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Effect of Initial Temperature on Flame Spread over a Sand Bed Wetted with Transformer Oil

delete2025-05-10
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OA
AI
J
Jiaqing Zhang
J
Jiaqing Zhang *
Y
Yi Guo
G
Guocheng Ding
DOI:10.3390/fire8050193delete
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Abstract

Abstract

En 中文
A series of experiments were conducted on quartz sand beds wetted with transformer oil under initial temperatures of 80-140 degrees C and fuel-sand mass ratios of 1:4-1:8. The flame spreading process over the fine sand bed wetted with limited liquid fuel can be divided into the development and quasi-steady stages. Experimental results reveal that the flame spread rate in the quasi-steady stage increases with the initial temperature and fuel-sand mass ratio. The effect of sand bed width on flame spread depends on the initial temperature. The flame spread rate is insensitive to the sand bed width at low initial temperatures; however, it increases with sand bed width at an initial temperature close to the flash point of liquid fuel. This discrepancy mainly results from the enhanced capillary effect due to the decreased viscosity at high initial temperatures. The capillary effect is the dominant factor determining fuel vaporization and, thus, the flame spread rate, and flame radiation plays an increasing role with increasing initial temperature. The maximum flame height is sensitive to sand bed width and fuel-sand mass ratio but changes little with initial temperature. A dimensionless model was proposed to predict the normalized flame height.
Keywords:
flame spread
transformer oil
sand bed
initial temperature
flame height

Journal

F
Fire Switzerland
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2.7
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S
State Grid
Scholars:
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Papers: 22
Citations: 2
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