IP Library Granted Patent US 10,060,873
Granted Patent B2
US 10,060,873 · App. 14/782,626 · Granted Aug 28, 2018

Tapered soil moisture sensor arrangement and method of installation

Inventor: Peter Buss (Stepney, AU)
Assignee: SENTEK PTY LTD.
G01N27/223G01N33/246
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Quick Facts
Patent No.
US 10,060,873
App. No.
14/782,626
Granted
Aug 28, 2018
Kind
B2
Abstract

A sensor housing having a body for housing a soil moisture sensor arrangement with sensors arranged within and along the length of the housing, the body is shaped so that there is a continuous taper from the head end having the larger outer diameter to the inserted end having the smaller outer diameter, and the volume of the opening created by an auger in the ground will provide a matching volume for the sensor housing of a predetermined volume such that the entire tapered outer surface of the sensor is adjacent the ground along the full length of the created opening. The sensors include at least a first capacitive element, and a second capacitive element that has a maximum outer diameter smaller than the maximum outer diameter of the first capacitive element.

Claims (28)

1. A soil moisture sensor arrangement for use in a prepared opening in soil including:

a housing including an elongate body with a head end, an inserted end, and an outer surface being continuously tapered from the head end to the inserted end to form a hollow space therein, and

at least one soil moisture sensor located within the hollow space of the housing,

wherein, in use, the housing is located within the prepared opening and the outer surface of the housing is in conformance with the surface of the prepared opening along substantially the full length of the housing and each soil moisture sensor provides for the measurement of at least the moisture of the soil in which the sensor arrangement is inserted, and

wherein a volume of the opening created by an auger in the ground will provide a matching volume for the housing of a predetermined volume such that the entire tapered outer surface of the sensor housing is adjacent the ground along the full length of the created opening.

2. The soil moisture sensor arrangement according to claim 1 , wherein there are at least two soil moisture sensors being capacitive sensors, each capacitive sensor including at least two sensor elements of conductive material shaped, when in use, to have a common central axis which is co-axial with other of the capacitive sensors located within the housing, and

wherein for each of the capacitive sensors, there is a first capacitive element of the sensor having a maximum outer diameter, and a second capacitive element of the sensor having a maximum outer diameter smaller than the maximum outer diameter of the first capacitive element.

3. The soil moisture sensor arrangement according to claim 2 , wherein each capacitive sensor is substantially circular.

4. The soil moisture sensor arrangement according to claim 3 , wherein each capacitive sensor includes elements of flexible conductive material.

5. The soil moisture sensor arrangement according to claim 3 , wherein the external shape of the housing is in conformance with the outer shape of the sensor elements.

6. The soil moisture sensor arrangement according to claim 3 , wherein within the hollow space of the body of the housing includes a flowable and solidified material that envelops all of the at least two capacitive soil moisture sensor elements such that the capacitive soil moisture sensor elements have a fixed location relative to the housing.

7. The soil moisture sensor arrangement according to claim 3 , wherein the body of the housing includes a flexible form into which two or more soil moisture sensor elements are located and further includes a material which is located inside the flexible form which stiffens the flexible form such that the body can be inserted into a prepared opening in the soil.

8. The soil moisture sensor arrangement according to claim 2 , wherein each capacitive sensor includes elements of flexible conductive material.

9. The soil moisture sensor arrangement according to claim 8 , wherein the external shape of the housing is in conformance with the outer shape of the sensor elements.

10. The soil moisture sensor arrangement according to claim 8 , wherein within the hollow space of the body of the housing includes a flowable and solidified material that envelops all of the at least two capacitive soil moisture sensor elements such that the capacitive soil moisture sensor elements have a fixed location relative to the housing.

11. The soil moisture sensor arrangement according to claim 8 , wherein the body of the housing includes a flexible form into which two or more soil moisture sensor elements are located and further includes a material which is located inside the flexible form which stiffens the flexible form such that the body can be inserted into a prepared opening in the soil.

12. The soil moisture sensor arrangement according to claim 8 , wherein each sensor element has a circular cross-sectional shape.

13. The soil moisture sensor arrangement according to claim 8 , wherein for each capacitive soil moisture sensor, there are first and a second capacitive elements which are are spaced longitudinally along the housing, the first capacitive element being spaced from the second capacitive element and the second capacitive element being located closer to the inserted end than the first capacitive element.

14. The soil moisture sensor arrangement according to claim 2 , wherein the external shape of the housing is in conformance with the outer shape of the sensor elements.

15. The soil moisture sensor arrangement according to claim 14 , wherein the hollow space of the body of the housing includes material that envelops all of the at least two capacitive soil moisture sensor elements such that the capacitive soil moisture sensor elements have a fixed location relative to the housing.

16. The soil moisture sensor arrangement according to claim 14 , wherein the body of the housing includes a flexible form into which two or more soil moisture sensor elements are located and further includes a material which is located inside the flexible form which stiffens the flexible form such that the body can be inserted into a prepared opening in the soil.

17. The soil moisture sensor arrangement according to claim 2 , wherein within the hollow space of the body of the housing includes a flowable and solidified material that envelops all of the at least two capacitive soil moisture sensor elements such that the capacitive soil moisture sensor elements have a fixed location relative to the housing.

18. The soil moisture sensor arrangement according to claim 17 , wherein the body of the housing includes a flexible form into which two or more soil moisture sensor elements are located and further includes a material which is located inside the flexible form which stiffens the flexible form such that the body can be inserted into a prepared opening in the soil.

19. The soil moisture sensor arrangement according to claim 2 , wherein at least a portion of the body of the housing includes a flexible form into which the two or more capacitive soil moisture sensor elements are located and further includes a material which is located inside the flexible form which stiffens the flexible form such that the body can be inserted into a prepared opening in the soil.

20. The soil moisture sensor arrangement according to claim 2 , wherein the body of the housing includes a flexible form into which two or more soil moisture sensor elements are located and further includes a material which is located inside the flexible form which stiffens the flexible form such that the body can be inserted into a prepared opening in the soil.

21. A method for installing a soil moisture sensor arrangement comprising a housing including an elongate body with a head end, an inserted end, and an outer surface being continuously tapered from the head end to the inserted end to form a hollow space therein, and at least one soil moisture sensor located within the housing, the method includes the steps of:

a) preparing an opening in the soil having an inner wall converging to the region near the base of the opening; and

b) inserting the housing into the prepared opening until the outer surface of the body of the housing is in contact with the soil sides of the prepared opening along the full length of the housing and each sensor provides for measurement of at least the moisture of the soil in which the sensor arrangement is inserted.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2016
From: BUSS, PETER
To: SENTEK PTY LTD.
Reel/Frame 040543/0534 →
Priority Claims (1)
AU 2013901224 · Apr 10, 2013 · national
Continuity (1)
Related Publication 20160061762A1 · Mar 3, 2016