Zhangzhou-Tianbao Fault is high and the temperature gap between the two sides of Yangxi-Yuanshan Fault is huge; the estimation of geothermal reservoir temperature of geothermal water through quartz geothermometer indicates that the geothermal reservoir temperature of the northern area of Nanjing-Xiamen Fault is obviously higher than that of southern area. Such result indicates that Fault obviously obstructs underground heat source. Under the condition that the average geothermal gradient of the Zhangzhou Basin is set, the circulation depth of the geothermal water of the Zhangzhou Basin measured by geothermal reservoir temperature is 3 550-5 200 m and the circulation depth of the geothermal water of the north of Nanjing-Xiamen Fault is deeper than that of the South.  相似文献   

14.
Exploration Potential of Marine Source Rocks Oil-Gas Reservoirs in China   总被引:1,自引:0,他引:1  
So far,more than 150 marine oil-gas fields have been found onshore and offshore about 350. The marine source rocks are mainly Paleozoic and Mesozoic onshore whereas Tertiary offshore.Three genetic categories of oil-gas reservoirs have been defined for the marine reservoirs in China:primary reservoirs,secondary reservoirs and hydrocarbon-regeneration reservoirs.And three exploration prospects have also been suggested:(1)Primary reservoirs prospects,which are chiefly distributed in many Tertiary basins of the South China Sea(SCS),the Tertiary shelf basins of the East China Sea (ECS)and the Paleozoic of Tarim basin,Sichuan basin and Ordos basin.To explore large-middle-scale even giant oil-gas fields should chiefly be considered in this category reservoirs.These basins are the most hopeful areas to explore marine oil-gas fields in China,among which especially many Tertiary basins of the SCS should be strengthened to explore.(2)Secondary reservoirs prospects,which are mainly distributed in the Paleozoic and Mesozoic of the Tarim basin,Sichuan basin,Qiangtang basin and Chuxiong basin in western China,of which exploration potential is less than that of the primary reservoirs.(3)Hydrocarbon-regeneration reservoirs prospects,which are chiefly distributed in the Bohai Bay basin,North Jiangsu-South Yellow Sea basin,southern North China basin,Jianghan basin, South Poyang basin in eastern China and the Tarim basin in western China,of which source rocks are generally the Paleozoic.And the reservoirs formed by late-stage(always Cenozoic)secondary hydrocarbon generation of the Paleozoic source rocks should mainly be considered to explore,among which middle-small and small oil-gas fields are the chief exploration targets.As a result of higher thermal evolution of Paleozoic and Mesozoic source rocks,the marine reservoirs onshore are mainly gas fields,and so far marine oil fields have only been found in the Tarim basin.No other than establishing corresponding marine oil-gas exploration and development strategy and policy, sufficiently enhancing cognition to the particularity and complexity of China's marine petroleum geology,and applying new thoughts,new theories and new technologies,at the same time tackling some key technologies,it is possible to fast and effectually exploit and utilize the potential huge marine oil-gas resources of China.  相似文献   

15.
According to the geothermal geological conditions, the geothermal resources in Zibo can be divided into sedimentary basin type and tectonic basin type. The main thermal reservoirs of sedimentary basin type are the Neogene Guantao Formation and the Paleogene Dongying Formation.The thermal reservoirs of tectonic basin type are mainly the Ordovician Majiagou Group. The characteristics of reservoir, cap, pass and source of thermal resource types in different areas are elaborated. Based on the analysis of the well-forming conditions of the existing geothermal wells in the area, combined with the geothermal anomaly areas and hydrogeochemistry, it was discovered that the fault structures in the area, especially the deep faults such as Yuwangshan fault, Wangmushan fault, Zhangdian fault and Chaomizhuang graben, play an important role in controlling the occurrence and distribution of tectonic basin-type geothermal resources in Zibo City.  相似文献   

16.
According to the geothermal geological conditions, the geothermal resources in Zibo can be divided into sedimentary basin type and tectonic basin type. The main thermal reservoirs of sedimentary basin type are the Neogene Guantao Formation and the Paleogene Dongying Formation.The thermal reservoirs of tectonic basin type are mainly the Ordovician Majiagou Group. The characteristics of reservoir, cap, pass and source of thermal resource types in different areas are elaborated. Based on the analysis of the wellforming conditions of the existing geothermal wells in the area, combined with the geothermal anomaly areas and hydrogeochemistry, it was discovered that the fault structures in the area, especially the deep faults such as Yuwangshan fault, Wangmushan fault, Zhangdian fault and Chaomizhuang graben, play an important role in controlling the occurrence and distribution of tectonic basin-type geothermal resources in Zibo City.  相似文献   

