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The parameters investigated are the enclosure geometry (aspect ratio, volume and roof pitch), surface absorption and fittings (density, size, surface area, vertical distribution and specific types).
A coupled gas-particulate numerical model is presented using Finite Differences to solve for the gas flow with an Immersed Boundary Method (IBM) to represent the complex bucket and enclosure geometry in the model.
The late reverberations, on the other hand, depend on acoustic environment characteristics, e.g., enclosure geometry, surface area, surface material absorption coefficient, and so on.
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The scaling analysis was validated using detailed numerical simulations for different enclosure geometries and outside diurnal climate conditions.
Building information modeling (BIM) provides the user with an opportunity to explore different energy saving alternatives in the design process while avoiding the time-consuming process of re-entering all the building geometry, enclosure, and HVAC information necessary for a complete energy analysis.
As examples, combustion of premixed hydrogen air, propane air, and n-heptane air mixtures in-heptane airof different geomixtures consinenclosures
In order to optimize the geometry of enclosure, the positions of the control points of the B-spline curves which represent the geometry of the enclosure are optimized.
Therefore, for enclosures without too complex geometry in their interior, it is more efficient to use the RC method for thermal management and design of electronic compartments.
Most of the experimental research into vented gas explosions has been conducted in single enclosure, cuboid or spherical geometries which are not representative of accidental explosions in dwellings or process industries.
The present paper numerically analyzes a passive cooling system using enclosures with different geometries filled with thermal conductivity-enhanced phase change material (PCM).
Thus, the varying parameters of the study were mainly the source diameter, the releasing flow rate, the volume and the geometry of the enclosure.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com