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1.
干热岩(HDR)是指不含或仅含少量流体,温度高于180 ℃,其热能在当前技术经济条件下可以利用的岩体。作为一种重要的非常规地热资源,干热岩的开发利用可以借鉴页岩油气的成功经验,采用相似的技术发展路径,找到“地热甜点”,开发出低成本且高效的钻完井技术,逐步形成和完善技术体系,建立与对象相适应的生产运行模式,以期实现对这种巨大资源的有效开发利用。增强型地热系统(EGS)被认为是干热岩资源开采的一种重要方式。EGS最初被称为工程型地热系统,后来才统称为增强型地热系统,是指通过实施特殊的工程工艺,改善地层储集性能或(和)向地层中注入流体,以实现对地热资源的有效开发。其基本方法原理为在干热岩体内钻两口或多口井,将低温流体通过注入井注入干热岩体的天然裂缝系统,或注入通过压裂技术在钻井之间建立的具有水力联系的人工裂缝中加热,通过吸收干热岩内所蕴含的热能,将流体温度提高到一定程度后从生产井采出至地表或近地表进行利用,形成人工热交换系统,用于发电或取暖等。采用EGS技术开发干热岩地热资源,选区选址恰当与否是能否取得成功的最关键环节之一。中深层地热资源可分为水热型和干热岩型两大类、五亚类。其中,干热岩根据其热储孔渗条件差异又可分为无水优储、无水差储和无水无储三亚类,适合作为EGS开发对象的干热岩资源为其中的无水优储和无水差储两种类型。五类地热资源规模呈金字塔形,开发技术难度逐渐增加。基于由热储埋深、热储温度、热储岩性、热储物性、盖层厚度、盖层断裂发育条件等组成的地质资源条件,由钻探成井技术、储层改造技术、管理运营技术组成的工程技术条件,以及由地热需求和资源经济性组成的经济市场条件三个因素,本文建立了三因素分析与多层次指标分解法相结合的干热岩EGS选区评价方法和关键指标,在国内干热岩资源条件较好的17个候选区中,优选出西藏羊八井高温地热区和渤海湾盆地济阳坳陷潜山分布带作为EGS试验有利区。  相似文献   

2.
亢方超  唐春安 《地学前缘》2020,27(1):185-193
地热能赋存于地球内部岩土体、流体和岩浆体中,是一种永久的、可再生的、储量丰富的清洁能源。地热能的开发,尤其是干热岩的开发利用,有可能成为解决人类未来能源危机的重要途径。目前采用的干热岩开采方法被称为增强型地热系统(EGS)。热储地质环境的复杂性和水力化措施对天然裂隙的依赖性,造成多数的EGS项目存在热储体积和换热面积不足、工质流量小、终端温度低,以及诱发地震风险等局限性,致使干热岩开发始终未能大规模商业化。基于开挖的增强型地热系统(EGS-E)的提出为突破传统EGS的技术弊端和规模局限提供了新思路。文章在其概念模型的基础上,从系统原理、工程构想、技术优势等方面对EGS-E进行了更详尽的阐述。EGS-E采用开挖、爆破、崩落等采矿技术,形成了独特的热储致裂系统和热能交换系统,能够大幅度降低地质环境对热储质量的限制,具备构建定制的热储空间、形成充足的换热面积,维持稳定的工质流量与温度及减少诱发地震风险等优势,为干热岩开发的商业化提供了新的解决方案。  相似文献   

3.
干热岩资源和增强型地热工程:国际经验和我国展望   总被引:1,自引:0,他引:1  
干热岩(HDR)是一种没有水或含有少量水的高温岩体,保守估计地壳中3~10 km深处干热岩所蕴含的能量相当于全球所有石油、天然气和煤炭所蕴藏能量的30倍。增强型地热系统(EGS)是指通过水力压裂等工程手段在地下深部低渗透性干热岩体中形成人工地热储层,采出相当数量热能的人工地热系统。EGS的研究与开发已有40年的历史,但早期只局限在美国、英国、法国、日本、澳大利亚等国家,我国这方面的研究于近几年起步。目前干热岩的开发面临诸多挑战,如大体积人工裂隙热储的建造、实现EGS商业化需要进一步研究和技术开发等。本文回顾分析了国际上重要EGS示范场地建设和研究过程中所取得的经验和积累的教训,讨论了我国近几年的研究进展,希望为我国今后EGS研究和工程化示范提供参考和借鉴。  相似文献   

