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A new assessment of combined geothermal electric generation and desalination in western Saudi Arabia: targeted hot spot development

机译:沙特阿拉伯西部结合地热发电和海水淡化的新评估:有针对性的热点开发

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High heat flow associated with the tectonic spreading of the Red Sea make western Saudi Arabia a region with high potential for geothermal energy development. The hydraulic properties of the Precambrian-age rocks occurring in this region are not conducive to direct production of hot water for heat exchange, which will necessitate use of the hot dry rock (HDR) heat harvesting method. This would require the construction of coupled deep wells; one for water injection and the other for steam recovery. There are some technological challenges in the design, construction, and operation of HDR geothermal energy systems. Careful geotechnical evaluation of the heat reservoir must be conducted to ascertain the geothermal gradient at the chosen site to allow pre-design modeling of the system for assessment of operational heat flow maintenance. Also, naturally occurring fractures or faults must be carefully evaluated to make an assessment of the potential for induced seismicity. It is anticipated that the flow heat exchange capacity of the system will require enhancement by the use of horizontal drilling and hydraulic fracturing in the injection well with the production well drilled into the fracture zone to maximum water recovery efficiency and reduce operating pressure. The heated water must be maintained under pressure and flashed to steam at surface to produce to the most effective energy recovery. Most past evaluations of geothermal energy development in this region have been focused on the potential for solely electricity generation, but direct use of produced steam could be coupled with thermally driven desalination technologies such as multi-effect distillation, adsorption desalination, and/or membrane distillation to provide a continuous source of heat to allow very efficient operation of the plants.
机译:与红海的构造扩展相关的高热流使沙特阿拉伯西部成为具有地热能开发潜力的地区。在该地区出现的前寒武纪时代的岩石的水力特性不利于直接产生用于热交换的热水,这将需要使用干热岩(HDR)集热方法。这将需要建造耦合的深井;一种用于注水,另一种用于蒸汽回收。 HDR地热能系统的设计,建造和运行中存在一些技术挑战。必须对储热器进行仔细的岩土工程评估,以确定所选地点的地热梯度,以允许对系统进行预先设计的建模,以评估运行中的热流维持量。另外,必须仔细评估自然发生的裂缝或断层,以评估诱发地震的可能性。可以预料,通过在注入井中使用水平钻井和水力压裂以及将生产井钻到压裂区中来提高系统的流动热交换能力,以最大程度地提高水的回收效率并降低工作压力。必须将热水保持在压力下,并在表面闪蒸成蒸汽,以产生最有效的能量回收。过去对该地区地热能开发的大多数评估都集中在仅发电的潜力上,但是直接使用产出的蒸汽可以与热驱动脱盐技术相结合,例如多效蒸馏,吸附脱盐和/或膜蒸馏提供连续的热源,以使设备运行非常高效。

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