Design and Experiment of a Reconfigurable Bypass Downlink Surface Equipment for Transmitting the Surface Information to Deep Well

Jiafeng Wu, Zaisheng Hao, Shujun Wang, Anni Wang, Guangze Li, Xiaocan Du, Dongli Qin
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Abstract

Abstract: In order to achieve the transmission of the control information from the surface to the downhole in the deep well during drilling, a design method of a new downlink surface equipment for generating negative pulse signals is presented in this paper. The equipment uses adjustable throttle control valve and pressure drop module (PDM) to realize bypass flow control. The PDM uses multistage variable nozzles to reduce drilling fluid pressure and meet drilling requirements under different pressure and flow rates. Design theory of the downlink surface equipment is established, and a specific design instance is given according to actual drilling conditions. Both laboratory and field experimental results verify the correctness of the proposed design method. The research results show that the design equipment can meet the needs of the transmission of the surface information, and the downlink transmission rate can reach at least one-bit data per 8 sec. The maximum pressure drop is realized by the PDM and the pressure drop at the control valve will be reduced according to drilling demand, the fluid velocity in the equipment is reduced as much as possible, the erosion of the drilling fluid to the equipment is reduced, and the service life can be improved effectively.
用于向深井传输地面信息的可重构旁路下行链路地面设备的设计与实验
摘要:为了实现深井钻井过程中控制信息从地面到井下的传输,本文介绍了一种新型下行地面设备产生负脉冲信号的设计方法。该设备采用可调节流控制阀和压降模块(PDM)实现旁通流量控制。压降模块采用多级可变喷嘴,可降低钻井液压力,满足不同压力和流量下的钻井要求。建立了下行地面设备的设计理论,并根据实际钻井条件给出了具体的设计实例。实验室和现场实验结果均验证了所提设计方法的正确性。研究结果表明,所设计的设备能满足地表信息传输的需要,下行传输速率至少能达到每 8 秒一位数据。通过 PDM 实现最大压降,并根据钻井需求降低控制阀处的压降,尽可能降低设备内的流体速度,减少钻井液对设备的侵蚀,有效提高使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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