We operate a CNAS-certified aerodynamic model testbed for experimental validation, ensuring consistency between simulation results and physical performance. The test platform supports high-speed operation, accurate pressure/temperature acquisition, and full-condition aerodynamic verification.
Our aerodynamic capability is built on a proprietary model stage library covering a full range of flow rates, head coefficients, and hub ratios. Through 1D midline design tools, automatic optimization platforms, and full 3D CFD simulations, we precisely control blade loading, Mach number effects, Reynolds correction, and efficiency range matching. This enables wide operating envelopes with stable surge margins, even under high-pressure and offshore conditions.
In rotor dynamics, we co-developed dedicated analysis software with leading universities. The system supports shaft dynamic modeling, bearing stiffness and damping design, unbalance response analysis, and stability verification in accordance with API standards. Combined with FEA strength assessment for impellers, shafts, seals, and casing components, this ensures mechanical integrity under both steady and transient loads.