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The impact of injection on seismicity at The Geysers, California Geothermal Field

机译:注入对加利福尼亚地热田间歇泉地震的影响

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摘要

Water injection into geothermal systems has often become a required strategy to extend and sustain production of geothermal resources. To reduce a trend of declining pressures and increasing non-condensable gas concentrations in steam produced from The Geysers, operators have been injecting steam condensate, local rain and stream waters, and most recently treated wastewater piped to the field from neighboring communities. If geothermal energy is to provide a significant increase in energy in the United States (the US Department of Energy goal is 40,000 MW by 2040), injection must play a larger role in the overall strategy, i.e., enhanced geothermal systems (EGS). Presented in this paper are the results of monitoring microseismicity during an increase in injection at The Geysers field in California using data from a high-density digital microearthquake array. Although seismicity has increased due to increased injection, it has been found to be somewhat predictable, thus implying that intelligent injection control may be able to control large increases in seismicity.
机译:向地热系统注水通常已成为扩大和维持地热资源生产的必要策略。为了减少由间歇泉产生的蒸汽中压力下降和非凝性气体浓度增加的趋势,操作员一直在注入蒸汽凝结水,局部雨水和溪流水,以及最近处理过的,从邻近社区输送到田间的废水。如果要在美国显着增加地热能(美国能源部的目标是到2040年达到40,000兆瓦),则注入必须在整体战略中发挥更大的作用,即增强地热系统(EGS)。本文介绍的是使用来自高密度数字微地震阵列的数据监测加利福尼亚州的Geysers油田注入量增加期间的微震性的结果。尽管由于增加的注入量而增加了地震活动度,但是已经发现它是可以预见的,因此暗示了智能注入控制可能能够控制地震活动度的大幅度增加。

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