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Extending thermal stability of calcium carbonate pills using sepiolite drilling fluid

机译:使用海泡石钻井液扩展碳酸钙药丸的热稳定性

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The aim is to investigate the plugging ability of sepiolite clay water base drilling fluids over a wide range of high permeable zones at high temperature and high pressure conditions. The special emphasis of this study is to extend the usage of loss preventer material (LPM) as a component of fresh water sepiolite base mud that has never been investigated for this purpose before. The rheology and loss tests at 27?204 °C and 2070 or 6895 kPa revealed that the sepiolite drilling mud shows good rheology and high solid suspension capability at all temperatures except 149 °C, and low loss circulation at high temperature and high pressure. The Permeability Plugging Apparatus (PPA) experiment, in which the 10?90 μm permeable ceramic plate was simulated as formation, showed that the sepiolite drilling mud without CaCO3 can not plug the pores, while the sepiolite drilling mud with CaCO3 can plug the pores quickly and keep the CaCO3 particles suspended even at high temperature (up to 193 °C). The PPA experiment results were proved by the analysis using SEM and ideal packing theory.
机译:目的是研究海泡石粘土水基钻井液在高温和高压条件下在宽范围的高渗透区内的堵漏能力。这项研究的特别重点是扩大防损材料(LPM)作为淡水海泡石基础泥浆成分的用途,以前从未对此进行过研究。在27?204°C和2070或6895 kPa下的流变和损耗测试表明,海泡石钻探泥浆在除149°C以外的所有温度下均具有良好的流变性和高固体悬浮能力,并且在高温和高压下具有低损耗循环。模拟了10?90μm渗透性陶瓷板的渗透堵漏装置(PPA)实验表明,没有CaCO3的海泡石钻探泥浆不能堵塞孔隙,而带有CaCO3的海泡石钻探泥浆可以迅速堵塞孔隙。甚至在高温(最高193°C)下也要保持CaCO3颗粒悬浮。通过SEM和理想填充理论对PPA实验结果进行了验证。

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