...
首页> 外文期刊>Geothermics >Geology and fluid chemistry of the Fushime geothermal field, Kyushu, Japan
【24h】

Geology and fluid chemistry of the Fushime geothermal field, Kyushu, Japan

机译:日本九州伏见地热田的地质和流体化学

获取原文
获取原文并翻译 | 示例

摘要

The Fushime geothermal field is located in a depression close to the coast line. The system is characterized by very high reservoir temperature (> 350 deg C), and a high salinity production fluid. Geological analysis shows that the main reservoir in this field occurs in a fractured zone developed around a dacite intrusion located in the center of the field. High permeability zones recognized by drilling data are found to be associated with fault zones. One of these zones is clearly associated with a NW-SE trending andesite dike swarm which was encountered in some wells. Alteration in the system can be divided into four zones, in order of increasing temperature, based on calcium-magnesium aluminosilicate mineral assemblages: i.e., the smectite, transition, chlorite and epidote zones. The feed zone is located in the chlorite and epidote zones, which can be further divided into three sub-zones according to their potassium or sodium aluminosilicate mineralogy, from the center of the discharge zone: K- feldspar-quartz, sericite-quartz, and albite-chlorite zones. Chloride concentration of the sea-water is 19,800 mg/l, and Br/Cl mole ratio is l.55. Based on geothemical information, the reservoir chloride concentration of this field ranges from 11,600 to 22,000 mg/kg. The Clres (Cl in reservoir), Br/Cl ratios and stable isotope data indicate that the Fushime geothermal fluid originated from sea-water and is diluted by ground water during its ascent.
机译:Fushime地热田位于靠近海岸线的洼地中。该系统的特点是储层温度很高(> 350摄氏度),并且盐度很高。地质分析表明,该油田的主要储层发生在位于油田中心的达奇特岩侵入周围形成的裂缝带中。发现由钻井数据识别出的高渗透率带与断层带有关。这些地带之一显然与某些井中遇到的NW-SE趋势安山岩堤防群相关。基于钙镁铝硅酸盐矿物组合,按温度升高的顺序,系统的变化可分为四个区域:即蒙脱石,过渡带,绿泥石和绿橄榄石带。进料区位于绿泥石区和山d石区,根据其钾或铝硅酸钠的矿物学特征,可进一步从放电区中心分为三个子区:钾长石石英,绢云母石英和石英。钠长石-亚氯酸盐带。海水中的氯化物浓度为19,800 mg / l,Br / Cl摩尔比为1.55。根据地球热学资料,该油田的储层氯化物浓度范围为11,600至22,000 mg / kg。 Clres(储层中的Cl),Br / Cl比和稳定的同位素数据表明,Fushime地热流体起源于海水,在上升过程中被地下水稀释。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号