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基于威胁与风险分析的神经网络化学爆炸(TRANCE)模型用于预测炼油厂中的危险。

Threat and Risk Analysis-Based Neural Network for a Chemical Explosion (TRANCE) Model to Predict Hazards in Petroleum Refinery.

作者信息

Gabhane Lalit Rajaramji, Kanidarapu NagamalleswaraRao

机构信息

School of Chemical Engineering, Vellore Institute of Technology, Vellore 632014, Tamil Nadu, India.

出版信息

Toxics. 2023 Apr 7;11(4):350. doi: 10.3390/toxics11040350.

Abstract

Risk analysis and prediction is a primary monitoring strategy to identify abnormal events occurring in chemical processes. The accidental release of toxic gases may result in severe problems for people and the environment. Risk analysis of hazardous chemicals using consequence modeling is essential to improve the process reliability and safety of the refineries. In petroleum refineries: toluene, hydrogen, isooctane, kerosene, methanol, and naphtha are key process plants with toxic and flammable chemicals. The major process plants considered for risk assessment in the refinery are the gasoline hydrotreatment unit, crude distillation, aromatic recovery, continuous catalytic reformer, methyl-tert-butyl-ether, and kerosene merox units. Additionally, we propose a threat and risk analysis neural network for the chemical explosion (TRANCE) model for refinery incident scenarios. Significantly, 160 attributes were collected for the modeling on the basis of the significance of failure and hazardous chemical leaks in the refinery. Hazard analysis shows that the leakages of hydrogen and gasoline at the gasoline hydrotreatment unit, kerosene at the kerosene merox plant, and crude oil at crude-distillation units were areas of profound concern. The developed TRANCE model predicted the chemical explosion distance with an accuracy value of 0.9994 and of 679.5343.

摘要

风险分析与预测是识别化学过程中发生的异常事件的主要监测策略。有毒气体的意外泄漏可能会给人员和环境带来严重问题。使用后果模型对危险化学品进行风险分析对于提高炼油厂的过程可靠性和安全性至关重要。在石油炼油厂中:甲苯、氢气、异辛烷、煤油、甲醇和石脑油是含有有毒和易燃化学品的关键工艺装置。炼油厂中考虑进行风险评估的主要工艺装置有汽油加氢处理单元、原油蒸馏、芳烃回收、连续催化重整装置、甲基叔丁基醚装置和煤油脱臭装置。此外,我们针对炼油厂事故场景提出了一种化学爆炸威胁与风险分析神经网络(TRANCE)模型。值得注意的是,基于炼油厂故障和危险化学品泄漏的重要性,为建模收集了160个属性。危险分析表明,汽油加氢处理单元的氢气和汽油泄漏、煤油脱臭装置的煤油泄漏以及原油蒸馏单元的原油泄漏是需要高度关注的区域。所开发的TRANCE模型预测化学爆炸距离的准确率为0.9994,预测值为679.5343。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0347/10141021/aa2cf2b62f5a/toxics-11-00350-g001.jpg

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