4.
Hot dry rock (HDR) is an important geothermal resource and clean energy source that may play an increasingly important role in future energy management. High-temperature HDR resources were recently detected in deep regions of the Gonghe Basin on the northeastern edge of the Tibetan Plateau, which led to a significant breakthrough in HDR resource exploration in China. This research analyzes the deep temperature distribution, radiogenic heat production, heat flow, and crustal thermal structure in the Qiaboqia Valley, Guide Plain, and Zhacanggou area of the Gonghe Basin based on geothermal exploration borehole logging data, rock thermophysical properties, and regional geophysical exploration data. The results are applied to discuss the heat accumulation mechanism of the HDR resources in the Gonghe Basin. The findings suggest that a low-velocity layer in the thickened crust of the Tibetan Plateau provides the most important source of constant intracrustal heat for the formation of HDR resources in the Gonghe Basin, whereas crustal thickening redistributes the concentrated layer of radioactive elements, which compensates for the relatively low heat production of the basal granite and serves as an important supplement to the heat of the HDR resources. The negative effect is that the downward curvature of the lithospheric upper mantle caused by crustal thickening leads to a small mantle heat flow component. As a result, the heat flows in the Qiaboqia Valley and Guide Plain of the Gonghe Basin are 106.2 and 77.6 mW/m2, respectively, in which the crust-mantle heat flow ratio of the former is 3.12:1, indicating a notably anomalous intracrustal thermal structure. In contrast, the crust-mantle heat flow ratio in the Guide Plain is 1.84:1, which reflects a typical hot crust-cold mantle thermal structure. The Guide Plain and Zhacanggou area show the same increasing temperature trend with depth, which reflects that their geothermal backgrounds and deep high-temperature environments are similar. These results provide important insight on the heat source mechanism of HDR resource formation in the Tibetan Plateau and useful guidance for future HDR resource exploration projects and target sites selection in similar areas.  相似文献   

5.
广东东莞盆地地热地质条件及勘探前景   总被引:1,自引:0,他引:1  
为探讨广东中新生代盆地隐伏地热资源的勘探开发前景,在充分搜集大量资料的基础上,根据沉积盆地地热资源形成的原理,结合东莞盆地地热地质条件,对东莞盆地地热的热源、储层、盖层、热水通道条件进行分析研究。结果表明,东莞盆地具备较好的成热条件,具有形成热传导型中低温地热系统的地热地质条件,在断裂破碎带尤其是断裂交汇地段是沉积盆地最有利的成热部位,勘探开发前景良好。  相似文献   

6.
Earth-reservoirs are increasingly exploited today with the extraction of resources, such as heat and hydrocarbons, and the large-scale emplacement of waste, such as CO2 sequestration. The characterization, site investigation, predictive modeling and long-term monitoring are dependent on the processes being investigated and modeled. In most cases complex coupled processes have to be addressed in a geologically complex rock mass system. In this paper we present a conceptual holistic framework known as geomechanical facies linking all the scales of investigation, characterization and reservoir development methods. We demonstrate this concept on the work undertaken during the design and development of the enhanced geothermal systems (EGS) systems at the forefront of European Hot-Dry-Rock (HDR) technology, Soultz-sous-Forêts (France) and Spa Urach (Germany). Soultz-sous-Forêts is situated within granitic rocks and an active tectonic graben system in the central part of the Rhine Graben. It presents conditions of lithology, temperature, stress, hydraulics and geochemistry that are very different from those at Spa Urach, located in a very dense gneiss formation in the South German crystalline complex. Spa Urach exhibits more elastic behavior and is set tectonically within an almost inactive strike-slip stress field described in more detail in Sects. “Drill core analysis” and “Hydraulic stimulation at Spa Urach”. This paper compares the exploration and field development methods used at these two sites against the back drop of the geomechanical facies concept. Issues addressed include the key parameters for flow and heat transport properties, coupled hydro-mechanical process identification, the success of the HDR reservoir as a heat exchanger and exploration techniques applicable to the different facies. Identification of the key geomechanical facies gives an indication as to which technologies will prove more efficient in the application of HDR technology. The results of this study will hopefully help in developing heat recovery schemes for the long-term economical operation of future HDR plants and EGS as well as assist in the understanding of engineered geosystems.  相似文献   

