石油炼制与化工 ›› 2025, Vol. 56 ›› Issue (11): 72-78.

• 控制与优化 • 上一篇    下一篇

火灾工况下脱丁烷塔泄放过程的动态模拟研究

高腾飞,徐韵雅,向忠权   

  1. 惠生工程(中国)有限公司
  • 收稿日期:2025-06-03 修回日期:2025-07-28 出版日期:2025-11-12 发布日期:2025-10-24
  • 通讯作者: 高腾飞 E-mail:gaotf_7@163.com

DYNAMIC SIMULATION STUDY ON THE RELIEF PROCESS OF DEBUTANIZER TOWER UNDER FIRE CONDITIONS

  • Received:2025-06-03 Revised:2025-07-28 Online:2025-11-12 Published:2025-10-24

摘要: 基于严格的热力学模型,运用动态流程模拟方法在Aspen HYSYS Dynamic平台构建了脱丁烷塔多相流动态仿真系统,实现了对系统安全阀泄放过程的定量分析;进而研究了选用不同型式安全阀时脱丁烷塔在火灾工况下的压力、温度及泄放流量瞬态响应特性。结果表明:动态模型可更准确地预测安全阀超压峰值和瞬时泄放速率;在工程设计过程中,脱丁烷塔参数的选取需考虑火灾泄放终止时系统内热力学参数的变化。此外,通过对比不同尺寸型号和不同阀门特性安全阀的泄放特性发现:安全阀喉部面积越大,泄放时系统压力稳定得越快;比较不同泄放流量特性(快开、线性、等百分比)安全阀的性能,发现快开特性安全阀的泄放性能最优。

关键词: 脱丁烷塔, 动态模拟, 火灾工况, 安全阀, 泄放特性, 阀门选型

Abstract: Based on rigorous thermodynamic modeling, a dynamic process simulation system for multiphase flow in a debutanizer tower was developed using Aspen HYSYS Dynamic. This system enabled quantitative analysis of safety valve relief processes. Subsequent investigations examined the transient pressure, temperature, and relief flowrate characteristics of the debutanizer tower under fire scenarios when equipped with different safety valve types.the results demonstrate that the dynamic model provides more accurate predictions of overpressure peaks and instantaneous relief rates compared to conventional methods. Engineering design parameters for debutanizer towers must account for thermodynamic state variations upon fire relief termination. Comparative analysis of valve specifications revealed: larger throat areas accelerate system pressure stabilization during relief events.Among valves with different flow characteristics (quick-opening, linear, equal-percentage), quick-opening valves exhibited optimal relief performance.

Key words: debutanizer tower, dynamic simulation, fire scenario, safety valve, relief characteristics, valve selection