IP Library Granted Patent US 7,162,374
Granted Patent B2
US 7,162,374 · App. 10/530,386 · Granted Jan 9, 2007

Device for the determination of flow parameters for a fluid and method for operating such a device

Assignee: Wagner Alarm-und Sicherungssysteme GmbH
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Quick Facts
Patent No.
US 7,162,374
App. No.
10/530,386
Granted
Jan 9, 2007
Kind
B2
Abstract

A device for determining flow parameters, particularly the temperature and flow speed and changes therein, in a fluid flow for monitoring and a fire recognition or oxygen measuring device provided with such a device are provided. A slow or sudden blockage, crack or break in a pipe system of an aspirative fire recognition device is recognized by a measurement technique, whereby an air flow sensor, operated with a constant excess temperature, is combined with a regulation algorithm, running in a microprocessor, for monitoring pipe system fluid flow or flow resistance. The required resistance of the air flow sensor can thus be calculated by an exact sensor calibration curve and a precise control loop formed. The measured values recorded by the air flow sensor are extremely reliable, such that changes in condition for the flow parameters provide information about the state of the pipe system or the intake system.

Claims (28)

1. A device for determining flow parameters, particularly the temperature, the flow velocity, the flow resistance and its change, in a fluid flow to be monitored, particularly in smoke and gas intake detectors, the device comprising:

a thermoelectric air flow sensor that is operated in a constant temperature mode;

a thermoelectric temperature sensor; and

a regulation circuit for setting a predetermined excess temperature at the air flow sensor, the excess temperature defining a temperature difference between the temperature of the thermoelectric air flow sensor and the temperature of the fluid to be monitored,

wherein the regulation circuit implemented in a microprocessor contains a regulation algorithm for operating the air flow sensor with a constant excess temperature, and

wherein the microprocessor furthermore comprises an evaluation algorithm for monitoring fluid flow or flow resistance in the pipe system, the evaluation algorithm recognizing nongradual fluid flow changes not based on disruptive ambient influences.

2. The device according to claim 1 ,

wherein

the evaluation algorithm is furthermore configured for calculating flow parameters on the basis of the electric heating power of the air flow sensor, particularly for calculating a mass stream, a flow velocity, a volume stream, and a flow resistance of an intake pipe system, and a temperature of the fluid flow.

3. The device according to claim 1 ,

wherein

the evaluation algorithm includes a compensation of a temperature-dependent and/or pressure-dependent density change of the fluid flow.

4. The device according to claim 1 ,

wherein

the microprocessor contains a memory for storing starting values of the flow parameters, the starting values being used for calculating status changes in the flow parameters in the evaluation algorithm.

5. An assembly comprising:

(a) a pipe system for taking air samples from a target space;

(b) a detector for receiving the air samples from the pipe system; and

(c) a device for determining flow parameters disposed in the pipe system comprising a thermoelectric air flow sensor and a microprocessor programmed with a regulation algorithm for operating the air flow sensor with a constant excess temperature and with an evaluation algorithm for monitoring fluid flow or flow resistance in the pipe system, the evaluation algorithm recognizing nongradual fluid flow changes not based on disruptive ambient influences,

wherein the excess temperature defines a temperature difference between the temperature of the thermoelectric air flow sensor and the temperature of the air samples.

6. An assembly comprising:

(a) a pipe system for taking air samples from a target space; and

(b) a detector for receiving the air samples from the pipe system comprising an air entry channel having a center and a device for determining flow parameters comprising a thermoelectric air flow sensor disposed in the center of the air entry channel and a microprocessor programmed with a regulation algorithm for operating the air flow sensor with a constant excess temperature and with an evaluation algorithm for monitoring fluid flow or flow resistance in the pipe system, the evaluation algorithm recognizing nongradual fluid flow changes not based on disruptive ambient influences,

wherein the excess temperature defines a temperature difference between the temperature of the thermoelectric air flow sensor and the temperature of the air samples.

7. An assembly comprising:

(a) a pipe system for taking air samples from a target space; and

(b) a detector for receiving the air samples from the pipe system comprising an air entry channel having a portion narrowed in cross-section and a device for determining flow parameters comprising a thermoelectric air flow sensor disposed in the portion narrowed in cross-section of the air entry channel and a microprocessor programmed with a regulation algorithm for operating the air flow sensor with a constant excess temperature and with an evaluation algorithm for monitoring fluid flow or flow resistance in the pipe system, the evaluation algorithm recognizing nongradual fluid flow changes not based on disruptive ambient influences,

wherein the excess temperature defines a temperature difference between the temperature of the thermoelectric air flow sensor and the temperature of the air samples.

Assignments (3)
CHANGE OF NAME Recorded Apr 6, 2012
From: WAGNER DEUTSCHLAND GMBH
To: WAGNER GROUP GMBH
Reel/Frame 028003/0388 →
MERGER Recorded Apr 2, 2012
From: WAGNER ALARM-UND SCHERUNGSSYSTEME GMBH
To: WAGNER DEUTSCHLAND GMBH
Reel/Frame 027970/0293 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2005
From: BURKHARDT, LUTZ
To: WAGNER ALARM-UND SICHERUNGSSYSTEME GMBH
Reel/Frame 016532/0585 →
Priority Claims (2)
DE 102 46 747 · Oct 7, 2002 · national
DE 102 51 891 · Nov 7, 2002 · national
Continuity (1)
Related Publication 20060074569A1 · Apr 6, 2006