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首页> 外文期刊>The Open Acoustics Journal >Effects of Geometrical-Size of Cylindrical-Shell Transducer on Acoustic-Beam Steering Efficiency for a Slim-Hole Acoustic-Logging Tool
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Effects of Geometrical-Size of Cylindrical-Shell Transducer on Acoustic-Beam Steering Efficiency for a Slim-Hole Acoustic-Logging Tool

机译:圆柱壳传感器的几何尺寸对超细孔声波测井仪的声束转向效率的影响

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The slim-hole acoustic-logging tool is often used for measurement while drilling and horizontal well logging. The source and receiver are generally thin cylindrical-shell piezoelectric transducers. The radius of the drilling-collar limits the size of the cylindrical-shell transducer in the logging tool. The smaller the radiation area of the transducer, the smaller the radiated acoustic energy, and the smaller its radius, the higher the frequency of the radiated acoustic signals. Besides, the attenuation for higher frequency wave propagating in the medium is higher. Due to these reasons the amplitude of the measured acoustic signal by using the slim-hole logging tool is usually much smaller than that by using the conventional logging tool. Therefore, the acoustic-beam steering technology is important for enlarging the amplitude of the received acoustic signal during logging with a slim-hole logging tool. The geometrical-size of the cylindrical-shell transducer influences the acoustic-beam steering efficiency of the logging tool with a line-array source and a receiver. In this paper, in the frame work of the acoustic-logging transmission network model with the concept of directivity-weighted coefficient, we have carried out the calculation and analysis of the effects of geometrical-size of the transducer on the acoustic-beam steering efficiency of the slim-hole acoustic-logging tool with a line-array source and a receiver. The calculated results are useful for optimizing the design of the slim-hole acoustic-logging tool with a line-array source and a receiver.
机译:细孔声波测井工具通常用于随钻测量和水平测井。源和接收器通常是薄的圆柱壳压电换能器。钻-的半径限制了测井仪中圆柱壳传感器的尺寸。换能器的辐射面积越小,辐射的声能越小,其半径越小,辐射的声信号的频率越高。此外,在介质中传播的高频波的衰减也更高。由于这些原因,使用细孔测井仪测得的声信号的幅度通常比使用常规测井仪测得的小得多。因此,声束转向技术对于在使用细孔测井仪进行测井时增大接收到的声信号的幅度非常重要。圆柱壳换能器的几何尺寸会影响带有线阵列源和接收器的测井仪的声束转向效率。本文在具有方向性加权系数概念的声波测井传输网络模型的框架中,对换能器的几何尺寸对声束转向效率的影响进行了计算和分析。带有线阵列源和接收器的细孔声波测井仪计算结果对于优化带有线阵列源和接收器的细孔声波测井仪的设计很有用。

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