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首页> 外文期刊>Rock Mechanics and Rock Engineering >Chemical Dissolution Drilling of Barre Granite Using a Sodium Hydroxide Enhanced Supercritical Water Jet
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Chemical Dissolution Drilling of Barre Granite Using a Sodium Hydroxide Enhanced Supercritical Water Jet

机译:使用氢氧化钠增强超临界水射流储层储层钻井钻探

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摘要

This experimental study focused on evaluating the technical feasibility of chemically enhancing rock comminution during supercritical hydrothermal jet drilling by increasing pH with additives. Comminution of the crystalline rock samples occurred under supercritical conditions at temperatures and pressures ranging from 535-580 degrees C and 22.5-27 MPa, respectively, using hydrothermal jets with sodium hydroxide concentrations ranging from 0.0725 to 0.345 mol/kg. Impinging hydrothermal jets induced thermal spallation and rock removal from 21 Barre granite specimens examined. These experimental conditions replicate those that would be encountered in drilling water-filled wells at depths greater than ~ 2300 m. The combination of accelerated mineral dissolution due to the presence of hydroxide ions, high solution temperature increasing reaction rates, and thermal stresses resulted in rates of rock removal up to 5.16 g in 10 min at 410 degrees C and 0.345 mol/kg NaOH. Comparison with published empirical quartz dissolution rates at high pH suggests granite mass removal primarily resulted from weakening of the rock matrix as a result of the accelerated dissolution of quartz minerals. Experimentally determined heat flux and surface temperature measurements indicated that the rock comminution occurred below the empirically determined minimum levels for the onset of continuous thermal spallation resulting from impinging low-density flame jets or high energy laser heating.
机译:该实验研究重点是通过增加pH与添加剂来评估超临界水热喷射钻井过程中化学增强岩粉碎的技术可行性。结晶岩石样品的粉碎在超临界条件下,在温度和压力范围内,分别使用具有0.0725至0.345mol / kg的氢氧化钠浓度的水热喷射。抵抗水热喷射诱导的热介质和从21次巴雷花岗岩样品中取出岩石去除。这些实验条件将这些实验条件复制在钻孔填充井中的深度大于〜2300米的深度。加速矿物溶解导致的氢氧化物离子,高溶液温度升高,反应速率和热应力导致岩石去除率在410℃下在10分钟内在10分钟内高达5.16g,0.345mol / kg NaOH。在高pH下与公布的经验石英溶出速率的比较表明花岗岩质量除去主要是由于石英矿物的加速溶解而导致岩基质的弱化。实验确定的热通量和表面温度测量表明,岩石粉碎在经验上确定的最小水平下方发生,用于撞击低密度火焰喷射或高能量激光加热产生的连续热椎间壳的发作。

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