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Laboratory study of fluid properties owing to cutting intrusions during horizontal directional drilling

机译:水平方向钻井期间切削侵入性液体性能的实验室研究

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During horizontal directional drilling installations, a primary function of drilling fluids is to yield drill cuttings and lubricate the product pipe. This paper presents the results of a research study of drilling fluid parameters, and the filter cake properties associated with drill cutting intrusions. Different sand meshes and field cutting sizes were added to the drilling fluids. Based on the laboratory experiments of eighteen samples including testing drilling fluid rheology and filter cake properties, the influence of drill cuttings on low solid-phase drilling fluid systems were obtained. The results reveal that drilling fluid plastic viscosity values increase with sand content and particle size. The 100-mesh sand exhibits a larger plastic viscosity compared to the 200-mesh sand. This suggests that the coarser the sand, the greater is the plastic viscosity. By contrast, drilling fluids with 200-mesh sand exhibit greater shear forces than the 100-mesh sand. When the sand content is?≥4%, the shear dilution ability of the drilling fluid begins to weaken. The thinnest filter cake is formed after 6?h with a 100-mesh cutting size and 4% sand content. However, when the cutting size changed to 150-mesh and 2% content, the largest filter cake toughness and strength after rolling for 12?h were obtained. Simultaneously, the combination of 200-mesh and 150-mesh with 2%–4% content rolling for 12–24?h indicate different results. For the filter cake thickness, cutting content is the primary influencing factor followed by particle size and gradation. The factor with the least influence is rolling time. We found that rolling time and gradation were the most significant factors affecting the toughness of the filter cake, followed by cutting content. Conversely, particle size exhibits the least influence on filter cake toughness. These results are important to better understand the solid-phase control of drilling fluids in the field.
机译:在水平方向钻井装置期间,钻井液的主要功能是产生钻屑并润滑产品管道。本文介绍了钻孔流体参数研究的研究结果,以及与钻孔侵入侵入相关的滤饼特性。将不同的砂网和田间切割尺寸添加到钻井液中。基于十八个样品的实验室实验,包括测试钻井液流变学和滤饼特性,获得钻扦插对低固相钻井液系统的影响。结果表明,钻井液塑料粘度值随着砂含量和粒径而增加。与200目沙子相比,100目砂表现出较大的塑料粘度。这表明砂岩较大,塑料粘度越大。相比之下,具有200目砂的钻井液表现出比100网砂的更大的剪切力。当砂含量为≥4%时,钻井液的剪切稀释能力开始削弱。最薄的滤饼在6°H后形成100目切割尺寸和4%砂含量。然而,当切割尺寸变为150目和2%含量时,获得轧制12μl后的最大滤饼韧性和强度。同时,200目和150目,具有2%-4%含量轧制12-24Ω的组合表示不同的结果。对于滤饼厚度,切削含量是主要影响因子,然后是粒径和灰度。影响最小的因素是滚动时间。我们发现滚动时间和渐变是影响滤饼韧性的最重要因素,然后切割含量。相反,粒度对滤饼韧性的影响最小。这些结果对于更好地了解该领域的钻井液的固相控制很重要。

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