
Developed and delivered Rotating Reference Frame Support for the Rotation model in the flexcompute/Flow360 repository, expanding the software’s simulation capabilities to include explicit non-inertial reference frame analyses. The work involved backend development and data modeling using Python, introducing a new rotating_reference_frame_model flag and implementing validation logic to prevent misconfiguration, particularly for steady-state simulations. Updates to the Python client included renaming input parameters to isMRF for improved API consistency. This feature enables users to define rotating frames directly within simulation setups, reducing configuration errors and enhancing the flexibility of simulation software development and validation workflows within Flow360.
December 2024 monthly summary for flexcompute/Flow360. Key feature delivered was Rotating Reference Frame Support in the Rotation model, enabling explicit non-inertial reference frame simulations. This included a new rotating_reference_frame_model flag, validation logic to prevent misconfiguration (notably for steady-state runs), and updates to the Python client input parameter naming to isMRF. These changes broaden Flow360's simulation capabilities, improve API consistency, and reduce user error in configuring rotating frame analyses.
December 2024 monthly summary for flexcompute/Flow360. Key feature delivered was Rotating Reference Frame Support in the Rotation model, enabling explicit non-inertial reference frame simulations. This included a new rotating_reference_frame_model flag, validation logic to prevent misconfiguration (notably for steady-state runs), and updates to the Python client input parameter naming to isMRF. These changes broaden Flow360's simulation capabilities, improve API consistency, and reduce user error in configuring rotating frame analyses.

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