IP Library › Granted Patent US 12,050,164
Granted Patent B2
US 12,050,164 · App. 17/876,222 · Granted Jul 30, 2024

Throughflow measurement system

Inventors: Markus Klemm (Ottendorf-Okrilla, DE); Eric Starke (Ottendorf-Okrilla, DE); Mario Künzelmann (Ottendorf-Okrilla, DE)
Assignee: SICK ENGINEERING GMBH
G01N11/04G01F1/667G01F1/69
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Quick Facts
Patent No.
US 12,050,164
App. No.
17/876,222
Granted
Jul 30, 2024
Kind
B2
Abstract

A throughflow measurement system for measuring a fluid throughflow through a pipe includes a first measurement arrangement having at least two ultrasonic transducers and that is configured to determine a value for the fluid throughflow through the pipe on the basis of transit times of ultrasonic signals transmitted and received with and against the flow. A second measurement arrangement includes a plurality of hot-wire sensors that are arranged distributed over the cross-section of the pipe and that are each configured to determine a local flow value. An evaluation device is in signal connection with the first measurement arrangement and the second measurement arrangement and is configured to determine a flow profile on the basis of the local flow values determined by the hot-wire sensors and to modify the value for the fluid throughflow, which is determined by the first measurement arrangement, on the basis of the determined flow profile.

Claims (28)

1. A throughflow measurement system for measuring a fluid throughflow through a pipe comprising:

a first measurement arrangement that comprises at least two ultrasonic transducers and that is configured to determine a value for the fluid throughflow through the pipe on the basis of transit times of ultrasonic signals transmitted and received with and against a flow;

a second measurement arrangement that comprises a plurality of hot-wire sensors that are arranged distributed over a cross-section of the pipe and that are each configured to determine a local flow value; and

an evaluation device that is in signal connection with the first measurement arrangement and with the second measurement arrangement and that is configured to determine a flow profile on the basis of the local flow values determined by the hot-wire sensors and to modify the value for the fluid throughflow, which is determined by the first measurement arrangement, on the basis of the determined flow profile.

2. The throughflow measurement system in accordance with claim 1 ,

wherein the evaluation device is configured to modify the value for the fluid throughflow, which is determined simultaneously with the local flow values, on the basis of the determined flow profile.

3. The throughflow measurement system in accordance with claim 1 ,

wherein the second measurement arrangement is spaced apart from the first measurement arrangement with respect to a direction of flow and/or an axis of the pipe.

4. The throughflow measurement system in accordance with claim 1 ,

wherein the hot-wire sensors of the second measurement arrangement are attached to a common carrier.

5. The throughflow measurement system in accordance with claim 4 ,

wherein the carrier is composed of areal flow-conducting sections.

6. The throughflow measurement system in accordance with claim 4 ,

wherein the carrier is designed as a flow conditioner.

7. The throughflow measurement system in accordance with claim 1 ,

wherein the at least two ultrasonic transducers of the first measurement arrangement define a measurement path extending obliquely with respect to a direction of flow.

8. The throughflow measurement system in accordance with claim 1 ,

wherein the at least two ultrasonic transducers of the first measurement arrangement are each configured to transmit and to receive ultrasonic signals.

9. The throughflow measurement system in accordance with claim 1 ,

wherein the hot-wire sensors of the second measurement arrangement comprise microelectromechanical systems.

10. The throughflow measurement system in accordance with claim 1 ,

wherein the hot-wire sensors of the second measurement arrangement are connected to or integrated into a common circuit board.

11. The throughflow measurement system in accordance with claim 1 ,

comprising a third measurement arrangement that is spaced apart from the second measurement arrangement with respect to a direction of flow and/or an axis of the pipe and that comprises a plurality of hot-wire sensors that are arranged distributed over the cross-section of the pipe and that are each configured to determine a local flow value of the fluid, wherein the evaluation device is in signal connection with the third measurement arrangement and is configured to determine changes in the flow profile along the direction of flow on the basis of a comparison of signals of the second and third measurement arrangement.

12. The throughflow measurement system in accordance with claim 1 ,

wherein the evaluation device is configured to determine a viscosity of the fluid on the basis of the determined flow profile.

13. The throughflow measurement system in accordance with claim 1 ,

comprising a temperature measurement device, wherein the evaluation device is in signal connection with the temperature measurement device and is configured to modify the value for the fluid throughflow, which is determined by the first measurement arrangement, on the basis of a temperature detected by the temperature measurement device.

Assignments (2)
CHANGE OF NAME Recorded Jan 16, 2026
From: SICK ENGINEERING GMBH
To: ENDRESS+HAUSER SICK GMBH+CO. KG
Reel/Frame 074404/0884 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2022
From: KLEMM, MARKUS; STARKE, ERIC; KUNZELMANN, MARIO
To: SICK ENGINEERING GMBH
Reel/Frame 060697/0046 →
Priority Claims (1)
DE 102021120363.5 · Aug 5, 2021 · national
Continuity (1)
Related Publication 20230044144A1 · Feb 9, 2023