IP Library Granted Patent US 11,137,114
Granted Patent B2
US 11,137,114 · App. 16/672,769 · Granted Oct 5, 2021

Method and apparatus for compressing gas in a plurality of stages to a storage tank array having a plurality of storage tanks

Inventors: Walter H. Killeen (Mandeville, LA); Bryan Killeen (Mandeville, LA); Carl Guichard (Mandeville, LA)
Assignee: New Gas Industries, L.L.C.
F17C5/06F16K11/074F16K11/085F17D3/00F17C2201/0109F17C2205/013F17C2205/0323F17C2205/0326F17C2205/0335F17C2205/0341F17C2205/0382F17C2209/234F17C2223/0123F17C2227/0157F17C2227/0164F17C2227/0337F17C2227/043F17C2227/047F17C2250/032F17C2250/043F17C2250/0439F17C2250/0495F17C2250/0626F17C2250/0694F17C2265/012F17C2265/015F17C2270/0139F17C2270/0168Y10T137/0396
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Quick Facts
Patent No.
US 11,137,114
App. No.
16/672,769
Granted
Oct 5, 2021
Kind
B2
Abstract

A method and apparatus for compressing gases and supplying fuel to a gaseous fuel consuming device, such as a gaseous fueled vehicle or the like. One embodiment includes a gas compressor for compressing the gaseous fuel to an array of tanks having predetermined initial set points which are increasing for tanks in the array. One embodiment provides a selecting valve having first and second families of ports wherein the valve can be operated to select a plurality of ports from the first family to be fluidly connected with a plurality of ports with the second family, and such fluid connections can be changed by operation of the valve.

Claims (232)

1. A method of filling a tank with compressed gaseous fuel, comprising the steps of:

(a) providing an array of tanks comprising a first Tank, a second Tank, a third Tank, and a fourth Tank, and a compressor fluidly connected to the array;

(b) before step “e”, taking gas from the first tank, compressing it with the compressor and discharging the compressed gas to the second Tank in the array, and continuing this step until one of the following conditions are met:

(i) the first tank experiences a pressure drop which reaches a predefined pressure drop set point for the first Tank, or

(ii) the pressure in the first Tank drops to a predefined minimum set point pressure for the first Tank, or

(iii) the differential pressure between the second Tank and the first Tank reaches a predefined set point pressure differential; or

(iv) second Tank pressure reaches a predefined upper set point pressure for the second Tank;

(c) between steps “b” and “e”, taking gas from the second Tank, compressing it with the compressor and discharging the compressed gas to the third Tank, and continuing this step until one of the following conditions are met:

(i) second Tank experiences a pressure drop which reaches a predefined pressure drop set point for the second Tank, or

(ii) the pressure in the second Tank drops to a predefined minimum set point pressure for the second Tank, or

(iii) the differential pressure between the third Tank and the second Tank reaches the predefined set point pressure differential; or

(iv) third Tank pressure reaches a predefined upper set point pressure for third Tank;

(d) between steps “c” and “e”, taking gas from the first Tank compressing it with the compressor and discharging compressed gas to the second Tank in the array, and continuing this step until one of the following conditions are met:

(i) first tank experiences a pressure drop which reaches the predefined pressure drop set point for the first Tank, or

(ii) the pressure in the first Tank drops to the predefined minimum set point pressure for the first Tank, or

(iii) the differential pressure between the second Tank and the first Tank reaches the predefined set point pressure differential; or

(iv) second Tank pressure reaches the predefined upper set point pressure for the second Tank;

(e) between steps “d” and “f”, taking gas from the second Tank, compressing it with the compressor, and discharging compressed gas to the third Tank in the array until one of the following conditions are met:

(i) second Tank experiences a pressure drop which reaches a predefined pressure drop set point for the second Tank, or

(ii) the pressure in the second Tank drops to a predefined minimum set point pressure for the second Tank, or

(iii) the differential pressure between the third Tank and the second Tank reaches a predefined set point pressure differential; or

