IP Library Granted Patent US 9,316,527
Granted Patent B2
US 9,316,527 · App. 13/934,209 · Granted Apr 19, 2016

Method and apparatus for a bidirectional meter proving system

Inventor: Daniel J. Rudroff (Houston, TX)
Assignee: WFMS, Inc.
G01F25/0092G01F25/0015
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,316,527
App. No.
13/934,209
Granted
Apr 19, 2016
Kind
B2
Abstract

A bidirectional sphere prover is used to check the accuracy of a custody transfer meter when fluids, such as crude oil or gasoline are bought and sold. The bidirectional sphere prover of the present invention uses a straight calibrated section of pipe between the detection switches, the straight calibrated section of pipe being free of welds, flanges and elbows.

Claims (50)

1. A method for confirming the volumetric accuracy of a custody transfer meter using a 4-way valve to alternate a direction of the fluid flow through a bidirectional sphere prover comprising the following steps:

pushing a resilient single sphere through a first launch tube, through a first elbow, through a first U-tube in response to pressure from a first fluid flow from the 4-way valve;

pushing the resilient single sphere from the first U-tube through a straight calibrated section of pipe having a first detector switch proximate a first end and a second detector switch proximate a second end, said straight calibrated section of pipe being free of flanges, lateral openings and elbows between the first detector switch and the second detector switch, said straight calibrated section of pipe having a first flange at the first end and a second flange at the second end;

pushing the resilient single sphere from the straight calibrated section of pipe through a second U-tube, through a second elbow to a second launch tube;

actuating the 4-way valve to reverse the direction of the first fluid flow through the bidirectional sphere prover;

pushing the resilient single sphere from the second launch tube through the second elbow and through the second U-tube in response to pressure from a reverse fluid flow from the 4-way valve;

pushing the resilient single sphere from the second U-tube through the straight calibrated section of pipe and past the second and the first detector switches;

pushing the resilient single sphere from the straight calibrated section of pipe through the first U-tube, the first elbow back to the first launch tube to accomplish a first round trip of the resilient single sphere through the bidirectional sphere prover; and

continuing to actuate the 4-way valve to alternate the direction of fluid flow through the bidirectional sphere prover to complete at least five round trips of the resilient single sphere which completes a prover run.

2. A method for proving the volumetric accuracy of a custody transfer meter comprising the following steps:

actuating a valve allowing a fluid to flow from the custody transfer meter into a 4-way valve on a bidirectional sphere prover;

actuating the 4-way valve to commence a first fluid flow through a bidirectional sphere prover;

pushing a resilient single sphere in response to pressure from the first fluid flow from the 4-way valve through a first launch tube, through a first conduit, through a first U-tube;

pushing the resilient single sphere from the first U-tube through a straight calibrated section of pipe having a first detector switch proximate a first end and a second detector switch proximate a second end, said straight calibrated section of pipe being free of flanges, lateral openings and elbows between the first detector switch and the second detector switch, said straight calibrated section of pipe having a first flange at the first end and a second flange at the second end;

pushing the resilient single sphere from the straight calibrated section of pipe through a second U-tube, through a second conduit to a second launch tube;

actuating the 4-way valve to reverse the direction of the first fluid flow through the bidirectional sphere prover to create a second fluid flow;

pushing the resilient single sphere from the second launch tube through the second conduit and through the second U-tube in response to pressure from the second fluid flow;

pushing the resilient single sphere from the second U-tube through the straight calibrated section of pipe past the second and the first detector switches;

pushing the resilient single sphere from the straight calibrated section of pipe through the first U-tube, the first conduit back to the first launch tube to accomplish a first round trip of the resilient single sphere through the bidirectional sphere prover; and

continuing to actuate the 4-way valve to alternate the direction of fluid flow through the bidirectional sphere prover to complete at least five round trips of the resilient single sphere to complete a prover run.

3. A method for confirming the volumetric accuracy of a custody transfer meter using a 4-way valve to alternate a direction of the fluid flow through a bidirectional sphere prover comprising the following steps:

pushing a resilient single sphere through a first launch tube, through a first elbow, through a first U-tube in response to a first fluid flow from the 4-way valve;

pushing the resilient single sphere from the first U-tube through a straight calibrated section of pipe having a first detector switch proximate a first end and a second detector switch proximate a second end, said straight calibrated section of pipe being free of flanges, lateral openings and elbows between the first detector switch and the second detector switch, said straight calibrated section of pipe having a first flange at the first end and a second flange at the second end;

pushing the resilient single sphere from the straight calibrated section of pipe through a second U-tube, through a second elbow to a second launch tube;

actuating the 4-way valve to reverse the direction of the first fluid flow through the bidirectional sphere prover;

pushing the resilient single sphere from the second launch tube through the second elbow and through the second U-tube in response to a reverse fluid flow from the 4-way valve;

pushing the resilient single sphere from the second U-tube through the straight calibrated section of pipe and the second and the first detector switches;

pushing the resilient single sphere from the straight calibrated section of pipe through the first U-tube, the first elbow back to the first launch tube; and

continuing to actuate the 4-way valve to alternate the direction of fluid flow through the bidirectional sphere prover as needed to prove the volumetric accuracy of the custody transfer meter.

