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Experimental investigation of maximum temperature and longitudinal temperature distribution induced by linear fire in portals-sealed tunnel

Rongliang Pan, Guoqing Zhu, Pufan Wang, Xiang Zhou, Zhen-huan Liang, Hao-nan Liu, Gang Xu

2020Case Studies in Thermal Engineering27 citationsDOIOpen Access PDF

Abstract

A set of experimental tests were conducted to investigate the maximum gas temperature rise and longitudinal temperature distribution beneath the centerline ceiling in a portals-sealed arched tunnel, taking fuel tank central angle location along the sidewall (expressed by effective ceiling height) and linear fire size into account. A linear fuel tank burner, placed on the arched sidewall of the tunnel, was utilized to simulate the fire source. A new empirical formula was proposed to predict the maximum excess temperature beneath the ceiling in a portals-sealed tunnel fire, based on dimensional analysis. The experimental results show that the non-dimensional maximum excess temperature has an exponential decaying relationship with non-dimensional fuel tank length. A predecessor's equation is modified to present the longitudinal temperature distribution beneath the centerline of arced-ceiling in a portals-sealed tunnel fire, which is consists of the sum of two exponential equations. The comparison of longitudinal temperature distribution between fire in portals-sealed tunnel and natural ventilation tunnel was conducted. The study is expected to provide some references for actual tunnel fire-fighting.

Topics & Concepts

Ceiling (cloud)MechanicsCombustorExponential functionMaximum temperatureMaterials scienceNatural ventilationEnvironmental scienceVentilation (architecture)MeteorologyGeologyAtmospheric sciencesCombustionPhysicsChemistryOrganic chemistryMathematicsMathematical analysisFire dynamics and safety researchEvacuation and Crowd DynamicsFire effects on ecosystems
Experimental investigation of maximum temperature and longitudinal temperature distribution induced by linear fire in portals-sealed tunnel | Litcius