IP Library Granted Patent US 10,317,266
Granted Patent B2
US 10,317,266 · App. 15/715,764 · Granted Jun 11, 2019

Flow sensor with heated air collar

Inventors: James N. Mashak (Madison, WI); Russell J. Kuzelka (Madison, WI)
Assignee: General Electric Company
G01F15/14G01F1/40G01F1/42G01F1/699G01F15/00G01F15/02G01F1/69G01F15/18
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Quick Facts
Patent No.
US 10,317,266
App. No.
15/715,764
Granted
Jun 11, 2019
Kind
B2
Abstract

A collar is provided for use with a fluid flow sensor to reduce condensation of a moist gas flowing through the fluid flow sensor. The collar comprises a body defining an interior that defines an airspace between the collar and the housing of the fluid flow sensor when the collar is positioned on the fluid flow sensor. The collar also includes a heat source secured to the body and adapted to heat air contained within the airspace to consequently heat the housing of the fluid flow sensor and the interior surfaces of the sensor to reduce condensation of the moist gas.

Claims (28)

1. A collar adapted for use with a fluid flow sensor to reduce condensation of a moist gas flowing through the fluid flow sensor, the collar comprising:

a) a body defining an interior that is adapted to define an airspace between an exterior of the fluid flow sensor and the body when the body is positioned against the exterior of the fluid flow sensor; and

b) a heat source positioned within the interior of the body and adapted to be spaced from the exterior of the fluid flow sensor when the body is positioned against the exterior of the fluid flow sensor to heat air contained within the airspace between the heat source and the exterior of the fluid flow sensor.

2. The collar according to claim 1 wherein the body is removable from the fluid flow sensor.

3. The collar of claim 1 wherein the body includes a first portion and a second portion engageable with one another around the fluid flow sensor.

4. The collar according to claim 3 wherein the first portion is detachable from the second portion.

5. The collar according to claim 3 wherein the first portion is movably connected to the second portion by a connector.

6. The collar according to claim 5 wherein the first portion is releasably engaged with the second portion opposite the connector by a securing member.

7. The collar according to claim 1 wherein the heat source is disposed within a recess formed on the body.

8. The collar according to claim 1 wherein the body includes at least one outer wall and a number of side walls extending outwardly from the outer wall and adapted to contact the fluid flow sensor.

9. The collar according to claim 8 wherein the at least one outer wall includes a number of ports adapted to receive tubes to be connected to the fluid flow sensor.

10. The collar according to claim 1 wherein the airspace is not in fluid communication with an interior of the fluid flow sensor or the exterior of the body.

11. A fluid flow sensor comprising:

a) a housing that defines a fluid flow passage therethrough having an inlet end and an outlet end; and

b) a collar disposed around the housing between the inlet end and the outlet end, the collar comprising:

i) a body positioned against the housing and defining an interior that defines an enclosed airspace between the body and an exterior of the housing, wherein the airspace is not in fluid communication with the fluid flow passage or the exterior of the body; and

ii) a heat source secured within a recess disposed in an exterior wall of the body and adapted to be spaced from the exterior of the fluid flow sensor when the body is positioned against the exterior of the fluid flow sensor to heat air contained within the airspace.

12. The fluid flow sensor of claim 11 wherein the body is releasably secured to the housing.

13. The fluid flow sensor of claim 12 wherein the body includes a first portion and a second portion releasably engaged with one another around the housing.

14. A method for reducing the condensation of a moist gas passing through a fluid flow sensor, the method comprising the steps of:

a) providing a fluid flow sensor comprising:

i) a housing that defines a fluid flow passage therethrough having an inlet end and an outlet end; and

ii) a collar disposed around the housing between the inlet end and the outlet end, the collar including a body positioned against the housing and defining an interior that defines an enclosed airspace between the body and an exterior of the housing, wherein the airspace is not in fluid communication with the fluid flow passage or the exterior of the body and a heat source secured to the body and adapted to be spaced from the exterior of the fluid flow sensor when the body is positioned against the exterior of the fluid flow sensor to heat air contained within the airspace between the heat source and the exterior of the fluid flow sensor;

b) securing the collar around the housing between the inlet end and the outlet end;

c) operating the heat source to heat the air in the airspace between the heat source and the housing; and

d) directing the moist gas through the fluid flow passage.

15. The method of claim 14 further comprising the step of removing the collar from the housing.

16. The method of claim 15 wherein the body includes a first portion and a second portion releasably engaged with one another around the housing, and wherein the step of removing the collar from the hosing comprises disengaging the first portion from the second portion.

Assignments (1)
NUNC PRO TUNC ASSIGNMENT Recorded May 8, 2025
From: GENERAL ELECTRIC COMPANY
To: GE PRECISION HEALTHCARE LLC
Reel/Frame 071225/0218 →
Continuity (2)
Continuation 14341308 · Jul 25, 2014
Related Publication 20180017424A1 · Jan 18, 2018