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Titlebook: Atmospheric Dispersion of Heavy Gases and Small Particles; Symposium, Delft, Th Gijsbert Ooms,Hendrik Tennekes Conference proceedings 1984

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Essener Beiträge zur MathematikdidaktikSome theoretical models have been developed during the last twenty five years for the dispersion of a stack plume with a density larger than air. Also experiments have been carried out to investigate the properties of suck heavy plumes. A critical review about these models and experiments has been written.
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Dispersion of a Stack Plume Heavier than Air,Some theoretical models have been developed during the last twenty five years for the dispersion of a stack plume with a density larger than air. Also experiments have been carried out to investigate the properties of suck heavy plumes. A critical review about these models and experiments has been written.
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Entrainment in Gravity Currents,e definition and observability of entrainment in unsteady gravity currents, applicability of the empirical entrainment laws to gravity currents, the concept of entrainment energy conversion, and of two-way entrainment.
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The Incorporation of Wind Shear Effects into Box Models of Heavy Gas Dispersion,ether, and how, such models should be amended to incorporate the effects of ambient wind shear. As is desirable, the proposed changes do not materially alter the simplicity of box models, which is their most important practical advantage.
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Recent Results in Simulating LNG Vapor Dispersion over Variable Terrain, 30 m. LNG spill experiments. In general, good agreement between model predictions and field measurements was observed and many important features associated with heavy gas dispersion were successfully reproduced.
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On the Dilution of a Dense Gas Plume: Investigation of the Effect of Surface Mounted Obstacles,er some simple considerations is offered regarding the effect of a simple porous two-dimensional obstacle on such a plume. Finally a limited set of full scale experimental results, in which CO. is used as a model gas, is presented.
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Improved Understanding of Heavy Gas Dispersion and its Modelling, layer, even after the short gravity spreading phase..As expected, vertical diffusion coefficients are distinctively smaller as in the atmospheric boundary layer..Turbulence induced by the vapour cloud has a noticeable effect on diffusion..More data are needed and must be evaluated to support these findings.
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A Wind Tunnel Model of the Porton Dense Gas Spill Field Trials,rtaken to assess the validity of the wind tunnel modelling technique as a dispersion prediction method [1]. The comparative data used was that obtained from the field trials carried out at Porton Down in 1976/7. In addition a number of scaling experiments were carried out in order to further investigate the modelling technique.
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