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  • https://doi.org/10.1109/irmmw-thz61557.2025.11320011Copy DOI Icon

Two Phase Gas-Liquid Detection using Terahertz Imaging System

  • Aug 17, 2025
  • Kabilan K K +2 more
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Abstract

Two-phase flow detection, particularly gas-liquid flow, is critical in various industrial applications such as oil and gas pipelines, chemical processing, and biomedical systems. Conventional techniques, including ultrasonic, optical, and microwave-based methods, often face limitations in terms of resolution, penetration, and sensitivity. Terahertz (THz) imaging systems offer a promising non-invasive alternative due to their high spatial resolution, ability to penetrate non-metallic materials, and sensitivity to variations in refractive index and dielectric properties. This study explores the feasibility of using a THz imaging system for detecting and characterizing gas-liquid two-phase flow. A continuous-wave (CW) THz imaging system has been employed to capture high-resolution images of flow channels within transparent and semi-transparent conduits. By analyzing the THz image acquired from the reflected signals, distinct phase distributions and flow patterns have been identified. The experimental setup includes a controlled test rig with varying gas-to-liquid ratios to simulate different flow regimes, namely, slug, discontinued slug, etc. Image processing techniques have been applied to enhance phase differentiation and improve detection accuracy. Preliminary results demonstrate that THz imaging can effectively distinguish gas and liquid phases based on their absorption and reflection characteristics. The proposed method provides a non-intrusive, high-precision approach to monitoring two-phase flow, offering significant advantages over traditional sensors. Future work will focus on real-time implementation, optimizing imaging parameters, and extending the methodology to optically-opaque pipelines. This research contributes to advancing flow diagnostics in industrial and scientific applications.

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