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外部热源作用下变压器喷射火形成机理及临界判据研究

Study on the Formation Mechanism and Critical Criterion of Transformer Jet Fire under External Heat Source.

作者信息

Sun Ruibang, Liu Chang, Zhang Xinwei, Ye Wei, Wang Xiaofeng, Ruan Huanqi

机构信息

School of Safety Science, Tsinghua University, Beijing 100084, China.

China Electric Power Research Institute, Beijing 100190, China.

出版信息

ACS Omega. 2025 Mar 5;10(10):10438-10449. doi: 10.1021/acsomega.4c10728. eCollection 2025 Mar 18.

Abstract

Jet fire is a kind of instability behavior in the combustion process of a transformer. Once the jet fire occurs, the typical characteristic parameters of the fire change nonlinearly, which brings uncertainty and danger to the emergency response. The current research mostly focuses on the combustion instability mechanism of oil-filled equipment under the action of an external heat source and pays little attention to the mechanism and critical criterion of jet fire formed by transformer leakage combustion instability. The leakage combustion of the transformer leads to the dynamic change of thermodynamic state parameters of the medium, and the mechanism of overpressure induced by the phase transition from metastable to unsteady state is not revealed. It is of great significance to study the formation mechanism and critical criterion of transformer jet fire for explaining the dynamic competition behavior between the internal gas production rate and discharge rate during transformer combustion. In this study, the heat loss experiments of transformer oil under different heating rates were carried out, the boiling range of transformer oil was obtained to be 102-300 °C, and the average activation energy was 65.41 kJ/mol. Experiments on the formation mechanism of transformer jet fire under different fire power were carried out, the phase characteristics of the jet release of transformer oil were elucidated, and it was clarified that overpressure was the driving force for the occurrence of the fire. It was found that the key criteria for the formation of a jet fire are a transformer oil temperature of 300 °C and a pressure rise rate of 0.001 kPa/s. The results of this study will help firefighters and rescuers to formulate a more scientific, rational, and safer fire-fighting strategy.

摘要

喷射火是变压器燃烧过程中的一种不稳定行为。一旦发生喷射火,火灾的典型特征参数会发生非线性变化,这给应急响应带来了不确定性和危险。目前的研究大多集中在外部热源作用下充油设备的燃烧不稳定机理,而对变压器泄漏燃烧不稳定形成喷射火的机理及临界判据关注较少。变压器的泄漏燃烧导致介质热力学状态参数的动态变化,亚稳态到非稳态相变引起超压的机理尚未揭示。研究变压器喷射火的形成机理和临界判据,对于解释变压器燃烧过程中内部产气速率与排出速率之间的动态竞争行为具有重要意义。本研究开展了不同加热速率下变压器油的热损失实验,得到变压器油的沸程为102 - 300℃,平均活化能为65.41kJ/mol。进行了不同火力下变压器喷射火形成机理的实验,阐明了变压器油喷射释放的相态特征,并明确超压是火灾发生的驱动力。发现形成喷射火的关键判据是变压器油温300℃和压力上升速率0.001kPa/s。本研究结果将有助于消防员和救援人员制定更科学、合理、安全的灭火策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/766a/11923662/a4a1d911bf81/ao4c10728_0001.jpg

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