IP Library › Granted Patent US 10,495,500
Granted Patent B2
US 10,495,500 · App. 15/389,026 · Granted Dec 3, 2019

Flow measuring instrument comprising a wind velocity sensor

Inventors: Roland Welle (Hausach, DE); Levin Dieterle (Oberwolfach, DE); Joerg Boersig (Oberwolfach, DE)
Assignee: VEGA GRIESHABER KG
G01F1/663G01F1/002G01P5/14G01P5/24G01P5/26G01P21/025
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,495,500
App. No.
15/389,026
Granted
Dec 3, 2019
Kind
B2
Abstract

The invention relates to a flow measuring instrument which ascertains the water level of a watercourse, the flow rate of the watercourse at a specific location, and the wind velocity at the location of the measuring instrument, and these three measurement data are incorporated in the calculation of the average flow rate of the watercourse and/or of the calculation of the flow. By taking the wind velocity above the watercourse into consideration, calculation of the flow can be improved.

Claims (44)

1. A flow measuring instrument comprising:

a contactlessly measuring flow rate sensor configured to detect a local flow rate of a watercourse;

a wind velocity sensor configured to detect the wind velocity;

control circuitry configured to calculate the average flow rate of the watercourse, as a function of the local flow rate and the wind velocity.

2. The flow measuring instrument according to claim 1 ,

wherein the wind velocity sensor is attached to the flow rate sensor or is integrated in the flow rate sensor.

3. The flow measuring instrument according to claim 1 ,

wherein the wind velocity sensor is configured to detect the wind direction, wherein the detected wind direction is taken into account by the control circuitry in order to calculate the flow of the watercourse.

4. The flow measuring instrument according to claim 1 ,

wherein the control circuitry is configured to take into account the position of the flow measuring instrument and/or the orientation of the flow measuring instrument relative to the watercourse in order to calculate the average flow rate.

5. The flow measuring instrument according to claim 4 , further comprising:

a position and a location sensor device configured to detect the position and the orientation of the flow measuring instrument relative to the watercourse.

6. The flow measuring instrument according to claim 4 ,

wherein the control circuitry is configured to access a database that provides the orientation of the watercourse at the location at which the flow measuring instrument is mounted, in order to determine the orientation of the flow measuring instrument relative to the watercourse.

7. The flow measuring instrument according to claim 1 ,

wherein the flow rate sensor is configured to measure the water level and to carry out a Doppler measurement, the measurement results from which are to be taken into account by the control circuitry in order to calculate the average flow rate or the flow of the watercourse.

8. The flow measuring instrument according to claim 1 ,

wherein the wind velocity sensor comprises a tubular region, of varying cross section, for air to pass through, the wind velocity of which air is to be detected, and

wherein a plurality of pressure sensors are arranged on or in the tubular region in order to detect a local pressure difference between the locations of the pressure sensors.

9. The flow measuring instrument according to claim 1 ,

wherein the wind velocity sensor comprises two plates arranged in parallel with one another for the passage of air, the wind velocity of which air is to be detected, and

wherein a plurality of pressure sensors are arranged on or in the region between the two plates, in order to detect local pressure differences between the locations of the pressure sensors.

10. The flow measuring instrument according to claim 1 ,

wherein the wind velocity sensor comprises a plurality of ultrasonic sensors which are arranged on the surface of the flow rate sensor in order to detect the wind velocity and the wind direction.

11. The flow measuring instrument according to claim 1 ,

wherein the control circuitry is configured to calculate the average flow rate and/or the flow of the watercourse, taking into account the location of the local flow rate of the watercourse.

12. The flow measuring instrument according to claim 1 ,

wherein the wind velocity sensor is attached either to the upper side of a housing or arranged in the housing of the flow rate sensor.

13. A method for measuring flow, comprising:

detecting a local flow rate of a watercourse by a flow measuring instrument;

detecting the wind velocity at the location of the measuring instrument;

calculating, by circuitry, the average flow velocity of the watercourse, as a function of the local flow rate and the wind velocity.

14. A non-transitory computer readable medium having stored thereon a program element, which, when implemented on a processor of a flow measuring instrument, instructs the measuring instrument to carry out a method comprising:

detecting a local flow rate of a watercourse by the flow measuring instrument;

detecting the wind velocity at the location of the measuring instrument;

calculating the average flow rate of the watercourse, as a function of the local flow rate and the wind velocity.

15. The flow measuring instrument according to claim 2 ,

wherein the wind velocity sensor is configured to detect the wind direction, wherein the detected wind direction is taken into account by the control circuitry in order to calculate the flow of the watercourse.

16. The flow measuring instrument according to claim 1 ,

wherein the wind velocity sensor is attached to the flow rate sensor or is integrated in the flow rate sensor,

wherein the wind velocity sensor is configured to detect the wind direction, wherein the detected wind direction is taken into account by the control circuitry in order to calculate the flow of the watercourse, and

wherein the control circuitry is configured to take into account the position of the flow measuring instrument and/or the orientation of the flow measuring instrument relative to the watercourse in order to calculate the average flow rate.

17. The flow measuring instrument according to claim 5 ,

wherein the control circuitry is configured to access a database that provides the orientation of the watercourse at the location at which the flow measuring instrument is mounted, in order to determine the orientation of the flow measuring instrument relative to the watercourse.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 3, 2017
From: WELLE, ROLAND; DIETERLE, LEVIN; BOERSIG, JOERG
To: VEGA GRIESHABER KG
Reel/Frame 041164/0075 →
Priority Claims (1)
EP 15202464 · Dec 23, 2015 · regional
Continuity (1)
Related Publication 20170184430A1 · Jun 29, 2017