IP Library Granted Patent US 9,151,736
Granted Patent B2
US 9,151,736 · App. 13/517,955 · Granted Oct 6, 2015

Quality sensor apparatus

Inventor: Bjørn Frivik (Paradis, NO)
Assignee: Wema Systems AS
G01N33/00F01N3/208G01N25/00G01N27/00G01N29/02F01N2610/14F01N2610/148F01N2900/1818Y02T10/24
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Quick Facts
Patent No.
US 9,151,736
App. No.
13/517,955
Granted
Oct 6, 2015
Kind
B2
Abstract

An apparatus ( 100 ) for measuring quality of a urea solution is operated with at least a portion of the apparatus inserted into the urea solution. The apparatus ( 100 ) includes a configuration of sensors ( 180, 190, 200 ) for measuring mechanical and electrical properties within a volume of the urea solution, the measurements of mechanical and electrical properties being mutually differently influenced by components present in the urea solution. A data processing arrangement ( 230 ) of the apparatus ( 100 ) is operable to process the measurements of mechanical and electrical properties for generating output data ( 120 ) indicative of a quality of the urea solution. The apparatus ( 100 ) is also capable of being adapted to measure qualities of other types of solution.

Claims (22)

1. An apparatus ( 100 ) for measuring the quality of a urea solution in a tank, wherein at least a portion of said apparatus is inserted in said tank, the apparatus comprising,

a configuration of sensors ( 180 , 190 , 200 ), wherein said sensors ( 180 , 190 , 200 ) are spatially distributed for measuring mechanical and electrical properties within a volume of said urea solution, said measurements of mechanical and electrical properties being influenced by components present in the urea solution which influence the quality of the urea solution, and

a data processing arrangement ( 230 ) for processing said measurements of said mechanical and electrical properties for generating output data ( 120 ) indicative of the quality of said urea solution.

2. An apparatus ( 100 ) as claimed in claim 1 , wherein said configuration of sensors ( 180 , 190 , 200 ) includes acoustic and conductivity sensors ( 190 , 200 ) for measuring mechanical and electrical properties respectively, said sensors ( 190 , 200 ) being spatially deployed spaced apart within said apparatus ( 100 ).

3. An apparatus ( 100 ) as claimed in claim 1 , wherein said sensors ( 180 , 190 , 200 ) include a thermometer for measuring a temperature (T) of said urea solution, and for providing said data processing arrangement ( 230 ) data corresponding to said temperature (T) for use in computing said quality of said urea solution.

4. An apparatus ( 100 ) as claimed in claim 2 , wherein said sensors ( 180 , 190 , 200 ) include a thermometer for measuring a temperature (T) of said urea solution, and for providing said data processing arrangement ( 230 ) data corresponding to said temperature (T) for use in computing said quality of said urea solution.

5. An apparatus ( 100 ) for measuring the quality of a urea solution in a tank, wherein at least a portion of said apparatus is inserted in said tank the apparatus comprising,

a configuration of sensors ( 180 , 190 , 200 ), wherein said sensors ( 180 , 190 , 200 ) are spatially distributed for measuring mechanical and electrical properties within a volume of said urea solution, said measurements of mechanical and electrical properties being influenced by components present in the urea solution which influence the quality of the urea solution, and

wherein said configuration of sensors ( 180 , 190 , 200 ) includes an electrical conductivity sensor for measuring an electrical conductivity of the urea solution, said conductivity sensor including a configuration of electrodes ( 720 ) disposed in a flow tunnel ( 700 , 710 ) for receiving the urea solution, said flow tunnel ( 700 , 710 ) being operable to electrically screen said configuration of electrodes from external influences spatially outside said tunnel ( 700 , 710 ), and

a data processing arrangement ( 230 ) for processing said measurements of said mechanical and electrical properties for generating output data ( 120 ) indicative of the quality of said urea solution.

6. An apparatus ( 100 ) as claimed in claim 5 , wherein said configuration of electrodes ( 720 ) includes electrodes disposed in a linear arrangement along said flow tunnel ( 700 , 710 ).

7. An apparatus ( 100 ) as claimed in claim 6 , wherein an outer set of electrodes (P 1 ) near ends of the flow tunnel ( 700 , 710 ) are operable to be excited to generate an interrogating electric field within said tunnel ( 700 , 710 ) and an inner set of electrodes (P 2 ) near a central region of the flow tunnel ( 700 , 710 ) are operable to generate a received signal for conveying to the data processing arrangement ( 230 ).

8. An apparatus ( 100 ) as claimed in claim 5 , wherein said configuration of electrodes (P 1 , P 2 ) includes at least one of: stainless steel electrodes, carbon electrodes, silver electrodes.

9. An apparatus ( 100 ) as claimed in claim 6 , wherein said configuration of electrodes (P 1 , P 2 ) includes at least one of stainless steel electrodes, carbon electrodes, silver electrodes.

10. An apparatus ( 100 ) as claimed in claim 7 , wherein said configuration of electrodes (P 1 , P 2 ) includes at least one of: stainless steel electrodes, carbon electrodes, silver electrodes.

11. An apparatus ( 100 ) as claimed in claim 1 , wherein said data processing arrangement ( 230 ) is operable to apply at least one of alternating (a.c.) signals and static (d.c.) signals to said configuration of electrodes ( 720 ) when in operation for determining at least one of static conductivity and complex conductivity of said urea solution for use in determining its quality.

12. An apparatus ( 100 ) as claimed in claim 1 , wherein said configuration of sensors ( 180 , 190 , 200 ) includes an acoustic sensor ( 180 ) including an acoustic transducer arrangement ( 530 ) disposed in a spaced apart manner from a corresponding acoustic reflector ( 510 ), wherein the transducer arrangement ( 530 ) is operable to generate one or more acoustic pulses which propagate through the urea solution, are reflected from the reflector ( 510 ) and are subsequently received back at the transducer arrangement ( 530 ) for generating a received signal for the data processing arrangement ( 230 ) to process for determining a density of the urea solution.

13. An apparatus ( 100 ) as claimed in claim 1 , wherein said apparatus ( 100 ) further includes a mounting flange ( 110 ) for mounting said apparatus ( 100 ) to a urea solution tank, a heater arrangement ( 130 , 140 ) for heating said urea solution, and a urea solution level sensing arrangement ( 150 , 160 ) for sensing a surface height of the urea solution relative to said apparatus ( 100 ).

14. A method of measuring the quality of a urea solution by using an apparatus ( 100 ), said method comprising:

(a) inserting at least a portion of said apparatus into said urea solution;

(b) measuring using a configuration of sensors ( 180 , 190 , 200 ) of said apparatus ( 100 ), wherein said sensors ( 180 , 190 , 200 ) are spatially distributed for measuring mechanical and electrical properties within a volume of said urea solution, said measurements of mechanical and electrical properties being influenced by components present in the urea solution which influence the quality of the urea solution; and

(c) processing using a data processing arrangement ( 230 ) said measurements of said mechanical and electrical properties for generating output data ( 120 ) indicative of the quality of said urea solution.

Assignments (2)
CHANGE OF NAME Recorded Oct 8, 2024
From: WEMA SYSTEM AS
To: TE CONNECTIVITY NORGE AS
Reel/Frame 068832/0643 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2012
From: FRIVIK, BJORN
To: WEMA SYSTEMS AS
Reel/Frame 028843/0783 →
Priority Claims (2)
GB 0922464.3 · Dec 21, 2009 · national
NO 20100047 · Jan 12, 2010 · national
Continuity (1)
Related Publication 20130167622A1 · Jul 4, 2013