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April 30, 2026Processes1 citationsOpen Access

A WTD-WOA-SVMD-Based Signal Processing Method for Stress Distortion Zones in Coiled Tubing

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XLXu LuoHYHuan YangWJWenbo Jiang

Key Points

  • The aim is to develop a hybrid signal processing method for better detection of stress distortion zones in coiled tubing.
  • Employed an online enhanced metal magnetic memory detection method under 35 MPa internal pressure.
  • Compared five common noise reduction techniques for effectiveness in high-noise environments.
  • Established a hybrid framework using wavelet threshold denoising and sequential variational modal decomposition optimized by a whale optimization algorithm.
  • Achieved at least a 1.03% reduction in fuzzy entropy across all signal directions.
  • Obtained a minimum increase of 33.1% in integrated side lobe ratio (ISLR).
  • Provided technical support for detecting stress-distortion zones on coiled-tubing surfaces.

Abstract

As critical equipment in the petroleum industry, coiled tubing is prone to safety hazards, including stress concentrations and fatigue failure, under complex operating conditions. An online enhanced metal magnetic memory detection method was employed to reduce noise in surface magnetic field signals from tubing subjected to 35 MPa of internal pressure across different fatigue cycles. Conventional signal processing methods have difficulty effectively extracting characteristic magnetic field signals in high-noise environments; therefore, a comprehensive comparison of the noise reduction effectiveness of five common signal processing techniques in stress-distorted regions was conducted, an in-depth analysis of the limitations of different methods was performed, and a hybrid noise reduction framework combining wavelet threshold denoising (WTD) and sequential variational modal decomposition (SVMD) was established. Concurrently, the whale optimization algorithm (WOA), which possesses global search capabilities and demonstrates good adaptability to multi-parameter coupling issues in hybrid denoising frameworks, was innovatively proposed for key parameter optimization. Using fuzzy entropy (FE) as an evaluation metric, the experimental results demonstrated that magnetic field signals in all directions achieved at least a 1.03% reduction in FE and a minimum increase of 33.1% in integrated side lobe ratio (ISLR). This provided effective technical support for reliably detecting stress-distortion zones on coiled-tubing surfaces and established the engineering necessity of implementing preventive maintenance.

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Cite This Study

Luo et al. (2026) studied this question.

synapsesocial.com/papers/69f2f1771e5f7920c63871f3https://doi.org/10.3390/pr14091404
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