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METHOD AND SYSTEM FOR IMPROVING DRILLING SPEED BY USING DRILL STRING VIBRATION

机译:利用钻柱振动来改善钻速的方法和系统

摘要

A system for improving a drilling speed by using drill string vibration comprises a downhole drill string vibration-reduction and supercharging device, and an ultra-high pressure bit device used for a downhole supercharger. The downhole drill string vibration-reduction and supercharging device comprises a high-pressure runner (16). The ultra-high pressure bit device used for the downhole supercharger comprises an ultra-high pressure drilling fluid transmission runner. The ultra-high pressure drilling fluid transmission runner comprises an ultra-high pressure drilling fluid runner (25), a high-pressure resisting hose (28) and a high-pressure resisting rigid tube (30). The high-pressure runner (16) is connected to the ultra-high pressure drilling fluid runner (25); an end of the high-pressure resisting hose (28) is connected to the ultra-high pressure drilling fluid runner (25), and the other end of the high-pressure resisting hose (28) is connected to the high-pressure resisting rigid tube (30); and the other end of the high-pressure resisting rigid tube (30) is connected to an ultra-high pressure drilling fluid nozzle (31). Also disclosed is a method for improving a drilling speed by using drill string vibration. The system structure is stable and reliable. Meanwhile, the power source in the method is the bit pressure fluctuation at the shaft bottom during drilling, and the injection pressure of the drilling fluid at the shaft bottom is improved by using energy obtained due to decrease of the bit pressure fluctuation. The adverse effect of the bit pressure fluctuation on the drilling procedure is reduced, which ensures construction safety and improves injection pressure of the drilling fluid at the shaft bottom, thereby improving the drilling speed.
机译:通过利用钻柱振动来提高钻进速度的系统包括:井下钻柱减振增压装置;以及用于井下增压器的超高压钻头装置。井下钻柱减振增压装置包括高压流道(16)。用于井下增压器的超高压钻头装置包括超高压钻井液传输流道。超高压钻井液输送流道包括超高压钻井液流道(25),耐高压软管(28)和耐高压刚性管(30)。高压流道(16)与超高压钻井液流道(25)连接;高压软管(28)的一端连接至超高压钻井液流道(25),高压软管(28)的另一端连接至高压刚性件管(30);耐高压刚性管(30)的另一端与超高压钻井液喷嘴(31)连接。还公开了一种通过使用钻柱振动来提高钻井速度的方法。系统结构稳定可靠。同时,该方法中的动力源是钻井期间井底底部的钻头压力波动,并且通过使用由于钻头压力波动的减小而获得的能量来改善井底底部的钻井液的喷射压力。减少了钻头压力波动对钻孔过程的不利影响,从而确保了施工安全性并提高了井底底部钻井液的注入压力,从而提高了钻井速度。

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