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The flow rate, lateral zone of impact of a well, liquids volume added, and injection pressure were normalized with the waste properties and well dimensions to formulate dimensionless variables.
The governing equation (Richard's equation) and the boundary conditions were analyzed to formulate dimensionless variables by normalizing the design parameters (flow rate, injection pressure, the lateral zone of impact, injection pressure, and the added liquids volume) with the waste properties and source dimensions.
The key parameters for designing a horizontal source (horizontal trenches, infiltration ponds, infiltration galleries or blankets) for steady state are the rate liquids can be added to the source, the lateral and vertical extents of the zone of impact of the source, and the liquids volume needed to wet the waste within the zone of impact at steady state.
The rate at which liquids can be added to a vertical well, the lateral zone of impact of the well, and the liquids volume needed to wet the waste within the zone of impact of the well are the key inputs needed to design a vertical well system.
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Within that, liquids volumes were up 2%, while gas volumes were down a little less than 1%.
Upon melting, the solid metal expands about 7 percent in volume, the solidification shrinkage being 6.6 percent of the liquid volume.
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Reservoir liquid volume, ft3.
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gas liquid interfacial area per bioreactor liquid volume [m2/m3].
Figure 1 Optical scanning to measure airway surface liquid volume.
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