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Impact of mechanical tripping on cuttings transport in large-diameter horizontal directional drilling applications

机译:机械跳闸对大直径水平定向钻井应用中的扦插输送的影响

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摘要

In horizontal directional drilling (HDD), both drilling performance and drilling efficiency are affected by the downhole condition, i.e. the presence of cuttings. Previous research has focused on cuttings transport during drilling; however, less effort has gone into investigating the effect of the movement of the bottom hole assembly (BHA) for downhole cleaning, possibly due to the lack of downhole annular pressure data. In HDD, mechanical trips are the movement of the drillhead from the cutting face towards the borehole entry point, and back again. In the current work, any movement of the BHA of a length greater than ten drill stem segments (towards the entry point) during the drilling process is defined as mechanical tripping. Based on the downhole annular pressure data from a large-scale HDD project, an initial analysis of the pressure drop due to six trips was determined for drilling the pilot bore. The average pressure drop observed for these six mechanical trips is 69%. This difference in annular pressure before and after tripping indicates that, in practice, this is a potential method to remove cuttings from the borehole.
机译:在水平定向钻孔(HDD)中,钻井性能和钻井效率都受到井下条件的影响,即扦插的存在。以前的研究专注于钻井期间的扦插运输;然而,较少的努力研究了底部孔组件(BHA)的运动对井下清洁的影响,可能是由于缺乏井下环形压力数据。在HDD中,机械跳闸是钻头从切割面向钻孔入口点的运动,再次返回。在当前的工作中,在钻井过程中,长度大于十个钻杆段(朝向入口点)的任何运动被定义为机械绊倒。基于来自大型HDD项目的井下环形压力数据,确定了由于六次速度而导致的压降初始分析,用于钻出先导孔。对于这六次机械旅行观察到的平均压降是69%。在跳闸之前和之后的环形压力的这种差异表明,在实践中,这是从钻孔中除去切屑的潜在方法。

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