(iv) the third Tank pressure reaches a predefined upper set point pressure for third Tank;

(f) between steps “e” and “g” taking gas from the third Tank, compressing it with the compressor and discharging the compressed gas to the fourth Tank, and continuing this step until one of the following conditions are met:

(i) third Tank experiences a pressure drop which reaches a predefined pressure drop set point for the third Tank, or

(ii) the pressure in the third Tank drops to a predefined minimum set point pressure for the third Tank, or

(iii) the differential pressure between the fourth Tank and the third Tank reaches a predefined set point pressure differential; or

(iv) the fourth Tank pressure reaches a predefined upper set point pressure for fourth Tank; and

(g) moving compressed gas from at least two tanks of the array first to the compressor and then to a vehicle storage tank,

wherein during the method steps

the compressor is selectively fluidly connected

to selected combinations of the first, second, third, and fourth Tanks in the array

by at least one selector valve, and

the at least one selector valve having a plurality of selector positions, first and second families of ports, wherein each family of ports have a plurality of selector ports, and

wherein in a first selector position

from the plurality of selector positions for the selector,

a plurality of the selector ports from the first family

can be fluidly connected in two way fluid directions

to a plurality of selector ports from the second family

where the remaining ports in the first family

are not fluidly connected to each other, and

in a second selector position

from the plurality of selector positions for the selector

a different plurality of ports from the first family

can be fluidly connected in two way directions

to the same plurality of ports from the second family,

where the remaining ports in the first family

are not fluidly connected to each other and

wherein in the second selector position

at least one of the ports in the second family

is fluidly connected to a different port

than fluidly connected to in the first selector position.

2. The method of claim 1 , wherein the selector valve includes a body and the selector is rotatively connected to the body.

3. The method of claim 1 , wherein a plurality of selector ports in the first family are connected in a one way direction by a plurality of check valves.

4. The method of claim 1 , wherein rotation of the selector causes the switching in connection between first and second selector positions.

5. The method of claim 1 , wherein the first family of selector ports includes at least six selector ports and the second family of selector ports includes at least two selector ports.

6. The method of claim 1 , wherein in step “a” the compressor is a single compressor of one stage.

7. The method of claim 1 , further including the step of during step “g” repeating steps “b” through “f” until the fourth Tank pressure reaches the predefined upper set point pressures for each of the first, second, third, and fourth Tanks.

8. The method of claim 1 , further including the step of, during step “g”, repeating steps “b” through “f” in reverse order until the fourth Tank pressure reaches the predefined upper set point pressures for each of the first, second, third, and fourth Tanks.

9. A method of filling a tank with compressed gaseous fuel, comprising the steps of:

(a) providing an array of tanks comprising a first tank, second tank, third tank, and fourth tank, fifth tank, and a compressor fluidly connected to the array;

(b) before step “c”, taking gas from the first tank, compressing it with the compressor and discharging the compressed gas to the second Tank in the array, and continuing this step until one of the following conditions are met:

(i) first Tank experiences a pressure drop which reaches a predefined pressure drop set point for the first Tank, or

(ii) the pressure in the first Tank drops to a predefined minimum set point pressure for the first Tank, or

(iii) the differential pressure between the second Tank and the first Tank reaches a predefined set point pressure differential; or

(iv) second Tank pressure reaches a predefined upper set point pressure for second Tank;

(c) between steps “b” and “d”, taking gas from the second Tank, compressing it with the compressor and discharging the compressed gas to the third Tank, and continuing this step until one of the following conditions are met:

(i) second Tank experiences a pressure drop which reaches a predefined pressure drop set point for the second Tank, or

(ii) the pressure in the second Tank drops to a predefined minimum set point pressure for the second Tank, or

(iii) the differential pressure between the third Tank and the second Tank reaches the predefined set point pressure differential; or

(iv) third Tank pressure reaches a predefined upper set point pressure for third Tank;

