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科技导报
| 专题论文 2015, 33(19): 35-39
干热岩水力压裂实验室模拟研究
全屏
许天福1 , 张延军1,2 , 于子望2 , 胡忠君2 , 郭亮亮2
作者信息
1. 吉林大学地下水资源与环境教育部重点实验室, 长春 130000;
2. 吉林大学建设工程学院, 长春 130026
通讯作者:
张延军(通信作者),教授,研究方向为地下介质多场耦合、干热岩热能开发及二氧化碳地质封存,电子信箱:zhangyanj@jlu.edu.cn
Laboratory study of hydraulic fracturing on hot dry rock
Affiliations
出版时间: 2015-10-13
doi: 10.3981/j.issn.1000-7857.2015.19.004
文章导航
地壳中干热岩所蕴含的地热能量巨大,已成为世界各国重点研究开发的新能源。干热岩资源开发的增强型地热工程的场地试验研究投资大、周期长、风险大,在现场压裂和人工热储层建造示范工程前,实施干热岩水力压裂实验室研究很有必要。为此,吉林大学深部地热和干热岩研究团队建设了大尺寸高温高压下干热岩水力压裂实验室模拟系统,为现场压裂工艺设计和储层改造提供参数和技术支持。本文介绍模拟系统的实验设备、实验条件和初步的实验研究成果。
干热岩
/
高温压实验
/
水力压裂
/
声发射
/
导流换热实验
Hot dry rock (HDR), which contains abundant geothermal energy, is a new type of geothermal resources and has become the worldwide focus in new energy utilization and development. The field test of enhanced geothermal engineering for development of HDR resources is costly, risky, and time-consuming. Therefore, it is necessary to carry out laboratory test for investigating the property of HDR before field fracturing and construction of artificial geothermal reservoir. The most urgent and essential problem is the research on hydraulic fracturing and micro seismic monitoring technology in the process of utilizing HDR. To further explore this issue to provide parameters and technical support for field fracturing and reservoir stimulation, Jilin University established a HDR laboratory simulation system that can carry out hydraulic fracturing of large-sized samples under high temperature and pressure. This paper focuses on the testing instrument, testing conditions and research results of the simulation system.
hot dry rock
/
high temperature and pressure test
/
hydraulic fracturing
/
acoustic emission
/
heat exchange test
许天福, 张延军, 于子望, 胡忠君, 郭亮亮.
干热岩水力压裂实验室模拟研究.
科技导报,
2015
, 33
(19)
: 35
-39
.
DOI: 10.3981/j.issn.1000-7857.2015.19.004
XU Tianfu, ZHANG Yanjun, YU Ziwang, HU Zhongjun, GUO Liangliang.
Laboratory study of hydraulic fracturing on hot dry rock[J].
Science & Technology Review ,
2015
, 33
(19)
: 35
-39
.
DOI: 10.3981/j.issn.1000-7857.2015.19.004
2015年第33卷第19期
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引用本文
BibTeX
文章信息
doi: 10.3981/j.issn.1000-7857.2015.19.004
接收时间:2015-08-21
首发时间:2015-10-16
出版时间:2015-10-13
收稿日期:2015-08-21
修回日期:2015-09-01
通讯作者:
张延军(通信作者),教授,研究方向为地下介质多场耦合、干热岩热能开发及二氧化碳地质封存,电子信箱:zhangyanj@jlu.edu.cn
https://castjournals.cast.org.cn/joweb/kjdb/CN/10.3981/j.issn.1000-7857.2015.19.004
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2种不同金属材料的力学参数
科 Family 属数 Number of genus 种数 Number of species 占总种数比例 Percentage of total species (%) 属 Genus 种数 Number of species 占总种数比例 Percentage of total species (%) 鹅膏菌科Amanitaceae 2 11 5.26 鹅膏菌属 Amanita 10 4.78 小菇科 Mycenaceae 2 12 5.74 丝盖伞属 Inocybe 5 2.39 多孔菌科 Polyporaceae 8 14 6.70 蜡蘑属 Laccaria 5 2.39 红菇科 Russulaceae 3 23 11.00 小皮伞属 Marasmius 6 2.87 小菇属 Mycena 11 5.26 光柄菇属 Pluteus 5 2.39 红菇属 Russula 17 8.13 栓菌属 Trametes 5 2.39
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