Research on the Operating Characteristics of a Micro Turbine-Based Emergency Device

2026-99-0912

8/7/2026

Authors
Abstract
Content
To meet the power and electricity supply demands in special scenarios such as fire safety rescue, mine refuge chambers, and explosion-proof and dust-proof environments, a portable emergency rescue device powered by compressed air and driven by a two-stage axial-flow micro-pneumatic turbine is proposed. The pressure and velocity fields of the pneumatic turbine were analyzed using a combination of numerical analysis and experiments. The effects of nozzle number and inlet pressure on the operational characteristics of the turbine and the emergency device were compared. The results show that the maximum ratio of the output torque of rotor 2 to rotor 1 is 12%. The output power of rotor 2 is less than that of rotor 1, with the maximum output power of rotor 2 being 16.5% of rotor 1. The two-stage rotor structure helps to reduce residual speed loss. At the same rotational speed, increasing the inlet pressure of the turbine can enhance its output power. At an inlet pressure of 300 kPa and a rotational speed of 30, 000 rpm, the aerodynamic turbine torque is 13.8 N·m, and the turbine reaches an output power of 42 W. The emergency device, operating in a triple-nozzle mode, shows higher power and efficiency compared to the two-nozzle mode, demonstrating a higher power and efficiency than that observed in a two-nozzle mode. The maximum power output is 28.1 W, with the highest efficiency reaching 24.87%.
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Citation
Liu, J., Wu, X., Gao, Z., Chen, B., et al., "Research on the Operating Characteristics of a Micro Turbine-Based Emergency Device," 2025 International Symposium on Mechatronics and Automation (ISMA 2025), Guiyang, China, September 19, 2025, .
Additional Details
Publisher
Published
20 hours ago
Product Code
2026-99-0912
Content Type
Technical Paper
Language
English