(d) between steps “c” and “e”, taking gas from the first Tank compressing it with the compressor and discharging compressed gas to the second Tank in the array, and continuing this step until one of the following conditions are met:

(i) first tank experiences a pressure drop which reaches the predefined pressure drop set point for the first Tank, or

(ii) the pressure in the first Tank drops to the predefined minimum set point pressure for the first Tank, or

(iii) the differential pressure between the second Tank and the first Tank reaches the predefined set point pressure differential; or

(iv) second Tank pressure reaches the predefined upper set point pressure for the second Tank;

(e) between steps “d” and “f”, taking gas from the second Tank, compressing it with the compressor, and discharging compressed gas to the third Tank in the array until one of the following conditions are met:

(i) second Tank experiences a pressure drop which reaches the predefined pressure drop set point for the second Tank, or

(ii) the pressure in the second Tank drops to the predefined minimum set point pressure for the second Tank, or

(iii) the differential pressure between the third Tank and the second Tank reaches the predefined set point pressure differential; or

(iv) the third Tank pressure reaches the predefined upper set point pressure for third Tank;

(f) between steps “e” and “g” taking gas from the third Tank, compressing it with the compressor and discharging the compressed gas to the fourth tank, and continuing this step until one of the following conditions are met:

(i) third Tank experiences a pressure drop which reaches a predefined pressure drop set point for the third Tank, or

(ii) the pressure in the third Tank drops to the predefined minimum set point pressure for the third Tank, or

(iii) the differential pressure between the fourth Tank and the third Tank reaches the predefined set point pressure differential; or

(iv) the fourth Tank pressure reaches a predefined upper set point pressure for fourth Tank; and

(g) between steps “f” and “h”, taking gas from the first Tank compressing it with the compressor and discharging compressed gas to the second Tank in the array, and continuing this step until one of the following conditions are met:

(i) first tank experiences a pressure drop which reaches the predefined pressure drop set point for the first Tank, or

(ii) the pressure in the first Tank drops to the predefined minimum set point pressure for the first Tank, or

(iii) the differential pressure between the second Tank and the first Tank reaches the predefined set point pressure differential; or

(iv) second Tank pressure reaches the predefined upper set point pressure for the second Tank;

(h) between steps “g” and “i”, taking gas from the second Tank, compressing it with the compressor, and discharging compressed gas to the third Tank in the array until one of the following conditions are met:

(i) second Tank experiences a pressure drop which reaches the predefined pressure drop set point for the second Tank, or

(ii) the pressure in the second Tank drops to the predefined minimum set point pressure for the second Tank, or

(iii) the differential pressure between the third Tank and the second Tank reaches the predefined set point pressure differential; or

(iv) the third Tank pressure reaches the predefined upper set point pressure for third Tank;

(i) between steps “h” and “j” taking gas from the third Tank, compressing it with the compressor and discharging the compressed gas to the fourth tank, and continuing this step until one of the following conditions are met:

(i) third Tank experiences a pressure drop which reaches the predefined pressure drop set point for the third Tank, or

(ii) the pressure in the third Tank drops to the predefined minimum set point pressure for the third Tank, or

(iii) the differential pressure between the fourth Tank and the third Tank reaches the predefined set point pressure differential; or

(iv) the fourth Tank pressure reaches the predefined upper set point pressure for fourth Tank; and

(j) between steps “i” and “k” taking gas from the fourth Tank, compressing it with the compressor and discharging the compressed gas to the fifth Tank, and continuing this step until one of the following conditions are met:

(i) fourth Tank experiences a pressure drop which reaches a predefined pressure drop set point for the fourth Tank, or

(ii) the pressure in the fourth Tank drops to a predefined minimum set point pressure for the fourth Tank, or

(iii) the differential pressure between the fifth Tank and the fourth Tank reaches the predefined set point pressure differential; or

(iv) the fifth Tank pressure reaches a predefined upper set point pressure for fifth Tank; and

