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Mathematical model and optimum design approach of sinusoidal pressure wave generator for downhole drilling tool

机译:井下钻具正弦压力波发生器的数学模型与优化设计方法

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摘要

Mud pulse generators have been widely used for the real-time transmission of valuable directional and formation data from downholes with depths of thousands of meters. There have been numerous studies on the design of mud pulse generators in which the pressure waves were typically nonsinusoidal. Sinusoidal waves provide improved long-distance data transmission and signal noise suppression compared with nonsinusoidal waves. Although sinusoidal pressure wave generators have been studied in the published literature, the influence of the risks of clogging on the design of the generator for producing sinusoidal pressure waves has rarely been considered. To generate sinusoidal pressure waves and to reduce the risks of clogging, a mathematical model for the design of a sinusoidal pressure wave generator is developed in this paper. The effects of the axial and radial clearances between the rotor and stator on the design of the generator are considered in the model. An optimum design method for the generator is provided by combining the developed model and a computational fluid dynamics analysis. Finally, an experimental platform was built and experiments at frequencies 2 Hz and 10 Hz were conducted to validate the design result. The simulation and experimental results show that the optimized pressure waves closely approximate sine waves. Therefore, the developed mathematical model and optimization approach can be used to design a sinusoidal pressure wave generator.
机译:泥浆脉冲发生器已广泛用于从数千米深的井下实时传输有价值的定向和地层数据。关于泥浆脉冲发生器的设计已有许多研究,其中压力波通常是非正弦的。与非正弦波相比,正弦波可提供改进的长距离数据传输和信号噪声抑制。尽管在已发表的文献中已经研究了正弦压力波发生器,但是很少考虑堵塞风险对产生正弦压力波的发生器设计的影响。为了产生正弦压力波并减少堵塞的风险,本文开发了一种用于设计正弦压力波发生器的数学模型。模型中考虑了转子和定子之间的轴向和径向间隙对发电机设计的影响。通过将开发的模型与计算流体动力学分析相结合,为发电机提供了一种最佳的设计方法。最后,建立了一个实验平台,并在2 Hz和10 Hz的频率下进行了实验以验证设计结果。仿真和实验结果表明,优化后的压力波非常接近正弦波。因此,开发的数学模型和优化方法可用于设计正弦压力波发生器。

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