首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EXPERIMENTAL INVESTIGATION OF FRICTION AND HYDRAULICS IN CIRCULAR AND NON-CIRCULAR WELLBORES WITH OIL BASED DRILLING FLUIDS
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EXPERIMENTAL INVESTIGATION OF FRICTION AND HYDRAULICS IN CIRCULAR AND NON-CIRCULAR WELLBORES WITH OIL BASED DRILLING FLUIDS

机译:含油钻井液的圆形和非圆形井筒中摩擦和液压的实验研究

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Borehole hydraulics, hole cleaning and mechanical friction are important factors for well planning and drilling operations. Many studies aim to exploit and optimize the effect of different operational parameters. The effect of wellbore geometry on hole cleaning and mechanical friction has so far not received much attention. This paper presents results from experimental laboratory tests where hydraulics, hole cleaning and mechanical friction have been investigated for circular and non-circular wellbore geometries with a relevant oil-based field drilling fluid (OBM). The non-circular wellbore geometry was made by adding spiral grooves to the wellbore walls in order to investigate the effects on cuttings transport and mechanical friction. The study contributes to describe the function and ability of deliberately induced non-circular geometry in wellbores as means to achieve a more efficient drilling and well construction. Improving hole cleaning will improve drilling efficiency in general, and will in particular enable longer reach for ERD wells. Reduced mechanical friction may improve the drilling process and many operations during the completion phase. The laboratory experiments were performed in an advanced flow loop setup reproducing field-relevant flow conditions. The flow loop consists of a 10 m long 4" inner diameter borehole made of concrete. A free whirling rotational string with 2" diameter provides a realistic down hole annular geometry. A field-relevant oil based drilling fluid (OBM) was circulated through the test section at different flow rates. To represent the effect of rate of penetration, synthetic drilling cuttings (quartz sand particles) were injected at different rates through the annulus in the horizontal test section. The test results show that borehole hydraulics and cutting transport properties are significantly improved in the non-circular wellbore relative to the circular wellbore. The effect of the mechanical friction is more complex, yet significantly different for the two geometries.
机译:井眼液压系统,井眼清洁和机械摩擦是计划井和钻井作业的重要因素。许多研究旨在开发和优化不同操作参数的效果。迄今为止,井眼几何形状对孔清洁和机械摩擦的影响尚未引起足够的重视。本文介绍了实验性实验室测试的结果,其中对圆形和非圆形井眼几何形状以及相关的油基野外钻井液(OBM)进行了液压,孔清洁和机械摩擦研究。非圆形井眼的几何形状是通过在井眼壁上添加螺旋槽来研究的,以研究其对岩屑运移和机械摩擦的影响。该研究有助于描述故意引起的井眼非圆形几何形状的功能和能力,以实现更高效的钻探和建造。一般而言,改善井眼清洁度将提高钻井效率,特别是可以延长ERD井的使用寿命。减小的机械摩擦可以改善钻井过程,并在完井阶段进行许多操作。实验室实验是在先进的流动回路设置中进行的,可再现与现场相关的流动条件。流动回路由一个长10 m的4“内径混凝土孔组成。直径为2”的自由旋转旋转管柱提供了逼真的井下环形几何形状。与现场相关的油基钻井液(OBM)以不同的流速循环通过测试段。为了表示渗透率的影响,通过水平测试部分的环空以不同的速率注入了合成钻屑(石英砂颗粒)。测试结果表明,相对于圆形井眼,非圆形井眼的井眼水力和切削传输性能得到了显着改善。机械摩擦的影响更为复杂,但对于这两种几何形状却存在显着差异。

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