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MECHANICAL ROCKCUTTING WITH AND WITHOUT HIGH PRESSURE WATER JETS.

机译:带有或不带有高压注水口的机械凿岩机。

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摘要

A hybrid rock cutting method using water jets to assist the mechanical tools was investigated. Benefits of using a water jet assist system included: (i) substantial reduction in the bit forces; (ii) reduced rates of bit wear; (iii) reduced dust production; and (iv) reduction in frictional heating.; A series of dry and water jet assisted cutting experiments were conducted with a drag bit in Indiana Limestone. The relative influence of jet parameters in reducing the bit forces was investigated. The optimum performance of the water jet assist system was with a single jet parallel to and about 1 mm ahead of the leading face of the bit. Jet power was the most significant factor in reducing the bit forces. A threshold jet power level had to be exceeded to achieve optimum force reductions. If the jet power was increased beyond this threshold value no further reduction in bit forces was observed. The influence of bit velocity on bit force reductions was not very significant. An increase in the bit velocity by a factor of four resulted in a six percent decrease, from 50 to 44 percent, in the force reduction achieved with water jets. Potential benefits of the water jet assist approach to oil well drilling were demonstrated by preliminary experiments combining water jets with PDC bits.; Indentation tests were conducted to study the crack growth and chip formation underneath the bit. A sieve analysis was carried out on rock fragments produced during dry and water jet assisted cutting. The surface area of fragments from these cuts was determined. Energetics of the fragmentation process producing these surfaces was studied by using a fracture mechanics approach. It was found that only 10 percent of the applied mechanical energy was used in producing the resulting surface.; Based on a comparative review of results and possible mechanisms, an explanation of the mechanics of water jet assisted cutting was developed. The dominant mechanism was continuous removal of the broken rock that formed ahead of the advancing bit. Finally, a theoretical model was introduced for a better understanding of this mechanism.
机译:研究了一种使用水刀辅助机械工具的混合岩石切割方法。使用喷水辅助系统的好处包括:(i)大大降低了钻头力; (ii)降低钻头磨损率; (iii)减少粉尘产生; (iv)减少摩擦热。在印第安纳州石灰石中用刮刀进行了一系列干式和水射流辅助切割实验。研究了射流参数在减小钻头力方面的相对影响。喷水辅助系统的最佳性能是在与钻头前导面平行且距钻头前导面约1毫米处进行单喷。喷气动力是减少钻头力的最重要因素。必须超过阈值喷射功率水平才能实现最佳的力减小。如果喷射功率增加到超过该阈值,则不会观察到钻头力的进一步减小。钻头速度对减小钻头力的影响不是很明显。钻头速度增加了四分之一,导致喷水的力降低了6%,从50%降至44%。结合水射流和PDC钻头的初步实验证明了水射流辅助方法在油井钻探中的潜在优势。进行压痕测试以研究钻头下方的裂纹扩展和切屑形成。对在干式和水射流辅助切割过程中产生的岩石碎片进行了筛分分析。确定了来自这些切口的碎片的表面积。通过使用断裂力学方法研究了产生这些表面的破碎过程的能量学。已经发现,只有10%的施加机械能被用于产生最终的表面。在比较结果和可能的机理的基础上,对水刀辅助切割的机理进行了解释。主要机制是连续清除在前进钻头之前形成的破碎岩石。最后,引入了一个理论模型以更好地理解该机制。

著录项

  • 作者

    TUTLUOGLU, LEVENT.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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