Simulation and Experimental Study of Hydraulic Wind Heating System

Authors

  • Chengpeng Liu
  • Li Wan
  • SANGYONGLAMU
  • Wei Wang

DOI:

https://doi.org/10.54097/8bwqfv93

Keywords:

Hydraulic wind power heating; Different wind conditions; Different heating materials; System efficiency.

Abstract

 In the overall system of wind powered heating, the design of hydraulic wind powered heating system is widely used due to its excellent performance. Due to the stability and timeliness of the hydraulic system itself, as well as its ability to effectively improve the reliability and intelligence of the overall wind powered heating system, this design not only achieves smoother and more reliable braking of the high-speed shaft, but also maximizes the utilization of the excellent characteristics of the hydraulic system, thereby effectively improving the energy conversion efficiency of the wind powered heating system. This article establishes an experimental platform for a hydraulic wind energy heating system through project implementation, and simulates and measures the energy conversion efficiency of the system under different wind conditions; Simultaneously using different system cycle working fluids as heat transfer media to conduct comparative system experiments and determine the heat transfer effects of different working fluids. Finally, operate within a limited time and space to increase the temperature of the heat transfer working fluid, in order to study the energy conversion efficiency when using hydraulic wind energy for heating. Through systematic simulation and experimentation, the hydraulic wind powered heating system has been studied, effectively improving the energy conversion efficiency of the wind powered heating system and enhancing its economic value and strategic objectives.

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References

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Published

29-11-2024

Issue

Section

Articles

How to Cite

Liu, C., Wan, L., SANGYONGLAMU, & Wang, W. (2024). Simulation and Experimental Study of Hydraulic Wind Heating System. Academic Journal of Science and Technology, 13(2), 61-64. https://doi.org/10.54097/8bwqfv93