Energy Storage Science and Technology ›› 2023, Vol. 12 ›› Issue (11): 3387-3394.doi: 10.19799/j.cnki.2095-4239.2023.0515

• Energy Storage System and Engineering • Previous Articles     Next Articles

Simulation study on explosion and relief of parallel prefabricated cabin exchange power station

Guanlin PENG1,2(), Xiaodong LING1,2(), Yujie LIN1,2, Hui JIANG1   

  1. 1.SINOPEC Research Institute of Safety Engineering Co. Ltd.
    2.SINOPEC National Petrochemical Project Risk Assessment Technical Center Co. Ltd. , Qingdao 266104, Shandong, China
  • Received:2023-07-31 Revised:2023-08-21 Online:2023-11-05 Published:2023-11-16
  • Contact: Xiaodong LING E-mail:penggl.qday@sinopec.com;Lingxd.qday@sinopec.com

Abstract:

With changes in energy structure, comprehensive energy stations that integrate oil, gas, hydrogen, and electricity have become the developmental trend of future energy refueling stations. As the electrical energy module of a comprehensive energy station, the prefabricated modular heat exchange station carries explosion accident risks caused by thermal runaway of the battery, leading to secondary accidents. This article establishes a 1∶1 three-dimensional simulation model based on an already operational parallel prefabricated module power station. The gas released by the thermal runaway battery in the power station was used as the explosion source. The shock wave propagation process in a combustion and explosion accident in a parallel prefabricated module power station was studied via CFD simulation, and the maximum impact range of the accident under the existing structure was determined. The influence of the setting method of explosion relief device on the explosion relief effect was explored. The research results are summarized as follows. ① The maximum explosion overpressure and impact range generated after a combustion and explosion accident in the exchange station cabin could be obtained through simulation, which had a relatively small impact on the adjacent exchange cabin of the parallel exchange station. ② By setting up an explosion relief device, the maximum explosion pressure and overpressure of the shock wave in the power exchange compartment could be significantly reduced, effectively reducing the consequences of combustion and explosion accidents. ③ The venting effect was approximately linearly related to the opening pressure of the venting device, and the smaller the opening pressure, the more obvious the venting effect. The relative distance between the venting device and ignition source influences the venting effect. The closer the venting device was to the ignition source, the better the venting effect. The venting effect was influenced by the position of the venting device, and the venting rate ranges from high to low at the rear, side, and top. This supports the safe operation of comprehensive energy stations and prevents domino accidents.

Key words: rexchange power station, lithium batteries, explosion venting, CFD

CLC Number: