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Experiment investigation of granite damage under the high-temperature and high-pressure supercritical water condition

机译:高温高压超临界水条件下花岗岩损伤的实验研究

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摘要

Geothermal energy has the potential to produce significant amounts of electricity. Hot dry rock, stored abundant geothermal energy, is mainly made up of granite and hard to drill. Hydrothermal spallation drilling (HSD) is suitable to drill in hard granite formation. The granite breakage in HSD means the granite is induced to spall under high-temperature and high-pressure supercritical water condition, which is a key problem in HSD application. In this paper, we investigated the effect of supercritical water on granite damage by experiment. First, the granite samples were heated under the supercritical water condition. Meanwhile, another granite samples were also heated by air for comparison. After that, abundant post processing tests were conducted to compare the three type of granite samples: samples heated by supercritical water, samples heated by air and original samples. Specifically, the mineral analysis, uniaxial tensile test, uniaxial compression test, acoustic wave test was conducted to quantitatively investigate the granite damage. Meanwhile, thin section observation and scanning electron microscope observation were conducted to investigate the fracture distribution in the samples after damage. This study can provide useful insight into the granite damage heated by supercritical water, which can help to optimize the design of HSD in field application.
机译:地热能有可能产生大量的电力。热干岩,储存丰富的地热能,主要由花岗岩组成,难以钻。水热介质钻孔(HSD)适用于硬花岗岩形成。 HSD中的花岗岩断裂是指在高温和高压超临界水处理下突出花岗岩,这是HSD应用中的关键问题。本文通过实验研究了超临界水对花岗岩损伤的影响。首先,将花岗岩样品在超临界水条件下加热。同时,还通过空气加热另一种花岗岩样品以进行比较。之后,进行丰富的后处理测试以比较三种类型的花岗岩样品:通过超临界水加热的样品,通过空气和原始样品加热的样品。具体而言,进行矿物质分析,单轴拉伸试验,单轴压缩试验,声波试验以定量研究花岗岩损伤。同时,进行了薄截面观察和扫描电子显微镜观察,以研究损伤后样品中的断裂分布。本研究可以对超临界水加热的花岗岩损坏提供有用的见解,这有助于优化现场应用中HSD的设计。

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