7.
博罗—大亚湾断陷区位于广东省惠州市西南部,处在我国东南沿海构造活动带,自新生代以来,受太平洋板块和欧亚大陆板块俯冲作用的影响,洋陆系统相互作用导致构造活动活跃,岩浆侵入、火山喷发频繁,地震活动强烈,地表热流值较全国而言比较高,沿着北西走向的博罗—大亚湾线性断陷系统内发育厚层的陆相碎屑沉积,众多的高温热泉出露在裂陷边界,显示出良好的地热资源潜力。通过研究分析深部重磁电震等地球物理资料,发现区域内不仅拥有丰富的浅层次水热型地热热源,深部层位可能存在优质的干热岩储层,初步推断其热源来自新生代南海地幔底辟作用,其导致壳幔物质非均匀流动,在陆壳地区底部发生熔融,向浅部不断传导形成线性热隆伸展构造,控制着整个断陷内的地热系统。  相似文献   

8.
苏北盆地属于中、新生代“断陷型”盆地,发育前震旦系变质基底及古生代海相台地沉积,经历燕山期大规模岩浆-火山-构造活动,之后连续断陷沉降并沉积了厚度巨大的新生代地层;新生代苏北盆地处于持续活跃的洋陆构造带内,其特殊的构造位置使区内拥有相对高的大地热流值和较大的地温梯度,具有巨大的地热资源潜力。基于区域地热地质综合研究,本文针对苏北盆地地质构造特征、地温数据、地球物理信息等系统分析,初步证实了盆地内不仅存在浅部中低温地热资源,而且推断出盆地深部拥有温度较高的干热岩资源,其热源主要来源于深部的地幔,是本地区新生代区域伸展裂陷、地幔上涌、岩石圈减薄等作用的结果。根据干热岩选区的科学准则,盆地内优势前景区拥有丰富的动态热源、导热效果极佳的热通道、规模巨大的优势热储、良好保温作用的热盖层,并依据此初步建立成因模型,为进一步勘探与开发提供参考依据。  相似文献   

9.
《China Geology》2020,3(1):173-181
The Beijing-Tianjin-Hebei region boasts rich geothermal resources and new achievements have been made in the exploration and development of geothermal resources in this region based on previous regional investigation. In detail, geothermal reservoirs of Gaoyuzhuang Formation of Jixian System and Changcheng System in Xiongan New Area have been recently discovered, opening up the second space of geothermal resources; the calculation method of the recoverable resources of geothermal fluid with reinjection being considered has been improved in Beijing-Tianjin-Hebei region, and uniform comprehensive assessment of shallow geothermal energy, hydrothermal geothermal resources, and hot dry rocks (HDR) geothermal resources in the whole Beijing-Tianjin-Shijiazhuang region has been completed. The scientific research base for cascade development and utilization of geothermal resources in Beijing-Tianjin-Hebei region has applied hydraulic fracturing technology to the geothermal reservoirs in Gaoyuzhuang Formation. As a result, the production capacity doubled and two-stage cascade utilization composed of geothermal power generation and geothermal heating were realized, with the first-phase installed capacity of 280 kW and the geothermal hearing is 30000 m2. In this way, a model of the exploration, development, and utilization of geothermal resources formed. Large-scale utilization has become the future trend of geothermal resource development in Beijing-Tianjin-Hebei region, and great efforts shall be made to achieve breakthroughs in reinjection technology, geothermal reservoir reconstruction technology, thermoelectric technology and underground heat exchange technology.  相似文献   

10.
西张地区中低温地热资源利用前景分析   总被引:1,自引:0,他引:1  
西张地区为北亚热带沿海湿润气候区域,季风盛行,夏季需要制冷.冬季需要供暖.因此,对于浅层地热能的开发利用具有得天独厚的自然条件.通过地温测量的调查方法,观测和研究地球内部各种热源形成的地热场随时间和空间的分布规律,进一步推断西张家地区地质构造,确定地热钻井位置,再通过可控源大地音频电磁测深方法,推断深部地层结构、热储埋深及断裂位置,确定地热钻井位置,最后进行地热钻井验证和单井地热资源评价.研究结果表明;本区地热资源具有很大的利用前景.  相似文献   

11.
酒东盆地是酒泉、嘉峪关两市所在地,据以往石油勘探和近年地热勘查资料分析,对控制地热资源的地质构造和地层结构条件重新再认识。基于酒泉周边地段地热井实施,因水温不高而制约和影响对地热资源的开发利用,本文通过地热井和物探勘查资料对比,明确了热储层位和水温不高的原因,揭示出市区地热开发有利地段。并认为地热勘查方法中可控源音频大地电磁和地震勘探方法较已往直流电测深对勘查目的热储层有更高分辩率和有效性。  相似文献   

