Method and apparatus for monitoring number density of aerosol particles
US-12146809-B2 · Nov 19, 2024 · US
US10082067B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10082067-B2 |
| Application number | US-201815868132-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 11, 2018 |
| Priority date | May 7, 2013 |
| Publication date | Sep 25, 2018 |
| Grant date | Sep 25, 2018 |
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An exhaust treatment fluid system includes a tank housing for storing an exhaust treatment fluid. A suction tube includes a first end positioned within the housing. A first sensor is positioned within the tank housing for determining at least one of a fluid level and a concentration of the exhaust treatment fluid. A skirt is positioned in the tank to peripherally surround the first sensor.
Opening claim text (preview).
What is claimed is: 1. An exhaust treatment fluid system, comprising: a tank housing for storing an exhaust treatment fluid; a suction tube having an end positioned within the tank housing; a first sensor positioned in the tank housing for determining at least one of a fluid level and a concentration of the exhaust treatment fluid; and a skirt positioned in the tank housing, wherein the tank housing includes a region defined by an interior of the skirt, the first sensor being positioned within the region, the skirt including a wall and an aperture extending through the wall to allow gas to escape from a volume of exhaust treatment fluid positioned between the skirt and the first sensor. 2. The exhaust treatment fluid system of claim 1 , wherein the skirt is fixed to an interior wall of the tank housing. 3. The exhaust treatment fluid system of claim 1 , wherein the first sensor includes an ultrasonic sensor. 4. The exhaust treatment fluid system of claim 1 , further comprising a second sensor positioned in the tank housing, wherein the first sensor determines the fluid level and the second sensor determines the concentration of the exhaust treatment fluid. 5. The exhaust treatment fluid system of claim 4 , wherein the second sensor is disposed proximate the first sensor. 6. The exhaust treatment fluid system of claim 5 , wherein at least one of the first and second sensors is coupled to the suction tube. 7. The exhaust treatment fluid system of claim 1 , wherein the skirt peripherally surrounds the first sensor. 8. The exhaust treatment fluid system of claim 1 , further comprising an elongated laminar flow device secured to a discharge port of the tank housing such that exhaust treatment fluids flow along surfaces thereof as the exhaust treatment fluid is returned to the tank housing, wherein the laminar flow device includes a non-circular cross-section. 9. The exhaust treatment fluid system of claim 1 , wherein the skirt is fixed to the first sensor. 10. The exhaust treatment fluid system of claim 1 , wherein the skirt includes a height such that the skirt extends past a location of the first sensor. 11. The exhaust treatment fluid system of claim 1 , wherein the skirt includes separate first and second shells, the first shell being coupled to the second shell. 12. An exhaust treatment fluid system, comprising: a tank housing for storing an exhaust treatment fluid; a suction tube having an end positioned within the tank housing; a first sensor positioned in the tank housing for determining at least one of a fluid level and a concentration of the exhaust treatment fluid; and a skirt positioned in the tank housing, the skirt including a top wall and a peripheral wall, the top wall including an aperture to allow gas to escape from a volume of exhaust treatment fluid positioned between the skirt and the first sensor. 13. The exhaust treatment fluid system of claim 12 , wherein the skirt includes separate first and second shells, the first shell being coupled to the second shell. 14. The exhaust treatment fluid system of claim 12 , further including a temperature sensor peripherally surrounded by the skirt. 15. The exhaust treatment fluid system of claim 12 , further including a support having a first end fixed to the tank housing and an unsupported second end, the sensor being fixed to the support. 16. The exhaust treatment fluid system of claim 15 , wherein the skirt is fixed to the support. 17. The exhaust treatment fluid system of claim 16 , wherein the skirt includes a plastically deformable leg in a snap-fit coupling with the support. 18. The exhaust treatment fluid system of claim 12 , wherein the skirt includes a flexible material that is elastically deformable to withstand stress applied when the exhaust treatment fluid freezes and increases in volume.
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