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Analysis of four-dimensional Mie imaging using fiber-based endoscopes.

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    Area of Science:

    • Fluid Dynamics
    • Optical Measurement Techniques
    • Imaging Science

    Background:

    • Two-phase flows are crucial in many industrial processes.
    • Accurate measurement of droplet distribution is essential for process optimization.
    • Existing imaging techniques have limitations in spatial and temporal resolution.

    Purpose of the Study:

    • To demonstrate and analyze four-dimensional (4D) imaging measurements in two-phase flows.
    • To showcase the potential of fiber-based endoscopes (FBEs) for high-resolution flow imaging.
    • To quantify the benefits of FBEs for enhancing tomographic reconstruction fidelity.

    Main Methods:

    • Utilized fiber-based endoscopes (FBEs) for 4D imaging.
    • Performed demonstration measurements in an 85 mm × 85 mm × 85 mm volume.
    • Discretized the measurement volume into 64 × 64 × 64 voxels.
    • Employed mathematical analyses to assess reconstruction fidelity.

    Main Results:

    • Successfully demonstrated 4D imaging measurements in two-phase flows.
    • Achieved temporal resolution up to 5 kHz for droplet distribution.
    • Illustrated FBEs' capability for practical 4D tomographic measurements.
    • Quantified the fundamental advantage of FBEs in enhancing reconstruction fidelity.

    Conclusions:

    • Fiber-based endoscopes (FBEs) offer a viable solution for high-resolution 4D imaging of two-phase flows.
    • FBEs significantly enhance the fidelity of tomographic reconstructions.
    • This technology holds great potential for practical implementation in flow analysis.