(k) after step “j”, moving compressed gas from at least two tanks of the array first to the compressor and then to a vehicle storage tank,

wherein during the method steps

the compressor is selectively fluidly connected

to selected combinations of the first, second, third, and fourth Tanks in the array

by at least one selector valve, and

the at least one selector valve having a plurality of selector positions, first and second families of ports, wherein each family of ports have a plurality of selector ports, and

wherein in a first selector position

from the plurality of selector positions for the selector,

a plurality of the selector ports from the first family

can be fluidly connected in two way fluid directions

to a plurality of selector ports from the second family

where the remaining ports in the first family

are not fluidly connected to each other, and

in a second selector position

from the plurality of selector positions for the selector

a different plurality of ports from the first family

can be fluidly connected in two way directions

to the same plurality of ports from the second family,

where the remaining ports in the first family

are not fluidly connected to each other and

wherein in the second selector position

at least one of the ports in the second family

is fluidly connected to a different port

than fluidly connected to in the first selector position.

10. The method of claim 9 , wherein in step “a” the compressor is a single stage hermetically sealed compressor.

11. The method of claim 9 , wherein before step “k” each of the first, second, third, fourth, and fifth Tanks each reach their respective predefined upper set point pressures.

12. The method of claim 9 , further including the step of during step “k” repeating steps “b” through “j” until the fifth Tank pressure reaches the predefined upper set point pressures for each of the first, second, third, fourth, and fifth Tanks.

13. The method of claim 9 , further including the step of, during step “k”, repeating steps “b” through “j” in reverse order until the fifth Tank pressure reaches the predefined upper set point pressures for each of the first, second, third, fourth, and fifth Tanks.

14. A method of filling a tank with compressed gaseous fuel, comprising the steps of:

(a) providing an array of tanks comprising a first tank, second tank, third tank, fourth tank, fifth tank, and sixth tank a compressor fluidly connected to the array;

(b) before step “c”, taking gas from the first tank, compressing it with the compressor and discharging the compressed gas to the second Tank in the array, and continuing this step until one of the following conditions are met:

(i) first Tank experiences a pressure drop which reaches a predefined pressure drop set point for the first Tank, or

(ii) the pressure in the first Tank drops to a predefined minimum set point pressure for the first Tank, or

(iii) the differential pressure between the second Tank and the first Tank reaches a predefined set point pressure differential; or

(iv) second Tank pressure reaches a predefined upper set point pressure for the second Tank;

(c) between steps “b” and “d”, taking gas from the second Tank, compressing it with the compressor and discharging the compressed gas to the third Tank, and continuing this step until one of the following conditions are met:

(i) second Tank experiences a pressure drop which reaches a predefined pressure drop set point for the second Tank, or

(ii) the pressure in the second Tank drops to a predefined minimum set point pressure for the second Tank, or

(iii) the differential pressure between the third Tank and the second Tank reaches the predefined set point pressure differential; or

(iv) third Tank pressure reaches a predefined upper set point pressure for third Tank;

(d) between steps “c” and “e”, taking gas from the first Tank compressing it with the compressor and discharging compressed gas to the second Tank in the array, and continuing this step until one of the following conditions are met:

(i) first tank experiences a pressure drop which reaches the predefined pressure drop set point for the first Tank, or

(ii) the pressure in the first Tank drops to the predefined minimum set point pressure for the first Tank, or

(iii) the differential pressure between the second Tank and the first Tank reaches the predefined set point pressure differential; or

(iv) second Tank pressure reaches the predefined upper set point pressure for the second Tank;

(e) between steps “d” and “f”, taking gas from the second Tank, compressing it with the compressor, and discharging compressed gas to the third Tank in the array until one of the following conditions are met:

(i) second Tank experiences a pressure drop which reaches the predefined pressure drop set point for the second Tank, or

(ii) the pressure in the second Tank drops to the predefined minimum set point pressure for the second Tank, or

