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Controlling bentonite-based drilling mud properties using sepiolite nanoparticles

机译:使用海泡石纳米颗粒控制膨润土基钻井液的性能

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Sepiolite nanoparticles were added to the bentonite-based drilling mud to control its properties, and the effects of sepiolite nanoparticles on rheological properties and filtration loss of the bentonite-based drilling mud at different temperature and pressure conditions were studied by experiments. For the bentonite-based drilling muds with and without sepiolite nanoparticles, plastic viscosity, yield point, and fluid loss were measured at different temperature and pressure conditions, the core flooding experiments were also conducted at reservoir pressure and temperatures, and fluid loss and formation damage were measured. The results show that: sepiolite nanoparticles can be used to improve the plastic viscosity and yield point of saline and fresh bentonite-based drilling mud; the bentonite-based drilling mud with sepiolite nanoparticles shows a great stability of rheological properties over a wide range of temperature and pressure, especially at high temperatures and pressures; sepiolite nanoparticles reduce the fluid loss and the permeability reduction at reservoir pressure and temperatures. Sepiolite nanoparticles are an ideal additive for bentonite-based drilling mud.
机译:将海泡石纳米颗粒添加到膨润土基钻井液中以控制其性能,并通过实验研究了海泡石纳米颗粒对膨润土基钻井液在不同温度和压力条件下的流变性和滤失的影响。对于有或没有海泡石纳米颗粒的膨润土基钻井液,在不同温度和压力条件下测量了塑性粘度,屈服点和流体损失,还在油藏压力和温度下进行了岩心驱油实验,以及流体损失和地层破坏被测量。结果表明:海泡石纳米颗粒可用于提高盐水和新鲜膨润土基钻井液的塑性粘度和屈服点;具有海泡石纳米颗粒的膨润土基钻井液在很宽的温度和压力范围内,特别是在高温和高压下,具有很好的流变性。海泡石纳米颗粒在储层压力和温度下减少了流​​体损失并降低了渗透率。海泡石纳米颗粒是基于膨润土的钻井泥浆的理想添加剂。

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