12.
北京地区地热资源开采评价   总被引:1,自引:0,他引:1  
地热通常指那些能够为人类所开发和利用的地球内部的热资源。地热资源是可供工业、农业利用的生态型能源,具有巨大的市场潜力。地热资源作为一种相对清洁的替代能源,对其进行开采评价有助于地热资源合理有效地利用。以北京某地热井为例,从地热温度、矿物质含量、开采量及水质等方面对地热资源进行了评价。在水质评价中通过医疗应用评价、饮用矿泉水评价、生活饮用水评价等方面对地热资源的应用类型进行分析评价,其中医疗应用评价中对地热水的机械、温度、化学成份等的医疗作用进行评价。  相似文献   

13.
干热岩是一种重要的地热资源,绝大部分以开采地壳中生代以来中酸性侵入岩体中所蕴含的热量为主。东南沿海地区是中国最主要的高放射性花岗岩分布区,发育大面积的中生代酸性花岗岩体,是寻找干热岩的良好靶区。通过研究东南沿海大地构造背景、区域大地热流分布、地壳厚度、居里面埋深及新构造等条件,分析了东南沿海干热岩资源的赋存背景,对福建地区是否存在干热岩进行了探讨,并通过控热构造分析提出了东南沿海干热岩资源的成因模式,初步建立了东南沿海干热岩成藏的三元聚热模型,总结了漳州、惠州等地区的干热岩资源靶区勘查进展,相关研究为今后中国东南沿海地区干热岩勘查评价提供了基础。   相似文献   

14.
There are many arguments on energy sources and main controlling factors of geothermal fields, so a systematic study on the distribution of ground temperature fields shall be necessary. In this paper the thermal conduction forward method of geothermal field is used to simulate cooling rate of abnormal heat sources and heat transfer of the paleo-uplift model. Combined with a large number of geothermal field exploration cases and oil exploration well temperature curves of domestic and foreign, the following conclusions are drawn:(1) According to the magmatic activity time, the magmatism activities are divided into two categories: Magma active areas(activity time 500 000 years) and weak/magma inactive areas(activity time 500 000 years). The latter has a fast cooling rate(the cooling time of the magma pocket buried around 10 km is less than 200 000 years) after it has intruded into the shallow layer and it has no direct contribution to modern geothermal fields;(2) China belongs to a weak/magma inactive area such as Tengchong region and Qinghai-Tibet region because the chronological data of these regions show that its magma activity time is more than 500 000 years;(3) The temperature of most geothermal fields can be obviously divided into three segments in the vertical direction: A high geothermal gradient segment(Segment H) at the surface, then a low geothermal gradient segment(Segment L) at a secondary depth, and finally a lower temperature segment(Segment D) at a deeper depth. The temperature isoline presents a mirror reflection relation on the temperature profile, indicating that geothermal field is dominated by heat conduction, rather than having an abnormally high temperature "heat source" to provide heat;(4) Near-surface(0-5 km) materials' lateral heterogeneity caused by tectonic movement shall probably be the main controlling factor of ground temperature fields.  相似文献   

15.
There are many arguments on energy sources and main controlling factors of geothermal fields, so a systematic study on the distribution of ground temperature fields shall be necessary. In this paper the thermal conduction forward method of geothermal field is used to simulate cooling rate of abnormal heat sources and heat transfer of the paleo-uplift model. Combined with a large number of geothermal field exploration cases and oil exploration well temperature curves of domestic and foreign, the following conclusions are drawn: (1) According to the magmatic activity time, the magmatism activities are divided into two categories: Magma active areas (activity time < 500 000 years) and weak/magma inactive areas (activity time > 500 000 years). The latter has a fast cooling rate (the cooling time of the magma pocket buried around 10 km is less than 200 000 years) after it has intruded into the shallow layer and it has no direct contribution to modern geothermal fields; (2) China belongs to a weak/magma inactive area such as Tengchong region and Qinghai-Tibet region because the chronological data of these regions show that its magma activity time is more than 500 000 years; (3) The temperature of most geothermal fields can be obviously divided into three segments in the vertical direction: A high geothermal gradient segment (Segment H) at the surface, then a low geothermal gradient segment (Segment L) at a secondary depth, and finally a lower temperature segment (Segment D) at a deeper depth. The temperature isoline presents a mirror reflection relation on the temperature profile, indicating that geothermal field is dominated by heat conduction, rather than having an abnormally high temperature “heat source” to provide heat; (4) Near-surface (0-5 km) materials’ lateral heterogeneity caused by tectonic movement shall probably be the main controlling factor of ground temperature fields.  相似文献   