4. A method for proving the volumetric accuracy of a custody transfer meter using a bidirectional sphere prover with a movable resilient single sphere comprising the following steps:

actuating a valve allowing a fluid to flow from the custody transfer meter into a 4-way valve on a bidirectional sphere prover;

actuating the 4-way valve to commence a first fluid flow through a bidirectional prover;

pushing a resilient single sphere through a first launch tube, through a first conduit, through a first U-tube in response to the first fluid flow from the 4-way valve;

pushing the resilient single sphere from the first U-tube through a straight calibrated section of pipe having a first detector switch proximate a first end and a second detector switch proximate a second end, said straight calibrated section of pipe being free of flanges, lateral openings and elbows between the first detector switch and the second detector switch, said straight calibrated section of pipe having a first flange at the first end and a second flange at the second end;

pushing the resilient single sphere from the straight calibrated section of pipe through a second U-tube, through a second conduit to a second launch tube;

actuating the 4-way valve to reverse the direction of the first fluid flow through the bidirectional sphere prover;

pushing the resilient single sphere from the second launch tube through the second conduit and through the second U-tube;

pushing the resilient single sphere from the second U-tube through the straight calibrated section of pipe and the second and the first detector switches;

pushing the resilient single sphere from the straight calibrated section of pipe through the first U-tube, the first conduit back to the first launch tube; and

continuing to alternate the direction of fluid flow as required to prove the accuracy of the custody transfer meter.

5. A method for proving the volumetric accuracy of a custody transfer meter for fluids comprising the following steps:

actuating a valve allowing the fluid to flow from the custody transfer meter into a 4-way valve on a bidirectional sphere prover;

actuating the 4-way valve causing the fluid to push a resilient single sphere from a first sphere launch tube past a first detector switch in a straight section of calibrated pipe, past a second detector switch in the straight section of calibrated pipe, and into a second sphere launch tube, the straight section of calibrated pipe being free from flanges, lateral openings and elbows between the first detector switch and the second detector switch and having a first flange at a first end and a second flange at a second end;

actuating the 4-way valve causing the fluid to reverse direction through the bidirectional sphere prover to push the resilient single sphere from the second sphere launch tube past the second detector switch in the straight section of calibrated pipe, past the first detector switch in the straight section of calibrated pipe and back into the first sphere launch tube; and

continuing to actuate the 4-way valve until the volumetric accuracy of the custody transfer meter has been proven.

6. A method for measuring the volumetric accuracy of a custody transfer meter controlled by a lease automatic custody transfer unit (L.A.C.T.) using a bidirectional sphere prover, the method comprising the following steps:

actuating a valve allowing a fluid to flow from the custody transfer meter into a 4-way valve on the bidirectional sphere prover;

actuating the 4-way valve causing the fluid to push a resilient single sphere from a first sphere launch tube past a first detector switch in a straight section of calibrated pipe, past a second detector switch in the straight section of calibrated pipe, and into a second sphere launch tube, the straight section of calibrated pipe being free from flanges, lateral openings and elbows between the first detector switch and the second detector switch and having a first flange at a first end and a second flange at a second end;

actuating the 4-way valve causing the fluid to reverse direction through the bidirectional sphere prover to push the resilient single sphere from the second sphere launch tube past the second detector switch in the straight section of calibrated pipe, past the first detector switch and back into the first sphere launch tube; and

continuing to actuate the 4-way valve until the volumetric accuracy of the custody transfer meter has been proven.

Assignments (2)
CHANGE OF NAME Recorded Jan 10, 2014
From: WELKER FLOW MEASUREMENT SYSTEMS, INC.
To: WFMS, INC.
Reel/Frame 031969/0275 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2013
From: RUDROFF, DANIEL J.
To: WELKER FLOW MEASUREMENT SYSTEMS, INC.
Reel/Frame 030732/0123 →
Continuity (2)
Division 12128932 · May 29, 2008
Related Publication 20130291619A1 · Nov 7, 2013