(iii) the differential pressure between the third Tank and the second Tank reaches the predefined set point pressure differential; or

(iv) the third Tank pressure reaches the predefined upper set point pressure for third Tank;

(f) between steps “e” and “g” taking gas from the third Tank, compressing it with the compressor and discharging the compressed gas to the fourth tank, and continuing this step until one of the following conditions are met:

(i) third Tank experiences a pressure drop which reaches a predefined pressure drop set point for the third Tank, or

(ii) the pressure in the third Tank drops to a predefined minimum set point pressure for the third Tank, or

(iii) the differential pressure between the fourth Tank and the third Tank reaches the predefined set point pressure differential; or

(iv) the fourth Tank pressure reaches a predefined upper set point pressure for fourth Tank; and

(g) between steps “f” and “h”, taking gas from the first Tank compressing it with the compressor and discharging compressed gas to the second Tank in the array, and continuing this step until one of the following conditions are met:

(i) first tank experiences a pressure drop which reaches the predefined pressure drop set point for the first Tank, or

(ii) the pressure in the first Tank drops to the predefined minimum set point pressure for the first Tank, or

(iii) the differential pressure between the second Tank and the first Tank reaches the predefined set point pressure differential; or

(iv) second Tank pressure reaches the predefined upper set point pressure for the second Tank;

(h) between steps “g” and “i”, taking gas from the second Tank, compressing it with the compressor, and discharging compressed gas to the third Tank in the array until one of the following conditions are met:

(i) second Tank experiences a pressure drop which reaches the predefined pressure drop set point for the second Tank, or

(ii) the pressure in the second Tank drops to the predefined minimum set point pressure for the second Tank, or

(iii) the differential pressure between the third Tank and the second Tank reaches the predefined set point pressure differential; or

(iv) the third Tank pressure reaches the predefined upper set point pressure for third Tank;

(i) between steps “h” and “j” taking gas from the third Tank, compressing it with the compressor and discharging the compressed gas to the fourth tank, and continuing this step until one of the following conditions are met:

(i) third Tank experiences a pressure drop which reaches the predefined pressure drop set point for the third Tank, or

(ii) the pressure in the third Tank drops to the predefined minimum set point pressure for the third Tank, or

(iii) the differential pressure between the fourth Tank and the third Tank reaches the predefined set point pressure differential; or

(iv) the fourth Tank pressure reaches the predefined upper set point pressure for fourth Tank; and

(j) between steps “i” and “k” taking gas from the fourth Tank, compressing it with the compressor and discharging the compressed gas to the fifth Tank, and continuing this step until one of the following conditions are met:

(i) fourth Tank experiences a pressure drop which reaches a predefined pressure drop set point for the fourth Tank, or

(ii) the pressure in the fourth Tank drops to predefined minimum set point pressure for the fourth Tank, or

(iii) the differential pressure between the fifth Tank and the fourth Tank reaches the predefined set point pressure differential; or

(iv) the fifth Tank pressure reaches a predefined upper set point pressure for fifth Tank; and

(k) between steps “j” and “l”, taking gas from the first Tank compressing it with the compressor and discharging compressed gas to the second Tank in the array, and continuing this step until one of the following conditions are met:

(i) first tank experiences a pressure drop which reaches the predefined pressure drop set point for the first Tank, or

(ii) the pressure in the first Tank drops to the predefined minimum set point pressure for the first Tank, or

(iii) the differential pressure between the second Tank and the first Tank reaches the predefined set point pressure differential; or

(iv) second Tank pressure reaches the predefined upper set point pressure for the second Tank;

(l) between steps “k” and “m”, taking gas from the second Tank, compressing it with the compressor, and discharging compressed gas to the third Tank in the array until one of the following conditions are met:

(i) second Tank experiences a pressure drop which reaches the predefined pressure drop set point for the second Tank, or

(ii) the pressure in the second Tank drops to the predefined minimum set point pressure for the second Tank, or