17.
石卓  金旭  管彦武  陈晓冬 《世界地质》2010,29(3):485-489
赤峰热水镇地热田内发育有南北向、北西—南东向、北东—南西向及东西向断裂构造,这些断裂大部分为张性断裂,并构成地热田热水上升的主要通道。热水的补给区在远离地热田的西部和北部山区,天水从此处渗透到地下深处,缓慢流动到地热田下部,被侵入的花岗岩和玄武岩所构成的热源以热传导方式加热,再沿断裂、裂隙上升,形成了地热田浅部热水储集层。本地热田热水属于天水起源的中、低温裂隙水。  相似文献   

18.
Fracture seepage and heat transfer in the geothermal reservoir of carbonate rocks after the reinjection of low temperature geothermal return water is a complex coupling process,which is also the frontier of geothermal production and reinjection research. Based on the research of cascade comprehensive development of geothermal resources in Beijing-Tianjin-Hebei (Xian County),the carbonate geothermal reservoir of Wumishan formation in the geothermal field in Xian County is investigated. With the development of the discrete fracture network model and the coupling model of seepage and heat transfer,the numerical solution of seepage field and temperature field with known fracture network is reached using the finite element software COMSOL,and the coupling process of seepage flow and heat in carbonate rocks is revealed. The results show that the distribution of temperature field of fractured rocks in geothermal reservoir of carbonate rocks has strong non-uniformity and anisotropy. The fracture network is interpenetrated,which constitutes the dominant channel of water conduction,and along which the fissure water moves rapidly. Under the influence of convective heat transfer and conductive heat transfer,one of the main factors to be considered in the study of thermal breakthrough is to make the cold front move forward rapidly. When the reinjection and production process continues for a long time and the temperature of the geothermal reservoir on the pumping side drops to a low level,the temperature of bedrocks is still relatively high and continues to supply heat to the fissure water,so that the temperature of the thermal reservoir on the pumping side will not decrease rapidly to the water temperature at the inlet of reinjection,but will gradually decrease after a long period of time,showing an obvious long tail effect. The distribution of fractures will affect the process of seepage and heat transfer in carbonate reservoirs,which should be considered in the study of fluid thermal coupling in carbonate reservoirs.  相似文献   

19.
盆地潜凸起岩溶热储地热田是我国主要供暖用热储之一,具有分布面积广、水温高、水量大等特点,是北方清洁供暖的重要可再生热源。本文以菏泽潜凸起岩溶热储地热田为例,通过地质构造、岩溶发育特征、同位素和水文地球化学特征、地温场空间分布规律、地热水动力场的系统分析,揭示地热田岩溶地热水补给源、运移途径和富集机理:地热水来源于东北部梁山、东部嘉祥一带基岩山区大气降水入渗补给,主要循环富集于层间岩溶与断裂破碎带复合处。根据地温场空间分布特征揭示的热源及其传递和聚集特征,提出了四元聚热机制,一元是大地热流毯状传导聚热、二元是凸起区高热导率分流聚热、三元是导热断裂或岩体接触带带状对流聚热、四元是地下水运移传导-对流聚热。在热储富集和聚热成因机理研究基础上,构建了基于水源、热源及深部岩溶发育特征的地热田成因机理模型,揭示了地热能富集规律。  相似文献   

20.
中国沉积盆地型地热资源特征   总被引:1,自引:0,他引:1       下载免费PDF全文
张薇  王贵玲  刘峰  邢林啸  李曼 《中国地质》2019,46(2):255-268
地热资源作为一种可再生清洁能源,对可持续发展有着重要的意义。本文通过分析中国沉积盆地型地热资源特点,对主要热储层分布进行了论述,并在此基础上对不同热储的水化学特征进行了总结,评价了我国主要沉积盆地型地热资源潜力。沉积盆地型地热资源主要为中低温地热资源,是中国水热型地热资源的主要类型,约占水热型地热资源总量的89%,具有储集空间广、厚度大,地热资源热储类型多、储量大,赋存中低温地热水,资源可利用程度高等特点。沉积盆地型地下热水水化学类型一般由补给区HCO_3-Na型、HCO_3·Cl-Na型等低矿化水,逐渐过渡为Cl·HCO_3-Na型,最终到排泄区或封闭状态下变为Cl-Na型等高矿化水。沉积盆地中热盆地热资源储存量较大,占到主要沉积盆地总储存量的54%,地热资源可开采量占到主要沉积盆地总可开采量的59%,温盆地热资源储存量占到42%,可开采量占到40%,冷盆地热资源储存量仅占到4%,可开采量占到1%。应进一步加强地热资源勘查工作;积极开展地热资源回灌,保证可持续开发利用;推进地热资源梯级综合利用;建立地热资源监测网。  相似文献   

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