Pump with conduit system fluidly coupled to cylinders
A pump includes a cylinder and a piston disposed within the cylinder to define a first chamber and a second chamber within the cylinder. The piston is configured to move within the cylinder to reduce a size of the first chamber to discharge material from the first chamber. The pump also includes a conduit system configured to direct fluid into the first chamber to aerate material in the first chamber.
1 . A pump, comprising:
a first cylinder;
a first piston disposed within the first cylinder to define a first chamber and a second chamber within the first cylinder, wherein the first piston is configured to move within the first cylinder to reduce a size of the first chamber to discharge material from the first chamber;
a second cylinder;
a second piston disposed within the second cylinder to define a third chamber and a fourth chamber within the second cylinder, wherein the second piston is configured to move within the second cylinder to reduce a size of the third chamber to discharge material from the third chamber; and
a conduit system configured to direct fluid into the first chamber to aerate material in the first chamber, wherein the conduit system fluidly couples the fourth chamber and the first chamber to one another and is configured to direct fluid from the fourth chamber to the first chamber to aerate material in the first chamber.
2 . The pump of claim 1 , wherein the second piston is configured to move within the second cylinder to reduce a size of the fourth chamber to draw material into the third chamber and to direct fluid from the fourth chamber to the first chamber via the conduit system.
3 . The pump of claim 2 , comprising a shaft configured to drive movement of the first piston within the first cylinder and movement of the second piston within the second cylinder, wherein the shaft is configured to drive movement of the second piston within the second cylinder to reduce the size of the fourth chamber to direct fluid from the fourth chamber to the first chamber via the conduit system prior to the first piston moving within the first cylinder to reduce the size of the first chamber to discharge material from the first chamber.
4 . The pump of claim 1 , comprising a crankshaft extending along a crankshaft axis and configured to rotate about the crankshaft axis during operation of the pump, wherein the first cylinder and the second cylinder are distributed circumferentially around the crankshaft axis, and rotation of the crankshaft drives movement of the first piston within the first cylinder and movement of the second piston within the second cylinder.
5 . The pump of claim 4 , wherein the first piston is configured to move within the first cylinder along a first cylinder axis, the second piston is configured to move within the second cylinder along a second cylinder axis, and the first cylinder axis and the second cylinder axis are offset from one another along the crankshaft axis.
6 . The pump of claim 1 , wherein the conduit system comprises a check valve configured to block fluid flow from the first chamber to the fourth chamber.
7 . The pump of claim 1 , comprising:
a third cylinder; and
a third piston disposed within the third cylinder to define a fifth chamber and a sixth chamber within the third cylinder, wherein the third piston is configured to move within the third cylinder to reduce a size of the fifth chamber to discharge material from the fifth chamber, and the conduit system fluidly couples the second chamber and the fifth chamber to one another and is configured to direct fluid from the second chamber to the fifth chamber to aerate material in the fifth chamber.
8 . The pump of claim 7 , wherein the conduit system comprises:
a first conduit fluidly coupled to the first chamber and to the fourth chamber; and
a second conduit fluidly coupled to the second chamber and to the fifth chamber.
9 . The pump of claim 1 , wherein the first cylinder comprises an inlet that introduces material into the first chamber, and the conduit system is configured to direct fluid to the first chamber adjacent to the inlet to aerate material received via the inlet.
10 . The pump of claim 1 , comprising a fluid source configured to direct fluid into the first chamber via the conduit system.
11 . The pump of claim 10 , comprising a distributor configured to alternately enable and block fluid flow from the fluid source to the first chamber via the conduit system.
12 . The pump of claim 11 , wherein the distributor comprises:
a first component comprising a supply channel fluidly coupled to the first chamber via the conduit system; and
a second component comprising:
an inlet channel fluidly coupled to the fluid source; and
a passage fluidly coupled to the inlet channel, wherein the second component is configured to rotate relative to the first component to adjust positioning of the passage relative to the supply channel, alignment of the passage with the supply channel enables fluid flow from the fluid source into the first chamber via the supply channel, and misalignment of the passage with the supply channel blocks fluid flow from the fluid source into the first chamber via the supply channel.
13 . A pump, comprising:
a first cylinder having an inlet;
a first piston disposed within the first cylinder to define a first chamber and a second chamber within the first cylinder, the first piston being movable within the first cylinder to reduce a size of the first chamber to discharge material from the first chamber and to increase a size of the second chamber;
a second cylinder;
a second piston disposed within the second cylinder to define a third chamber and a fourth chamber within the second cylinder; and
a conduit system that directs fluid into the first chamber to aerate material in the first chamber, wherein conduit system is configured to direct the fluid adjacent to the inlet, wherein the conduit system fluidly couples the fourth chamber and the first chamber to one another and is configured to direct fluid from the fourth chamber to the first chamber to aerate material in the first chamber.
14 . The pump of claim 13 , wherein
the second piston is configured to move within the second cylinder to reduce a size of the third chamber to discharge material from the third chamber.
15 . The pump of claim 14 , wherein the second piston is configured to move within the second cylinder to reduce a size of the fourth chamber to draw material into the third chamber and to direct fluid from the fourth chamber to the first chamber via the conduit system.
16 . The pump of claim 14 , comprising:
a crankshaft extending along a crankshaft axis and configured to rotate about the crankshaft axis during operation of the pump, wherein the first cylinder and the second cylinder are distributed circumferentially around the crankshaft axis, and rotation of the crankshaft drives movement of the first piston within the first cylinder and movement of the second piston within the second cylinder.
17 . The pump of claim 13 , comprising a fluid source configured to direct fluid into the first chamber via the conduit system.
18 . A pump, comprising:
a first cylinder;
a first piston disposed within the first cylinder to define a first chamber and a second chamber within the first cylinder, the first piston being configured to move within the first cylinder to reduce a size of the first chamber to discharge material from the first chamber and to increase a size of the second chamber;
a second cylinder;
a second piston disposed within the second cylinder to define a third chamber and a fourth chamber within the second cylinder, the second piston being configured to move within the second cylinder to reduce a size of the third chamber to discharge material from the third chamber and to increase a size of the fourth chamber; and
a conduit system that fluidly couples the fourth chamber to the first chamber, wherein the conduit system is configured to direct fluid from the fourth chamber to the first chamber to aerate material in the first chamber.
19 . The pump of claim 18 , wherein the second piston is configured to draw material into the third chamber and to direct fluid from the fourth chamber to the first chamber via the conduit system when the second piston moves within the second cylinder to reduce the size of the fourth chamber.