Reservoir temperature is an essential parameter in geothermal exploration, which is usually obtained by using chemical geothermometers. There are more than a dozen of conventional geothermometers, each of which has it...Reservoir temperature is an essential parameter in geothermal exploration, which is usually obtained by using chemical geothermometers. There are more than a dozen of conventional geothermometers, each of which has its own limitation for application. Zhangzhou Geothermal Field is a saline water field, the thermal water chemistry of which展开更多
The thermal water circulation depth is an important parameter in the study of a geothermal field, which plays a key role in understanding the genetic type of the thermal water, the formation mechanism of the geotherma...The thermal water circulation depth is an important parameter in the study of a geothermal field, which plays a key role in understanding the genetic type of the thermal water, the formation mechanism of the geothermal field and in assessing the potential of the geothermal resources. Based on a large amount of data from our research work展开更多
热储温度评价是地热系统研究的关键内容。文章选取建设比较成熟的美国国家地热数据系统(National Geothermal Data System,NGDS),分别利用地球化学地热温度计、多矿物平衡法、冷热水混合模型及气体地热温度计对不同地热田的热储温度进...热储温度评价是地热系统研究的关键内容。文章选取建设比较成熟的美国国家地热数据系统(National Geothermal Data System,NGDS),分别利用地球化学地热温度计、多矿物平衡法、冷热水混合模型及气体地热温度计对不同地热田的热储温度进行评价,确定不同热储温度评价方法的适用性和局限性,以期为热储温度评价方法的选取提供参考。研究结果表明,当地热水体达到离子和矿物的平衡状态时,地球化学地热温度计可得到相对合理的热储温度;当地热水体未达到离子和矿物的平衡状态时,SiO2地热温度计较阳离子温度对热储温度的评价效果更准确。尽管基于饱和指数的多矿物平衡法由于有限饱和平衡矿物选择导致不一定得到精确的热储温度,但可为地球化学地热温度计的选取提供依据,比如当石英过饱和时,用玉髓地热温度计计算的温度比石英更能反映地下的热储温度。对于蒸汽为主的高温地热储层,由于蒸汽和地表岩石反应导致矿物和离子无法反映热储信息,气体地热温度计对该类型热储温度的评价更加合理。由于混合模型得到的是冷、热水混合之前的热水端温度,因此,混合模型计算的热储温度通常高于地球化学地热温度计。总之,没有一种温度计是万能的,不同地热温度计适用条件不同,综合不同合理的方法以及互相校正是最好的方法。展开更多
基金Project supported by the National Natural Science Foundation of China and the International Atomic Energy Agency R.C. (No. 4850/RI/RB).
文摘Reservoir temperature is an essential parameter in geothermal exploration, which is usually obtained by using chemical geothermometers. There are more than a dozen of conventional geothermometers, each of which has its own limitation for application. Zhangzhou Geothermal Field is a saline water field, the thermal water chemistry of which
基金Project supported by the Science Foundation of Academia Sinica.
文摘The thermal water circulation depth is an important parameter in the study of a geothermal field, which plays a key role in understanding the genetic type of the thermal water, the formation mechanism of the geothermal field and in assessing the potential of the geothermal resources. Based on a large amount of data from our research work
文摘热储温度评价是地热系统研究的关键内容。文章选取建设比较成熟的美国国家地热数据系统(National Geothermal Data System,NGDS),分别利用地球化学地热温度计、多矿物平衡法、冷热水混合模型及气体地热温度计对不同地热田的热储温度进行评价,确定不同热储温度评价方法的适用性和局限性,以期为热储温度评价方法的选取提供参考。研究结果表明,当地热水体达到离子和矿物的平衡状态时,地球化学地热温度计可得到相对合理的热储温度;当地热水体未达到离子和矿物的平衡状态时,SiO2地热温度计较阳离子温度对热储温度的评价效果更准确。尽管基于饱和指数的多矿物平衡法由于有限饱和平衡矿物选择导致不一定得到精确的热储温度,但可为地球化学地热温度计的选取提供依据,比如当石英过饱和时,用玉髓地热温度计计算的温度比石英更能反映地下的热储温度。对于蒸汽为主的高温地热储层,由于蒸汽和地表岩石反应导致矿物和离子无法反映热储信息,气体地热温度计对该类型热储温度的评价更加合理。由于混合模型得到的是冷、热水混合之前的热水端温度,因此,混合模型计算的热储温度通常高于地球化学地热温度计。总之,没有一种温度计是万能的,不同地热温度计适用条件不同,综合不同合理的方法以及互相校正是最好的方法。