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Vibration characteristics of casing string under the exciting force of an electric vibrator

机译:电动振动器激振力下套管柱的振动特性

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Vibration cementing is a new technique that can significantly improve the bond strength of cementing interface. To popularize this technique, it is necessary to solve the key problem of how to make cementing string generate downhole radial vibration in the WOC stage. For this purpose, an electric vibrator was developed. With this vibrator, electric energy is converted into mechanical energy by means of a high-temperature motor vibration unit. The motor vibration unit rotates the eccentric block through an output shaft to generate an exciting source, which produces an axial-rotating exciting force at the bottom of the casing string. Then, the vibration characteristics of vertical well casing string under the exciting force were analyzed by using the principal coordinate analysis method, and the response model of casing string to an electric vibrator was developed. Finally, the effects of casing string length, exciting force and vibration frequency on the vibration amplitude at the lowermost of the casing string were analyzed based on a certain casing program. It is indicated that the casing string length and the square of vibration frequency are inversely proportional to the vibration amplitude at the lowermost of the casing string, and the exciting force is proportional to the vibration amplitude at the lowermost of the casing string. These research results provide a theoretical support for the application of vibration cementing technology to the cementing sites with different requirements on well depth and amplitude.
机译:振动固井是一种可以显着提高固井界面粘结强度的新技术。为了推广该技术,有必要解决在WOC阶段如何使固井柱产生井下径向振动的关键问题。为此目的,开发了电动振动器。利用该振动器,通过高温马达振动单元将电能转换为机械能。电机振动单元通过输出轴旋转偏心块,以产生激励源,该激励源在套管柱的底部产生轴向旋转的激励力。然后,采用主坐标分析方法,对竖井套管柱在激振力作用下的振动特性进行了分析,建立了套管柱对电振子的响应模型。最后,根据一定的套管程序,分析了套管柱长度,激振力和振动频率对套管柱最下部振动幅度的影响。结果表明,套管柱长度和振动频率的平方与套管柱最下部的振动幅度成反比,激振力与套管柱最下部的振动幅度成正比。这些研究结果为振动固井技术在固井深度和幅度要求不同的固井现场的应用提供了理论支持。

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