IP Library › Granted Patent US 9,245,436
Granted Patent B1
US 9,245,436 · App. 14/464,769 · Granted Jan 26, 2016

Hydrogen sulfide alarm methods

Inventor: Gary W. Crook (Midland, TX)
G08B21/14G08C17/02
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Quick Facts
Patent No.
US 9,245,436
App. No.
14/464,769
Granted
Jan 26, 2016
Kind
B1
Abstract

H2S (hydrogen sulfide) alarm methods include automated systems for creating reports, initiating different safety drills and/or recording certain calibration and bump tests. The methods being automated reduces the chance of human error and falsified records. The H2S alarm methods are particularly useful for ensuring the safety of workers at remote worksites.

Claims (85)

1. An H2S alarm method involving at least one of a server system, an H2S monitor and a computer, the H2S alarm method comprising:

establishing a first wireless communication link between the H2S monitor and the computer;

establishing a second wireless communication link between the computer and the server system, wherein the second wireless communication link is longer than the first wireless communication link;

assigning an identifier to the H2S monitor;

performing a calibration test on the H2S monitor, wherein the calibration test involves during a first period exposing the H2S monitor to a first concentration of H2S that is within a first predetermined range of a predetermined threshold of the H2S monitor, the calibration test also involves during a second period exposing the H2S monitor to a second concentration of H2S that is within a second predetermined range of zero;

the H2S monitor generating a first reading and a second reading corresponding respectively to the first concentration of H2S and the second concentration of H2S;

the first wireless communication link transmitting the first reading and the second reading from the H2S monitor to the computer;

the computer ascertaining the first reading and the second reading are associated with the identifier;

assigning a calibration timestamp to the calibration test;

generating a report based on the first reading, the second reading, the calibration timestamp and the identifier; and

transmitting from the computer to the server system at least one of the report, the first reading, the second reading, the calibration timestamp and the identifier.

2. The H2S alarm method of claim 1 , wherein the first predetermined range is between a lower limit and an upper limit, and the H2S alarm method further comprising:

comparing the first reading to the lower limit; and

based on comparing the first reading to the lower limit, determining whether degradation of the H2S monitor exists.

3. The H2S alarm method of claim 1 , further comprising the first wireless communication link transmitting the identifier from the H2S monitor to the computer.

4. The H2S alarm method of claim 1 , wherein the identifier is alphanumeric.

5. The H2S alarm method of claim 1 , further comprising storing the identifier on both the H2S monitor and on the computer.

6. The H2S alarm method of claim 1 , further comprising:

storing the identifier on both the H2S monitor and on the computer; and

based on the identifier stored on both the H2S monitor and on the computer being a match, the computer ascertaining the first reading and the second reading are associated with the identifier.

7. The H2S alarm method of claim 1 further comprising:

setting up wellbore equipment at a wellsite during a setup period that is prior to an operational period;

operating the wellbore equipment during the operational period;

prior to the operational period, performing the calibration test; and

prior to the operational period, generating the report.

8. The H2S alarm method of claim 1 further comprising:

setting up wellbore equipment at a wellsite during a setup period that is prior to an operational period;

operating the wellbore equipment during the operational period;

prior to the operational period, performing the calibration test at the wellsite;

prior to the operational period, generating the report; and

prior to the operational period, transmitting at least one of the report, the first reading, the second reading, the calibration timestamp and the identifier to the server system.

9. The H2S alarm method of claim 1 , wherein at least one of the computer and the server system generates the report.

10. The H2S alarm method of claim 1 , wherein the calibration test further involves the computer sending via the first wireless communication link a calibration signal to the H2S monitor, whereby the first wireless communication link establishes two-way communication between the computer and the H2S monitor.

11. An H2S alarm method involving at least one of a server system, an H2S monitor and a computer, the H2S alarm method comprising:

establishing a first wireless communication link between the H2S monitor and the computer;

establishing a second wireless communication link between the computer and the server system, wherein the second wireless communication link is longer than the first wireless communication link;

assigning an identifier to the H2S monitor;

the first wireless communication link transmitting the identifier from the H2S monitor to the computer;

storing the identifier on both the H2S monitor and on the computer;

performing a calibration test on the H2S monitor, wherein the calibration test involves during a first period exposing the H2S monitor to a first concentration of H2S that is within a first predetermined range of a predetermined threshold of the H2S monitor, the calibration test also involves during a second period exposing the H2S monitor to a second concentration of H2S that is within a second predetermined range of zero;

the H2S monitor generating a first reading and a second reading corresponding respectively to the first concentration of H2S and the second concentration of H2S;

the first wireless communication link transmitting the first reading and the second reading from the H2S monitor to the computer;

based on the identifier stored on both the H2S monitor and on the computer being a match, the computer ascertaining the first reading and the second reading are associated with the identifier;

assigning a calibration timestamp to the calibration test;

generating a report based on the first reading, the second reading, the calibration timestamp and the identifier; and

transmitting from the computer to the server system at least one of the report, the first reading, the second reading, the calibration timestamp and the identifier.

