石油化工安全环保技术 ›› 2026, Vol. 42 ›› Issue (3): 10-13.

• 事故分析与预防 • 上一篇    

原油储罐泄漏风险评估及溢油控制策略研究

李常娥1,尤宝硕2,郭峰2,赵国柱1,   

  1. 1. 中国石油辽河油田分公司,辽宁 盘锦 124010;
    2. 中国石油长庆油田分公司第十二采油厂,甘肃 庆阳 745000
  • 收稿日期:2025-12-26 接受日期:2026-05-15 出版日期:2026-06-20 发布日期:2026-07-06
  • 作者简介:李常娥,女, 2011 年毕业于长江大学,本科,现主要从事油田开发工作,助理工程师。E-mail: Lice@163.com

On Leakage Risk Assessment and Oil Spill Control Strategies for Crude Oil Storage Tanks

Li Chang’e1,You Baoshuo2,Guo Feng2,Zhao Guozhu1   

  1. 1. Liaohe Oilfield Company of CNPC, Panjin, Liaoning, 124010;
    2. No. 12 Oil Production Plant of PetroChina Changqing Oilfield Company, Qingyang, Gansu, 745000.
  • Received:2025-12-26 Accepted:2026-05-15 Online:2026-06-20 Published:2026-07-06

摘要: 针对在役原油储罐泄漏事故中风险定量化不足等问题,引入泊松过程与连续物理模型相结合的数学方法,首先假设泄漏事件发生次数服从泊松分布,以年期望溢油体积为核心风险指标,结合孔口出流方程对不同泄漏情景下的泄漏后果进行定量建模,并对关键参数开展敏感性分析。研究表明:小孔泄漏发生频率较高但单次后果有限,其风险贡献主要表现为长期累积效应;破裂泄漏虽发生概率较低,但单次溢油体积巨大,是主导总体风险水平和不确定性的关键因素,敏感性分析显示破裂泄漏年发生率和泄漏持续时间对风险水平具有显著放大作用。

关键词: 原油储罐, 泄漏风险评估, 泊松过程, 期望年溢油量, 控制策略

Abstract: To address issues such as insufficient quantitative risk assessment in leakage accidents of in-service crude oil storage tanks, this paper introduces a mathematical method combining the Poisson process with a continuous physical model. First, it is assumed that the number of leakage events follows a Poisson distribution. Taking the annual expected oil spill volume as the core risk indicator, the orifice outflow equation is employed to quantitatively model the leakage consequences under different leakage scenarios, and a sensitivity analysis of key parameters is conducted. The study shows that although small-hole leakages occur with higher frequency, their individual consequences are limited, and their risk contribution is mainly reflected as a long-term cumulative effect. In contrast, although rupture leakages have a lower probability of occurrence, the resulting oil spill volume per event is extremely large, making them the key factor dominating the overall risk level and uncertainty. The sensitivity analysis indicates that the annual occurrence rate of rupture leakages and the leakage duration have a significant amplifying effect on the risk level.

Key words: crude oil storage tank, leakage risk assessment, Poisson process, expected annual oil spill volume, control strategy