16.
鄂尔多斯周缘地质构造对地热资源形成的控制作用   总被引:10,自引:6,他引:10       下载免费PDF全文
地热资源是一种宝贵的清洁矿产资源,属于新能源家族中重要成员之一。地热资源的形成严格受地质构造控制。随着我国能源勘探工作重点西移,在鄂尔多斯盆地特别是在其周缘断陷盆地中发现了储量丰富的中-低温地热资源,但是,对其形成机理与属性研究却明显不足,在一定程度上制约了该地区地热资源的广泛利用。本文在总结研究鄂尔多斯及其周缘断陷盆地地质构造特征的基础上,系统全面地总结了地质构造和地热研究成果,定性分析了大地热流、地温梯度和地温场分布与地质构造的关系。研究认为,鄂尔多斯块体是一个相对完整、断裂不发育的构造单元,块体内大地热流、地温梯度整体偏低。然而鄂尔多斯块体周缘构造边界带则呈现出环状高值异常,带内热流值、地温梯度都比块体内部高。说明鄂尔多斯周缘地质构造控制着地热资源的形成。  相似文献   

17.
我国东南沿海干热岩赋存前景及与靶区选址研究   总被引:5,自引:0,他引:5  
蔺文静  甘浩男  王贵玲  马峰 《地质学报》2016,90(8):2043-2058
干热岩资源是未来重要的清洁型能源,干热岩资源靶区选址是进行干热岩资源开发利用最基础的工作。本文在综合国内外相关干热岩开发项目的基础上,系统总结了干热岩选址的地热地质学指标,并对我国东南沿海地区的干热岩赋存背景进行论述,选取了广东阳江新州、广东惠州黄沙洞、雷琼断陷盆地、海南陵水等几个地区作为我国东南沿海干热岩开发的重点潜力靶区,在综合分析各靶区深部地热地质背景、深部热异常的基础上,建立了研究区深部温度场模型,进行了干热岩资源靶区选址对比研究,对下一步优先勘查靶区及勘查方案提出了建议。  相似文献   

18.
贵州西部威水背斜地热赋存规律及靶区预测研究   总被引:5,自引:5,他引:0       下载免费PDF全文
威水背斜紧邻六盘水市区,具备形成中低温地热资源的有利地热地质条件,潜在地热资源丰富。但因区内地质构造条件复杂,人们对热储构造、类型、地热资源埋藏条件及空间分布特征等认识不够,以致该地区在地热资源开发利用方面尚未取得实质性突破。为研究威水背斜地热赋存规律并进行靶区预测,以前期的实际勘查工作成果为支撑,在对相关勘查资料综合整理和科学分析的基础上,通过对威水背斜地质背景、热源条件、热储构造特征、地热载体及其运移和补给等分析,明确了研究区地热资源类型属受埋深条件控制的板内中低温型,热源主要来自地层自然增温(即地温梯度),地热载体以地下水为主,热储构造类型主要为层状热储类型; 结合已有地热工程施工情况,分析了该工程未能取得预期效果的关键原因,揭示了研究区热储层为泥盆系上统尧梭组、望城坡组和泥盆系中统独山组,根据热储层顶界深度等值线对威水背斜进行了靶区预测,推算可获得的理论保守水温为44.7~59.7 ℃,稳定地热水涌水量不小于500 m3/d,为下一步地热资源勘查与开发工作提供了依据。  相似文献   

19.
中滩地热田是受断裂构造控制的裂隙型地热田,属低温地热资源,储量丰富,水质良好。本文通过对大量勘查资料的分析总结,阐述了地热赋存特征,分析了地热成因,目的是为后期合理、有序地开发利用地热资源提供依据。  相似文献   

20.
沧县隆起北部地区地热资源丰富,但关于地热田的形成机制与主控因素仍存在争议。通过收集区域地质资料和井温资料,并结合热传导正演模拟,系统地分析了研究区内地温梯度横向与垂向的特征、不同地质条件下地温场的分布规律,并正演了两条实测地热剖面,分析了研究区内地温场分布的主控因素。研究表明,横向上地温梯度在凸起区相对较高,凹陷区相对较低,与基岩起伏具有良好的对应关系,并且垂向上地温梯度的变化可分为两段,在浅部沉积盖层较高,以热传导为主,下部的寒武系、奥陶系和蓟县系储层地温梯度较低,以热对流为主。同时,区内地温场的分布主要受基岩埋深所控制,局部地区受到地下热水沿断层上涌所影响。通过研究,将为今后的地热开发选址提供重要依据。  相似文献   

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