Oxygen gas concentrator with outlet accumulator
An oxygen concentrator comprises a product tank that is fluidly coupled to at least one sieve bed, and a product gas accumulator tank that is fluidly coupled to the product tank via a first conduit and to an outlet port via a second conduit, wherein the first conduit and the second conduit are disposed to allow at least a portion of product gas to flow from the product tank to the outlet port.
1. An apparatus, comprising:
at least one sieve bed configured to provide oxygen-enriched gas;
a product tank arranged downstream of the at least one sieve bed and configured to receive the oxygen-enriched gas from the at least one sieve bed;
an outlet port configured to be connected to a respiratory ventilation device;
a product gas accumulator tank downstream of the product tank and at the outlet port;
a tank pressure measurement device configured to measure pressure of the oxygen-enriched gas in the product tank;
a flow measurement device arranged between the product tank and the product gas accumulator tank, the flow measurement device configured to measure flow of oxygen-enriched product gas;
a pressure regulator arranged between the product tank and the product gas accumulator tank, the pressure regulator configured to regulate a pressure of the oxygen-enriched gas flowing from the product tank at a product tank pressure down to a target delivery pressure; and
a controller configured to receive one or more pressure measurements from the tank pressure measurement device and receive one or more flow measurements from the flow measurement device, the controller further configured to control flow to the product gas accumulator tank;
wherein the apparatus is configured such that, when the outlet port is connected to the respiratory ventilation device, the product gas accumulator tank stores a quantity of the oxygen-enriched gas received from the product tank between each of a plurality of patient inspiratory efforts and supplies the stored oxygen-enriched gas at a consistent flow rate to the outlet port during each of the plurality of patient inspiratory efforts.
2. The apparatus of claim 1 , wherein the product tank is fluidly coupled to the at least one sieve bed via a check valve that allows flow from the at least one sieve bed to the product tank.
3. The apparatus of claim 1 , further comprising a filter, wherein the product gas accumulator tank is disposed between the filter and the outlet port.
4. The apparatus of claim 1 , further comprising an oxygen sensor that is arranged between the product tank and the product gas accumulator tank.
5. The apparatus of claim 1 , wherein the product gas accumulator tank comprises either a constant volume pressure vessel or a variable volume pressure vessel.
6. The apparatus of claim 5 , wherein the variable volume pressure vessel comprises a balloon accumulator or a movable piston.
7. The apparatus of claim 6 , wherein the movable piston, during operation, maintains a substantially constant pressure in the variable volume pressure vessel.
8. A system, comprising:
a respiratory ventilation device; and
an oxygen concentrator that includes:
at least one sieve bed configured to provide oxygen-enriched gas;
a product tank arranged downstream of the at least one sieve bed and configured to receive the oxygen-enriched gas from the at least one sieve bed;
an outlet port configured to be connected to the respiratory ventilation device;
a product gas accumulator tank arranged downstream of the product tank and at the outlet port;
a tank pressure measurement device configured to measure pressure of the oxygen-enriched gas in the product tank;
a flow measurement device arranged between the product tank and the product gas accumulator tank, the flow measurement device configured to measure flow of oxygen-enriched product gas;
a pressure regulator arranged between the product tank and the product gas accumulator tank, the pressure regulator configured to regulate a pressure of the oxygen-enriched gas flowing from the product tank at a product tank pressure down to a target delivery pressure; and
a controller configured to receive one or more pressure measurements from the tank pressure measurement device and one or more flow measurements from the flow measurement device;
wherein the oxygen concentrator is configured such that, when the outlet port is connected to the respiratory ventilation device, the product gas accumulator tank stores a quantity of oxygen-enriched gas received from the product tank between each of a plurality of patient inspiratory efforts and supplies the stored oxygen-enriched gas at a consistent flow rate to the outlet port during each of the plurality of patient inspiratory efforts.
9. The system of claim 8 , wherein the product tank is fluidly coupled to the at least one sieve bed via a check valve that allows flow from the at least one sieve bed to the product tank.
10. The system of claim 8 , the oxygen concentrator further comprising a filter, wherein the product gas accumulator tank is disposed between the filter and the outlet port of the oxygen concentrator.
11. The system of claim 8 , further comprising an oxygen sensor that is arranged between the product tank and the product gas accumulator tank.
12. The system of claim 8 , wherein the product gas accumulator tank comprises either a constant volume pressure vessel or a variable volume pressure vessel.
13. The system of claim 12 , wherein the variable volume pressure vessel comprises a balloon accumulator or a movable piston.
14. The system of claim 13 , wherein the movable piston, during operation, maintains a substantially constant pressure in the variable volume pressure vessel.