12. The H2S alarm method of claim 11 , wherein the first predetermined range is between a lower limit and an upper limit, and the H2S alarm method further comprising:

comparing the first reading to the lower limit; and

based on comparing the first reading to the lower limit, determining whether degradation of the H2S monitor exists.

13. The H2S alarm method of claim 11 , wherein the identifier is alphanumeric.

14. The H2S alarm method of claim 11 further comprising:

setting up wellbore equipment at a wellsite during a setup period that is prior to an operational period;

operating the wellbore equipment during the operational period;

prior to the operational period, performing the calibration test; and

prior to the operational period, generating the report.

15. The H2S alarm method of claim 11 further comprising:

setting up wellbore equipment at a wellsite during a setup period that is prior to an operational period;

operating the wellbore equipment during the operational period;

prior to the operational period, performing the calibration test at the wellsite;

prior to the operational period, generating the report; and

prior to the operational period, transmitting at least one of the report, the first reading, the second reading, the calibration timestamp and the identifier to the server system.

16. The H2S alarm method of claim 11 , wherein at least one of the computer and the server system generates the report.

17. The H2S alarm method of claim 11 , wherein the calibration test further involves the computer sending via the first wireless communication link a calibration signal to the H2S monitor, whereby the first wireless communication link establishes two-way communication between the computer and the H2S monitor.

18. An H2S alarm method involving at least one of a server system, an H2S monitor and a computer, the H2S alarm method comprising:

establishing a first wireless communication link between the H2S monitor and the computer;

establishing a second wireless communication link between the computer and the server system, wherein the second wireless communication link is longer than the first wireless communication link;

assigning an identifier to the H2S monitor;

the first wireless communication link transmitting the identifier from the H2S monitor to the computer;

storing the identifier on both the H2S monitor and on the computer;

performing a calibration test on the H2S monitor, wherein the calibration test involves during a first period exposing the H2S monitor to a first concentration of H2S that is within a first predetermined range of a predetermined threshold of the H2S monitor, wherein the first predetermined range is between a lower limit and an upper limit, and the calibration test also involves during a second period exposing the H2S monitor to a second concentration of H2S that is within a second predetermined range of zero;

the H2S monitor generating a first reading and a second reading corresponding respectively to the first concentration of H2S and the second concentration of H2S;

comparing the first reading to the lower limit;

based on comparing the first reading to the lower limit, determining whether degradation of the H2S monitor exists;

the first wireless communication link transmitting the first reading and the second reading from the H2S monitor to the computer;

based on the identifier stored on both the H2S monitor and on the computer being a match, the computer ascertaining the first reading and the second reading are associated with the identifier;

assigning a calibration timestamp to the calibration test;

generating a report based on the first reading, the second reading, the calibration timestamp and the identifier;

transmitting from the computer to the server system at least one of the report, the first reading, the second reading, the calibration timestamp and the identifier;

setting up wellbore equipment at a wellsite during a setup period that is prior to an operational period;

operating the wellbore equipment during the operational period;

prior to the operational period, performing the calibration test at the wellsite;

prior to the operational period, generating the report; and

prior to the operational period, transmitting from the computer to the server system at least one of the report, the first reading, the second reading, the calibration timestamp and the identifier.

19. The H2S alarm method of claim 18 , wherein the identifier is alphanumeric.

20. The H2S alarm method of claim 18 , wherein at least one of the computer and the server system generates the report.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2020
From: CROOK, GARY W.
To: SHEPHERD SAFETY HOLDINGS, LLC
Reel/Frame 053430/0115 →
CORRECTIVE ASSIGNMENT TO CORRECT THE TYPOGRAPHICAL ERROR IN THE ASSIGNEE'S NAME ORIGINALLY RECORDED AS SHEPHERD HOLDING, LLC PREVIOUSLY RECORDED ON REEL 043599 FRAME 0574. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECT ASSIGNEE'S NAME, SHEPHERD SAFETY HOLDINGS, LLC, HAS BEEN ENTERED ON THE CORRECTED ASSIGNMENT DOCUMENT. Recorded Jul 14, 2020
From: CROOK, GARY W.
To: SHEPHERD SAFETY HOLDINGS, LLC
Reel/Frame 053204/0876 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2019
From: SHEPHERD SAFETY HOLDINGS, LLC
To: SHEPHERD SAFETY SYSTEMS, LLC
Reel/Frame 050929/0279 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2017
From: CROOK, GARY W
To: SHEPHERD HOLDING, LLC
Reel/Frame 043599/0574 →
Continuity (1)
Continuation In Part 13631960 · Sep 29, 2012