Devices and methods for causing turbulent flow in a tank assembly
US-9004101-B2 · Apr 14, 2015 · US
US11582902B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11582902-B2 |
| Application number | US-202017138727-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 30, 2020 |
| Priority date | Nov 9, 2018 |
| Publication date | Feb 21, 2023 |
| Grant date | Feb 21, 2023 |
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An apparatus to prevent formation of a vortex has a ring-shaped gasket having a bottom surface and a top surface; and a blade assembly mounted on the top surface and comprising a center portion and plural blades of a defined height. Each of the blades extend from the center portion to the top surface, with each pair of the plural blades defining a filter based at least in part on spacing between the pair of plural blades.
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What is claimed is: 1. A vortex prevention adapter, comprising: a hollow cylindrical base defining a top surface, a bottom surface, an inner cylindrical surface, an outer cylindrical surface, and a circumferential recess in the outer cylindrical surface between the top surface and the bottom surface; and a plurality of blades connected directly to one another along a central axis having an end proximal to and above the top surface of the base and an end distal from the base; wherein an upper edge of each of the blades is nonlinear and extends from the distal end of the central axis to the top surface of the base such that the upper edges of each of the blades have at least one point defining a circle having a center on the central axis and a diameter larger than a diameter of the outer cylindrical surface of the base; wherein a lower edge of each of the blades extends from the proximal end of the central axis to the top surface of the base; and wherein adjacent pairs of the blades together define channels extending through the base. 2. The vortex prevention adapter of claim 1 , further comprising a plurality of members extending from the proximal end of the central axis to the top surface of the base, each intersecting one of the channels. 3. The vortex prevention adapter of claim 2 , wherein each member has a curved shape, a spline shape, or a straight-edge shape. 4. The vortex prevention adapter of claim 2 , wherein a shape of each member is different from a shape of the blades. 5. The vortex prevention adapter of claim 1 , wherein the plurality of blades comprises at least three blades. 6. The vortex prevention adapter of claim 1 , wherein each blade of the plurality of blades has a geometric configuration in common with other blades of the plurality of blades. 7. The vortex prevention adapter of claim 1 , further comprising a seal disposed in the circumferential recess of the base. 8. The vortex prevention adapter of claim 1 , wherein the lower surface of each of the blades extends from the central axis to the top surface of the base along a nonlinear path. 9. The vortex prevention adapter of claim 1 , wherein the hollow cylindrical base and the plurality of blades form a unitary body. 10. The vortex prevention adapter of claim 1 , wherein the hollow cylindrical base and the plurality of blades comprise a polymer. 11. The vortex prevention adapter of claim 10 , wherein the hollow cylindrical base and the plurality of blades comprise polypropylene. 12. A system, comprising: a chemical eductor defining a volumetric space with a progressively decreasing cross sectional area that terminates at an outlet; and a vortex prevention adapter disposed in the outlet, the vortex prevention adapter comprising: a hollow cylindrical base defining a top surface, a bottom surface, an inner cylindrical surface, an outer cylindrical surface, and a circumferential recess in the outer cylindrical surface between the top surface and the bottom surface; and a plurality of blades connected directly to one another along a central axis having an end proximal to and above the top surface of the base and an end distal from the base; wherein an upper edge of each of the blades is nonlinear and extends from the distal end of the central axis to the top surface of the base such that the upper edges of each of the blades have at least one point defining a circle having a center on the central axis and a diameter larger than a diameter of the outer cylindrical surface of the base; wherein a lower edge of each of the blades extends from the proximal end of the central axis to the top surface of the base; and wherein adjacent pairs of the blades together define channels extending through the base. 13. The system of claim 12 , wherein the vortex prevention adapter further comprises a plurality of members extending from the proximal end of the central axis to the top surface of the base, each intersecting one of the channels. 14. The system of claim 13 , wherein each member has a curved shape, a spline shape, or a straight-edge shape. 15. The system of claim 13 , wherein a shape of each member is different from a shape of the blades. 16. The system of claim 12 , wherein the plurality of blades comprise at least three blades. 17. The system of claim 12 , wherein the lower surface of each of the blades extends from the central axis to the top surface of the base along a nonlinear path. 18. The system of claim 12 , further comprising a seal within a volume defined by the circumferential recess and the chemical educator. 19. The system of claim 18 , wherein the seal comprises an O-ring. 20. The system of claim 12 , wherein the base of the vortex prevention adapter is disposed within the outlet, and wherein the blades extend from the base toward a center of the volumetric space defined by the chemical educator.
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