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名   称 Investigation on the Application of Parabolic
科技资源标识 CSTR:11738.14.NCDC.XDA14.PP6318.2024
DOI 10.1109/ICMSP53480.2021.9513223
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摘   要 Transmitter source is a significant part of a remote-exploration acoustic logging tool. Its power and directional-radiation characteristics are key factors that affect the tool performance. Plasma source features high power and wide band. Thus, it is expected to significantly improve the exploration depth while maintaining the resolution in remoteexploration logging. However, it cannot generate a directional acoustic field, which seriously undermines its advantages as a logging source. Therefore, exploring a suitable method for directional radiation in a plasma source is necessary. In this study, a two-dimensional axisymmetric formation model with a borehole is developed using the finite-element numerical simulation. The characteristics of the plasma source with a small rotating parabolic reflector in an open hole are simulated, such as the energy accumulation and directional radiation. The simulation results reveal that the parabolic reflector in our model can increase the acoustic pressure by more than 10 dB and narrow the -3dB angle to approximately 60° in a formation 1 m away from the source. This scheme is primarily verified as a feasible method for directional radiation, which can improve the usefulness of a plasma source in remote-exploration acoustic logging.
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作者 Hao Xiaolong,Zhou Jing,Wang Zhenyu,Zhang Yifang
数据量 669.7 KiB
论文类型: conference
期刊名称: 2021 3rd International Conference on Intelligent Control, Measurement and Signal Processing and Intelligent Oil Field (ICMSP 2021)
出版时间: 2021-09-01
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数据引用
Hao Xiaolong,Zhou Jing,Wang Zhenyu,Zhang Yifang. Investigation on the Application of Parabolic. 国家冰川冻土沙漠科学数据中心(http://www.ncdc.ac.cn), 2024. https://cstr.cn/CSTR:11738.14.NCDC.XDA14.PP6318.2024.
Hao Xiaolong,Zhou Jing,Wang Zhenyu,Zhang Yifang. Investigation on the Application of Parabolic. 国家冰川冻土沙漠科学数据中心(http://www.ncdc.ac.cn), 2024. https://www.doi.org/10.1109/ICMSP53480.2021.9513223.
许可协议
知识共享许可协议   本作品采用 知识共享署名 4.0 国际许可协议进行许可。

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