A Linear Stability Analysis of a Vapor Film in Terms of the Triggering of Vapor Explosions
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概要
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A detailed analytical model to explain the vapor film collapse was developed to evaluate the occurrence conditions of self-triggering vapor explosions. The following conclusions were drawn based on linear stability analysis using the thermo-physical property of water, by linearizing and perturbing basic equations (Rayleigh-Lamb-Plesset’s bubble momentum equation, the mass conservation equation, the state equation for ideal gas, and the Clausius-Clapeyron equation). The vapor film stabilizes with the reduction of the hot-liquid diameter, decrease of the condensation heat transfer coefficient, or increase of the thermal radiation coefficient. The cold-liquid viscosity and surface tension have a stabilizing effect, though this effect is negligibly small when the hot-liquid diameter is over 1 mm. The analysis predicts the vapor explosion occurrence limits obtained experimentally by other researchers within approximately 10 K. A simple correlation for the stability boundary is proposed by simplifying the above detailed model: the difference in cold-liquid temperature at the stability boundary between these models is less than 1 K when the condensation heat transfer coefficient is over 104W/m2·K and the hot-liquid temperature is lower than 2,000°C.
- 一般社団法人 日本原子力学会の論文
- 2002-10-25
著者
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Furuya Masahiro
Nuclear Technology Research Laboratory Central Research Institute Of Electric Power Industry (criepi
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Furuya M
Nuclear Energy System Department Central Research Institute Of Electric Power Industry
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Matsumura Kunihito
Faculty Of Engineering Ibaraki University
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Kinoshita Izumi
Nuclear Energy System Department Central Research Institute Of Electric Power Industry
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FURUTA Masahiro
Nuclear Energy System Department, Central Research Institute of Electric Power Industry
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Furuta Masahiro
Nuclear Energy System Department Central Research Institute Of Electric Power Industry
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Furuya Masahiro
Nuclear Energy System Department, Central Research Institute of Electric Power Industry
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