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- W2189421513 abstract "This paper describes scale-model laboratory experiments with salt-bath simulations, onthe flow and stratification in two coupled rooms connected to the exterior by a singlevent. The two rooms are connected by two openings one at high-level and one at low-level in the dividing wall. One “forced” room has a buoyancy source, while the outletvent is in the “unforced” room and is placed in such a way that the buoyancy in the roomcan potentially drive an exchange flow through it. The buoyancy source is also a sourceof volume flux, such as cool air pumped into a room from an overhead duct, in which casethe outlet is on the floor of the unforced room. We consider the effect of the size of theoutlet vent on the resulting stratification in the two rooms. For a small vent only unidi-rectional flow occurs, and since no ambient fluid enters the rooms, the buoyancy in bothrooms becomes uniform and approaches asymptotically to the buoyancy of the source.Above a critical vent size a bidirectional flow is driven through the vent by the buoyancyforces. In this case ambient fluid enters the rooms and a steady state is reached when thebuoyancy flux through the outlet vent equals that of the buoyancy source. Both roomsremain stratified with two-layer weak stratification in this case, with a mean density thatdecreases as the size of the outlet increases. The implications for ventilation are dis-cussed." @default.
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- W2189421513 date "2009-01-01" @default.
- W2189421513 modified "2023-10-01" @default.
- W2189421513 title "Buoyancy-Driven Flow in Two Interconnected Rooms: Effects of the Exterior Vent Location and Size paper describes scale-model laboratory experiments with salt-bath simulations, on" @default.
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