WO1995002179B1 - Misalignment detection apparatus for transmissometer with underfilled reflector - Google Patents

Misalignment detection apparatus for transmissometer with underfilled reflector

Info

Publication number
WO1995002179B1
WO1995002179B1 PCT/US1994/007465 US9407465W WO9502179B1 WO 1995002179 B1 WO1995002179 B1 WO 1995002179B1 US 9407465 W US9407465 W US 9407465W WO 9502179 B1 WO9502179 B1 WO 9502179B1
Authority
WO
WIPO (PCT)
Prior art keywords
reflector
collimated beam
light
center
diameter
Prior art date
Application number
PCT/US1994/007465
Other languages
French (fr)
Other versions
WO1995002179A1 (en
Filing date
Publication date
Priority claimed from US08/086,207 external-priority patent/US5404228A/en
Application filed filed Critical
Publication of WO1995002179A1 publication Critical patent/WO1995002179A1/en
Publication of WO1995002179B1 publication Critical patent/WO1995002179B1/en

Links

Abstract

In accordance with this invention, a misalignment detector apparatus is provided for a transmissometer with an underfilled reflector. The transmissometer has a transceiver that projects a collimated beam of light of small diameter across a smokestack to a circular reflector of substantially greater diameter than the collimated beam of light so that the reflector is underfilled. The reflector includes apparatus for sensing the position of the collimated beam of light with respect to the center of the reflector and its position on the reflector when it is not on center which allows operator notification of when the beam is on the reflector and when the beam is off the reflector thereby requiring maintenance/realignment.

Claims

AMENDED CLAIMS[received by the International Bureau on 23 January 1995 (23.01.95); original claim 1 cancelled; original claims 5, 6, 14 and 15 amended; remaining claims unchanged; original claims 2-15 renumbered as claims 1-14 (4 pages)]
1. A misalignment detector apparatus for a transmissometer with an underfilled reflector, wherein the transmissometer includes a transceiver mounted on one side of a smokestack and a reflector mounted on the opposite side of the smokestack, the transmissometer directing a beam of light from a light source across the smokestack to the reflector, the light beam being reflected back across the smokestack to the transceiver to measure the opacity level of smoke in the smokestack, said apparatus comprising: means in said transceiver for projecting a collimated beam of light having a small diameter across the smokestack; a circular reflector having a center and having a diameter that is greater than said collimated beam of light so that said reflector is underfilled; and means on said reflector for sensing the position of said collimated beam of light with respect to said center of said reflector.
2. Apparatus, as claimed in claim 1, wherein said sensing means comprises: at least one opening in said reflector at a known location with respect to said center of said reflector; a photodiode mounted behind said opening for receiving light from said collimated beam; and ;/ indicia producing means connected to said photodiode for producing a signal indicative of said collimated beam striking said photodiode to indicate the position of said collimated beam on said reflector.
3. Apparatus, as claimed in claim 2, wherein said indica producing means includes: remote readout means.
4. Apparatus, as claimed in claim 1, wherein said sensing means comprises: a center opening in said center of said reflector; an array of openings in said reflector arranged in a circular pattern around said center opening, said circular pattern having a diameter greater than the diameter of said collimated beam; a center photodiode mounted behind said center opening; center indicia producing means connected to said center photodiode for producing a signal indicative of said collimated beam striking said center diode to indicate when a portion of said collimated beam is striking said center of said reflector; a pattern photodetector mounted behind each of said openings in said array; and array indicia means connected to said pattern photodiodes for producing a signal indicative of said collimated beam striking at least one of said pattern photodiodes to indicate linear misalignment .
5. Apparatus, as claimed in claim 4, wherein: said array indicia means produces a signal indicative of which pattern photodiodes are being struck with light from said collimated beam to indicate the angular direction of misalignment.
6. Apparatus, as claimed in claim 4, wherein: the diameter of said circular pattern is slightly less than twice the diameter of said collimated beam..
7. Apparatus, as claimed in claim 4, wherein: said reflector has a diameter at least four times the diameter of said collimated beam.
8. Apparatus, as claimed in claim 1, wherein said means for projecting a collimated beam of light comprises : a gas laser light source for producing a narrow beam of light; a beam expander aligned with said source for expanding said light beam to a collimated beam of light having a diameter smaller than said diameter of said reflector; and an aperture positioned in the path of said collimated beam through which said collimated beam is projected to minimize non-parallel rays and resultant light beam spreading.
9. Apparatus, as claimed in claim 8, wherein: said beam expander is an. expander lens having a focal length; and said aperture is positioned at the focus of said expander lens.
10. Apparatus as claimed in claim 8, wherein: said light source is monochromatic. 2 0
11. Apparatus, as claimed in claim 10, wherein: said light source has a wavelength of 543.5 nm.
12. Apparatus, as claimed in claim 8, further including: means aligned with said collimated beam to chop the light.
13. A method of detecting transmissometer misalignment, wherein the transmissometer has a transceiver on one side of a smokestack to direct a light beam across the smokestack along an optical axis to a circular reflector which is centered on the optical axis and reflects the light beam back across the smokestack to the transceiver which measures the opacity level of smoke in the smokestack, said method comprising: projecting a collimated beam of light, having a first smaller diameter, across the stack onto the reflector which is of a substantially greater second diameter than the first smaller diameter of the collimated beam; sensing any linear misalignment of the collimated beam with respect to the center of the reflector; and providing visual indicia indicative of the amount of misalignment.
14. A method, as claimed in claim 13, including the further step of: sensing the angular direction of any misalignment from the center of the reflector.
PCT/US1994/007465 1993-07-06 1994-07-01 Misalignment detection apparatus for transmissometer with underfilled reflector WO1995002179A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US086,207 1993-07-06
US08/086,207 US5404228A (en) 1993-07-06 1993-07-06 Misalignment detection apparatus for transmissiometer with underfilled reflector

Publications (2)

Publication Number Publication Date
WO1995002179A1 WO1995002179A1 (en) 1995-01-19
WO1995002179B1 true WO1995002179B1 (en) 1995-02-23

Family

ID=22196999

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US1994/007465 WO1995002179A1 (en) 1993-07-06 1994-07-01 Misalignment detection apparatus for transmissometer with underfilled reflector

Country Status (2)

Country Link
US (1) US5404228A (en)
WO (1) WO1995002179A1 (en)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5787385A (en) * 1996-02-28 1998-07-28 Sun Microsystems, Inc. Computer controlled laser fog tracking
DE19940280C2 (en) * 1999-08-26 2001-11-15 Draeger Safety Ag & Co Kgaa Gas sensor with an open optical measuring section
WO2004091796A2 (en) * 2003-04-11 2004-10-28 Stockhausen, Inc. A reduced-emissions fossil-fuel-fired system
US7319524B2 (en) * 2005-03-28 2008-01-15 Honeywell International, Inc. Air purged optical densitometer
EP2416145B1 (en) * 2010-08-04 2012-11-14 Sick Ag Device for analysing a fluid
CA2921227C (en) 2013-09-25 2017-05-09 Institut National D'optique All-optical system responsive to motion and optical module for use in the same

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH574117A5 (en) * 1973-10-24 1976-03-31 Sick Erwin Fa
DE3626524C1 (en) * 1986-07-18 1987-09-17 Sick Optik Elektronik Erwin Optical autocollimation measuring device
US5028790A (en) * 1990-05-07 1991-07-02 Lear Siegler Measurement Controls Corporation Apparatus for full-system zero check and window soiling measurement and correction for transmissometers

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