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参考文献
[1] GB/T 6379(所有部分) 测量方法与结果的准确度
[2] TANAKA,T.,A Model on Fire Spread in Small Scale Buildings,BRI Research Papers,Nos.79 and 84,Building Research Institute,1978,1980.
[3] PEACOCK,R.,JONES,W.W.,FORNEY,G.P.,RENEKE,P.A.,BUKOWSKI,R. W.and KLOTE,J.H.,An Updated Guide for HAZARD I version 1.2,NISTIR 5410,Building and Fire Research Laboratory,US National Institute of Standards and Technology,1994.
[4] KAWAGOE K.,Fire Behavior in Rooms,BRI Report No.27,Building Research Institute,Tokyo,Japan,1958.
[5] YAMADA,T.,Experimental Study of the Exchange Flow through a Horizontal Ceiling Vent in Atrium Fires:Criteria of Supply Air and Pressure Necessary for Unidirectional Flow,NISTIR 6030:Thirteenth Meeting of the UJNR Panel on Fire Research and Safety,13-20 March 1996,Building and Fire Research Laboratory,US National Institute of Standards and Technology,1997.
[6] COOPER,L.Y.,Combined Buoyancy- and Pressure-Driven Flow Through a Shallow,Horizontal Circular Vent,Journal of Heat Transfer,Vol.117,pp.659-667,August 1995.
[7] PRAHL,J.and EMMONS,H.W.,Fire Induced Flow through an Opening,Combustion and Flame,Vol.25,pp.369-385,1975.
[8] ROCKETT A.J.,Fire Induced Gas Flow in an Enclosure,Combustion Science and Technology,Vol.12,pp.165-175,1976.
[9] STECKLER,K.D.,QUINTIERE,J.G.and RINKINEN,W.J.,Flow Induced by Fire in a Compartment,19th Symposium (International) on Combustion,pp.913-920,The Combustion Institute,1982.
[10] STECKLER,K.D.,BAUM,H,R.and QUINTIERE,J.G.,Fire Induced Flow through Room Openings-Flow Coefficients,20th Symposium (International) on Combustion,pp.1591-1600,The Combustion Institute,1984.
[11] QUINTIERE,J.G.,STECKLER,K.and CORLEY,D.,An Assessment of Fire Induced Flows in Compartments,Fire Science and Technology,Vol.4(1),pp.1-14,Science University of Tokyo,1984.
[12] NAKAYA,I.,TANAKA,T.,YOSHIDA,M.and STECKLER K.,Doorway Flow Induced by a Propane Fire,Fire Safety Journal,Vol.10,pp.185-195,1986.
[13] BELYER C.,SFPE Classic Paper Review:Fire-Induced flow through an Opening by Joseph Prahl and Howard Emmons,Journal of Fire Protection Engineering,Vol.14,No.2,pp.95-100,2004.
[2] TANAKA,T.,A Model on Fire Spread in Small Scale Buildings,BRI Research Papers,Nos.79 and 84,Building Research Institute,1978,1980.
[3] PEACOCK,R.,JONES,W.W.,FORNEY,G.P.,RENEKE,P.A.,BUKOWSKI,R. W.and KLOTE,J.H.,An Updated Guide for HAZARD I version 1.2,NISTIR 5410,Building and Fire Research Laboratory,US National Institute of Standards and Technology,1994.
[4] KAWAGOE K.,Fire Behavior in Rooms,BRI Report No.27,Building Research Institute,Tokyo,Japan,1958.
[5] YAMADA,T.,Experimental Study of the Exchange Flow through a Horizontal Ceiling Vent in Atrium Fires:Criteria of Supply Air and Pressure Necessary for Unidirectional Flow,NISTIR 6030:Thirteenth Meeting of the UJNR Panel on Fire Research and Safety,13-20 March 1996,Building and Fire Research Laboratory,US National Institute of Standards and Technology,1997.
[6] COOPER,L.Y.,Combined Buoyancy- and Pressure-Driven Flow Through a Shallow,Horizontal Circular Vent,Journal of Heat Transfer,Vol.117,pp.659-667,August 1995.
[7] PRAHL,J.and EMMONS,H.W.,Fire Induced Flow through an Opening,Combustion and Flame,Vol.25,pp.369-385,1975.
[8] ROCKETT A.J.,Fire Induced Gas Flow in an Enclosure,Combustion Science and Technology,Vol.12,pp.165-175,1976.
[9] STECKLER,K.D.,QUINTIERE,J.G.and RINKINEN,W.J.,Flow Induced by Fire in a Compartment,19th Symposium (International) on Combustion,pp.913-920,The Combustion Institute,1982.
[10] STECKLER,K.D.,BAUM,H,R.and QUINTIERE,J.G.,Fire Induced Flow through Room Openings-Flow Coefficients,20th Symposium (International) on Combustion,pp.1591-1600,The Combustion Institute,1984.
[11] QUINTIERE,J.G.,STECKLER,K.and CORLEY,D.,An Assessment of Fire Induced Flows in Compartments,Fire Science and Technology,Vol.4(1),pp.1-14,Science University of Tokyo,1984.
[12] NAKAYA,I.,TANAKA,T.,YOSHIDA,M.and STECKLER K.,Doorway Flow Induced by a Propane Fire,Fire Safety Journal,Vol.10,pp.185-195,1986.
[13] BELYER C.,SFPE Classic Paper Review:Fire-Induced flow through an Opening by Joseph Prahl and Howard Emmons,Journal of Fire Protection Engineering,Vol.14,No.2,pp.95-100,2004.
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