Research on the RZB-Type Three-Dimensional Drilling Strain Measurement System

Author:

Chen Zheng1,Li Hong1,Dong Yunkai1,Wang Wenbo1,Wu Liheng1,Zhan Weiwei1

Affiliation:

1. National Institute of Natural Hazards, Beijing 100085, China

Abstract

Borehole strain gauges play a crucial role in geophysical, seismological, and crustal dynamics studies. While existing borehole strain gauges are proficient in measuring horizontal strains within vertical boreholes, their effectiveness in capturing vertical and oblique strains is limited due to technical constraints arising from the cylindrical probe’s characteristics. However, the accurate measurement of three-dimensional strain is essential for a comprehensive understanding of crustal tectonics, dynamics, and geophysics, particularly considering the diverse geological structures and force sources within the crustal medium. In this study, we present a novel approach to address this challenge by enhancing an existing horizontal-component borehole strain gauge with a bellows structure and line strain measurement technology to enable vertical and borehole oblique strain measurements. Integrating these enhancements with horizontal strain measurement capabilities enables comprehensive three-dimensional borehole strain measurements within the same hole section. The system was deployed and tested at the Gongxian seismic station in Sichuan Province. Clear observations of solid tides were recorded across horizontal, oblique, and vertical measurement units, with the tidal morphology and amplitude being consistent with the theoretical calculations. The achieved measurement sensitivity of 10-10 meets the requirements for borehole strain measurement, enabling the characterization of three-dimensional strain states within boreholes through association methods.

Funder

National Natural Science Foundation of China

Institute of Crustal Dynamics, CEA, Basic scientific Special Fund

Publisher

MDPI AG

Reference44 articles.

1. Application of the RZB borehole strainmeter in crustal stress observation at the eastern margin of the Tibet plateau;Li;Acta Sci. Nat. Univ. Pekin.,2011

2. A shallow-hole mounted YRY-2 borehole strain gauge was observed at eight stations in North China;Chi;Acta Seismol. Sin.,1993

3. New Era of Borehole Strain Observation;Qiu;Recent Dev. World Seismol.,2004

4. Xiong, Y.Z., Li, H., Wu, L.H., Li, T., Chen, Z., and Yu, J.J. (2016, January 25–26). Application of RZB Borehole Strainmeter in Crustal Stress Monitoring. Proceedings of the International Congress on Computation Algorithms in Engineering (ICCAE), Bangkok, Thailand.

5. Su, K., Li, H., Zhang, J., Li, X., and Ma, X. (2004). New Advances in Drill Site Strain Measurement, Seismological Press. (In Chinese).

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