(iii) the differential pressure between the third Tank and the second Tank reaches the predefined set point pressure differential; or

(iv) the third Tank pressure reaches the predefined upper set point pressure for third Tank;

(m) between steps “l” and “n” taking gas from the third Tank, compressing it with the compressor and discharging the compressed gas to the fourth tank, and continuing this step until one of the following conditions are met:

(i) third Tank experiences a pressure drop which reaches the predefined pressure drop set point for the third Tank, or

(ii) the pressure in the third Tank drops to the predefined minimum set point pressure for the third Tank, or

(iii) the differential pressure between the fourth Tank and the third Tank reaches the predefined set point pressure differential; or

(iv) the fourth Tank pressure reaches the predefined upper set point pressure for fourth Tank; and

(n) between steps “m” and “o” taking gas from the fourth Tank, compressing it with the compressor and discharging the compressed gas to the fifth Tank, and continuing this step until one of the following conditions are met:

(i) fourth Tank experiences a pressure drop which reaches the predefined pressure drop set point for the fourth Tank, or

(ii) the pressure in the fourth Tank drops to the predefined minimum set point pressure for the fourth Tank, or

(iii) the differential pressure between the fifth Tank and the fourth Tank reaches the predefined set point pressure differential; or

(iv) the fifth Tank pressure reaches the predefined upper set point pressure for fifth Tank; and

(o) between steps “n” and “p” taking gas from the fifth Tank, compressing it with the compressor and discharging the compressed gas to the sixth Tank, and continuing this step until one of the following conditions are met:

(i) fifth Tank experiences a pressure drop which reaches the predefined pressure drop set point for the fifth Tank, or

(ii) the pressure in the fifth Tank drops to the predefined minimum set point pressure for the fifth Tank, or

(iii) the differential pressure between the sixth Tank and the fifth Tank reaches the predefined set point pressure differential; or

(iv) the sixth Tank pressure reaches a predefined upper set point pressure for sixth Tank; and

(p) after step “o”, moving compressed gas from at least two tanks of the array first to the compressor and then to a vehicle storage tank,

wherein during the method steps

the compressor is selectively fluidly connected

to selected combinations of the first, second, third, and fourth Tanks in the array

by at least one selector valve, and

the at least one selector valve having a plurality of selector positions, first and second families of ports, wherein each family of ports have a plurality of selector ports, and

wherein in a first selector position

from the plurality of selector positions for the selector,

a plurality of the selector ports from the first family

can be fluidly connected in two way fluid directions

to a plurality of selector ports from the second family

where the remaining ports in the first family

are not fluidly connected to each other, and

in a second selector position

from the plurality of selector positions for the selector

a different plurality of ports from the first family

can be fluidly connected in two way directions

to the same plurality of ports from the second family,

where the remaining ports in the first family

are not fluidly connected to each other and

wherein in the second selector position

at least one of the ports in the second family

is fluidly connected to a different port

than fluidly connected to in the first selector position.

15. The method of claim 14 , further including the step of during step “p” repeating steps “b” through “o” until the sixth Tank pressure reaches the predefined upper set point pressures for each of the first, second, third, fourth, fifth, and sixth Tanks.

16. The method of claim 14 , further including the step of, during step “p”, repeating steps “b” through “o” in reverse order until the sixth Tank pressure reaches the predefined upper set point pressures for each of the first, second, third, fourth, fifth, and sixth Tanks.

17. The method of claim 14 , wherein in step “a” the compressor is a single compressor of one stage and hermetically sealed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2021
From: KILLEEN, WALTER; KILLEEN, BRYAN; GUICHARD, CARL
To: NEW GAS INDUSTRIES, L.L.C.
Reel/Frame 056316/0032 →
Continuity (4)
Continuation 15484239 · Apr 11, 2017
Continuation 13462177 · May 2, 2012
Provisional Application 61518111 · May 2, 2011
Related Publication 20200182406A1 · Jun 11, 2020