IP Library Granted Patent US 9,417,161
Granted Patent B2
US 9,417,161 · App. 14/347,377 · Granted Aug 16, 2016

Drainable sight glass and associated methods

Inventor: Samer Mohammed Aljohani (Yanbu, SA)
Assignee: Saudi Arabian Oil Company
G01N1/10G01F23/02
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Quick Facts
Patent No.
US 9,417,161
App. No.
14/347,377
Granted
Aug 16, 2016
Kind
B2
Abstract

Embodiments of the invention are directed to methods of use and a (trainable sight glass assembly for use with a sump pump having a pump housing and being adapted to view the condition of oil disposed, within the pump housing. In some embodiments, the drainable sight glass assembly can comprise a sight glass housing having an upper disk layer with a first diameter and a first threaded receptacle formed therein disposed on a top side of the sight glass housing, a lower disk portion with a second diameter and a second threaded receptacle formed therein and disposed on a bottom side of the sight glass housing, and a substantially transparent wall portion connecting upper disk layer to the lower disk portion so that the sight glass has a hollow, substantially frustoconically shaped interior when oil is not in the sight glass housing.

Claims (44)

1. A drainable sight glass assembly to view the condition of fluid when disposed within a vessel, the drainable sight glass assembly comprising:

a sight glass housing including an upper disk layer having a first diameter and a first receptacle, a lower disk portion having a second diameter and a second receptacle, and a substantially transparent wall portion connecting the upper disk layer to the lower disk portion;

an upper valve connected to the first receptacle, the upper valve for controlling fluid into the sight glass housing;

a lower valve connected to the second receptacle for controlling fluid flow out of the sight glass housing; and

a measurement assembly adapted to determine the level of fluid in the sight glass housing;

the sight glass housing having a frustoconically shaped interior that tapers to a minimum diameter at a lower end substantially equal to the diameter of the lower valve; and

the upper valve having one port connected to the sight glass housing, and one port connected to the measurement assembly.

2. The drainable sight glass assembly of claim 1 , wherein the upper disk layer, wall portion, and lower disk portion are integrally formed.

3. The drainable sight glass assembly of claim 1 , wherein the upper disk layer is connected to the wall portion using adhesive, heat treatment, or solvents, the adhesive selected from the group consisting of cyanoacrylate cement and epoxy resin, the heat treatment selected from the group consisting of welding and annealing, and the solvent selected from the group consisting of dichloromethane and trichloromethane.

4. The drainable sight glass assembly of claim 1 , wherein the lower valve is a three-way valve, having one port connected to the sight glass housing, one port connected to a sample vessel, and one port open to act as a drain.

5. The drainable sight glass assembly of claim 1 , wherein the upper valve has an upper valve stem connected to an upper valve housing, the upper valve housing having three ports, including a first port connected to the first receptacle, a second port connected to the measurement assembly for measuring the volume of oil in the sight glass housing, and a third port connected to the upper valve stem, the upper valve housing operable to selectively direct a flow of fluid to the drainable sight glass assembly or to the measurement assembly.

6. The drainable sight glass assembly of claim 5 ,

wherein the drainable sight glass assembly is vented to relieve pressure from the drainable sight glass assembly and allow the upper valve housing to switch the flow of fluid from the drainable sight glass assembly to the measurement assembly.

7. A drainable sight glass housing for viewing fluid in a vessel, the drainable sight glass housing comprising:

an upper disk layer having a first outer diameter and a first receptacle; a lower disk portion having a second outer diameter and a second receptacle;

a substantially transparent wall portion connecting the upper disk layer to the lower disk portion and having a substantially frustoconically shaped interior profile;

a lower valve connected to the second receptacle, the lower valve operable to control fluid flow out of the sight glass housing; and

a measurement assembly adapted to determine the level of fluid in the housing:

the upper valve having one port connected to the sight glass housing, and one port connected to the measurement assembly.

8. The drainable sight glass housing of claim 7 , further comprising:

an upper valve connected to the first receptacle, the upper valve having an upper stem connected to the vessel and operable to control fluid flow into the sight glass housing.

9. The drainable sight glass housing of claim 8 , wherein the lower valve portion is a three-way valve, having one port connected to the sight glass housing, one port connected to a sample vessel, and one port open to act as a drain.

10. The drainable sight glass housing of claim 8 , wherein the upper valve has an upper valve stem connected to an upper valve housing, the upper valve housing having three ports, including a first port connected to the first receptacle, a second port connected to the measurement assembly for measuring the volume of oil in the sight glass housing, and a third port connected to the upper valve stem, the upper valve housing operable to selectively direct a flow of fluid to the drainable sight glass assembly or to the measurement assembly.

11. The drainable sight glass housing of claim 10 ,

wherein the drainable sight glass assembly is vented to relieve pressure from the drainable sight glass assembly and allow the upper valve housing to switch the flow of fluid from the drainable sight glass assembly to the measurement assembly.

12. The drainable sight glass housing of claim 7 ,

wherein the first and second outer diameters are substantially the same; and

wherein the upper disk layer, wall portion, and lower disk portion are integrally formed.

13. The drainable sight glass housing of claim 7 , wherein the upper disk layer is connected to the wall portion using adhesive, heat treatment, or solvents, the adhesive selected from the group consisting of cyanoacrylate cement and epoxy resin, the heat treatment selected from the group consisting of welding and annealing, and the solvent selected from the group consisting of dichloromethane and trichloromethane.

14. A method for using a drainable sight glass assembly with a vessel to monitor the condition of a fluid in the vessel, the method comprising the steps of:

connecting a drainable sight glass assembly including a sight glass housing to the drain port of the vessel, the sight glass housing having a substantially frustoconically-shaped interior that tapers to a minimum diameter at a lower end, and that does not have interior shoulders capable of trapping debris in the sight glass;

draining fluid from the vessel into the drainable sight glass assembly so that the fluid enters the frustoconically-shaped interior of the sight glass housing;

waiting for particulate in the fluid to settle at a bottom of the frustoconically-shaped interior portion;

viewing the fluid in the sight glass housing to determine a condition of the fluid in the sight glass housing;

removing the drainable sight glass assembly from the vessel:

separating the water and oil from the sight glass housing, so that the oil can be tested:

cleaning the sight glass assembly so that any residue and particulate is removed; and

reattaching the drainable sight glass assembly to the vessel.

15. The method of claim 14 , further comprising:

determining whether or not water is present in the sight glass housing; and

draining the sight glass assembly using a valve positioned at the bottom thereof.

16. The method of claim 14 , further comprising:

removing the sight glass assembly from the vessel; and

testing the fluid and particulates in the sight glass housing to determine the composition of the fluid and particulates.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2014
From: ALJOHANI, SAMER MOHAMMED
To: SAUDI ARABIAN OIL COMPANY
Reel/Frame 032530/0560 →
Continuity (2)
Provisional Application 61539330 · Sep 26, 2011
Related Publication 20140238156A1 · Aug 28, 2014