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Reinjection in geothermal fields: A review of worldwide experience

机译:地热田回注:全球经验回顾

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The worldwide experience of reinjection in geothermal fields is reviewed. Information from 91 electric-power producing geothermal fields shows that: a reinjection plan should be developed as early as possible in field development and it should be flexible as it is likely to change with time. The optimum reinjection strategy depends on the type of geothermal system. For vapour-dominated systems which can run out of water reinjection should be infield. While for hot water and liquid-dominated two-phase systems (low-enthalpy and medium-enthalpy) reinjection is likely to involve a mix of infield and outfield injection. In general infield reinjection provides pressure support and thus reduces drawdown and the potential for subsidence, whereas outfield reinjection reduces the risk of cold water returning to the production area. Deep reinjection reduces the risk of groundwater contamination and ground surface inflation. The proportion of infield to outfield reinjection and the location (deep or shallow) is case specific and typically the infield reinjection rate will vary with time as part of the steam field management strategy.
机译:回顾了全球在地热领域的回注经验。来自91个发电地热田的信息表明:在田间开发中应尽早制定回注计划,并且该回注计划应具有灵活性,因为它可能随时间而变化。最佳回注策略取决于地热系统的类型。对于可能用尽水的蒸汽为主的系统,应在野外进行。对于热水和以液体为主的两相系统(低焓和中焓),再注入很可能涉及内场注入和外场注入的混合。通常,野外回注可提供压力支持,从而减少水位下降和下陷的可能性,而野外回注可降低冷水返回生产区的风险。深层回注减少了地下水污染和地表膨胀的风险。内场与外场再注入的比例以及位置(深或浅)取决于具体情况,通常,作为蒸汽场管理策略的一部分,内场再注入速率将随时间而变化。

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