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声测井方位发射换能器的实验研究。

Experimental Study on the Azimuthal-Transmitting Transducer of Acoustic Logging.

机构信息

State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum (Beijing), Beijing 102249, China.

Key Laboratory of Earth Prospecting and Information Technology, Beijing 102249, China.

出版信息

Sensors (Basel). 2023 Mar 19;23(6):3247. doi: 10.3390/s23063247.

Abstract

Azimuthal acoustic logging can survey the downhole formation more accurately, and the acoustic source is the crucial component of the downhole acoustic logging tool with azimuthal resolution characteristics. To realize downhole azimuthal detection, assembling multiple transmitting piezoelectric vibrators in the circumferential direction is necessary, and the performance of azimuthal-transmitting piezoelectric vibrators needs attention. However, effective heating test and matching methods are not yet developed for downhole multi-azimuth transmitting transducers. Therefore, this paper proposes an experimental method to comprehensively evaluate downhole azimuthal transmitters; furthermore, we analyze the azimuthal-transmitting piezoelectric vibrator parameters. This paper presents a heating test apparatus and studies the admittance and driving responses of the vibrator at different temperatures. The transmitting piezoelectric vibrators showing a good consistency in the heating test were selected, and an underwater acoustic experiment was performed. The main lobe angle of the radiation beam, horizontal directivity, and radiation energy of the azimuthal vibrators and azimuthal subarray are measured. The peak-to-peak amplitude radiated from the azimuthal vibrator and the static capacitance increase with an increase in temperature. The resonant frequency first increases and then decreases slightly with an increase in temperature. After cooling to room temperature, the parameters of the vibrator are consistent with those before heating. Hence, this experimental study can provide a foundation for the design and matching selection of azimuthal-transmitting piezoelectric vibrators.

摘要

方位声测井可以更精确地测量井下地层,而声源是具有方位分辨率特性的井下声测工具的关键组成部分。为了实现井下方位检测,需要在圆周方向上组装多个发射压电换能器,因此需要注意方位发射压电换能器的性能。然而,针对井下多方位发射换能器,还没有有效的加热测试和匹配方法。因此,本文提出了一种综合评估井下方位发射换能器的实验方法,并对方位发射压电换能器的参数进行了分析。本文介绍了一种加热测试装置,并研究了换能器在不同温度下的导纳和驱动响应。选择了在加热测试中一致性较好的发射压电换能器,并进行了水下声实验。测量了方位换能器和方位子阵的辐射波束主瓣角、水平指向性和辐射能量。方位换能器辐射的峰峰值幅度和静态电容随温度升高而增加。谐振频率随温度升高先略有增加,然后略有降低。冷却至室温后,换能器的参数与加热前一致。因此,这项实验研究可为方位发射压电换能器的设计和匹配选择提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5670/10056652/4ba75f9e5df4/sensors-23-03247-g001.jpg

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