家电科技 ›› 2025, Vol. 0 ›› Issue (3): 53-57.doi: 10.19784/j.cnki.issn1672-0172.2025.03.008

• 论文 • 上一篇    下一篇

基于风冷电压力锅的开盖散热仿真研究与优化

翁文丰1, 赵东平1, 高文祥1, 万鹏1,2   

  1. 1.佛山市顺德区美的电热电器制造有限公司 广东佛山 528300;
    2.大连理工大学 辽宁大连 116024
  • 发布日期:2025-08-19
  • 通讯作者: 万鹏,E-mail:peng.wan@midea.com。
  • 作者简介:翁文丰,硕士学位,高级工程师。研究方向:家用电器。地址:广东省佛山市顺德区北滘镇美的全球创新中心2栋。E-mail:wenfen1917@163.com。

Research and optimization of heat dissipation simulation based on air-cooled electric pressure cooker

WENG Wenfeng1, ZHAO Dongping1, GAO Wenxiang1, WAN Peng1,2   

  1. 1. Foshan Shunde Midea Electric Heating Appliance Manufacturing Co., Ltd. Foshan 528300;
    2. Dalian University of Technology Dalian 116024
  • Published:2025-08-19

摘要: 电压力锅完成烹饪后需等待内锅温度下降、锅内气压恢复到常压才能开盖,内部温度下降速度越快,用户开盖等待时间越短。基于传热学知识,分析电压力锅风冷散热方式。通过CFD仿真手段,对电压力锅的现有结构进行仿真计算与分析。结果表明:现有风冷散热方案的进风口对侧的空气流动强度较小,导致内锅降温慢,开盖时间长。基于以上分析结果,设计四种优化方案并进行仿真计算,对比发现:在进风口对侧开孔同时阻止空气从上方流出,能够使内锅的温度有效下降且整体温度均匀性好,环线1和2的平均温度为347 K与343 K,相对于原有方案368 K与358 K分别优化了约5.7%与4.2%,能够使电压力锅开盖时间缩短,带来更好的用户体验。

关键词: 电压力锅, 风冷散热, CFD, 热流耦合

Abstract: In electric pressure cookers, the lid cannot be opened until the inner pot temperature decreases and the internal pressure returns to normal after cooking completion. Based on the knowledge of thermodynamics, the air-cooled heat dissipation mode of electric pressure cooker was analyzed. By CFD simulation, the existing structure of the electric pressure cooker was simulated and analyzed. The results show that the air flow intensity on the opposite side to the air inlet of the existing air-cooled heat dissipation scheme is small, which leads to the slow cooling of the inner pot and long waiting time to open the lid. Based on the above analysis results, four optimization schemes are designed and simulated. By comparison, it is found that opening holes on the opposite side to the air inlet and preventing air from flowing out from the top can effectively reduce the temperature of the inner pot and ensure good overall temperature uniformity. The average temperatures of loop 1 and loop 2 are 347 K and 343 K respectively, which are optimized by about 5.7% and 4.2% compared with 368 K and 358 K of the original scheme. This can reduce the waiting time to open the lid and achieve better user experience.

Key words: Electric pressure cooker, Air-cooled heat dissipation, CFD, Thermal-fluid coupling

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