Fluid mixing structure
A respiratory therapy system can have a flow generator adapted to provide gases to a patient. A gas passageway can be located in-line with the flow generator. The gas passageway can have a first portion adapted to receive a first gas and a second portion adapted to receive a second gas. The gas passageway can have a static mixer downstream of the first and second portions.
1. A respiratory therapy system comprising:
a flow generator within a housing;
a flow mixer configured to mix a first gas comprising ambient air and a second gas comprising a therapeutic gas by inducing swirling flow regions;
an ultrasonic sensor positioned in a gas passageway downstream of the flow mixer, wherein the flow mixer is configured to mix the first gas and the second gas to enable the ultrasonic sensor to provide more reliable readings, wherein the ultrasonic sensor comprises an ultrasonic transducer configured to emit and/or receive waves in a direction substantially perpendicular to a direction of gas mixing by the flow mixer;
a humidifier downstream of the flow generator;
a filter cover positioned upstream of the flow mixer and containing a filter media, wherein the filter cover comprises one or more apertures and a filter inlet pipe, wherein the first gas is configured to pass through the one or more apertures of the filter cover, and wherein the second gas is configured to pass through the filter inlet pipe; and
a cavity between the filter cover and the filter media for mixing the first gas and the second gas;
wherein the filter cover comprises a passageway extending from the filter inlet pipe to the cavity, the passageway comprising at least one baffle.
2. The respiratory therapy system of claim 1 , wherein the ultrasonic sensor is configured to measure a concentration of at least one gas flowing in the gas passageway downstream of the flow mixer.
3. The respiratory therapy system of claim 1 , wherein the flow mixer is configured to substantially uniformly mix the first gas and the second gas in a vertical direction and/or a horizontal direction.
4. The respiratory therapy system of claim 1 , wherein a local oxygen fraction in a gas flow formed by mixing of the first gas and the second gas in a region of the ultrasonic sensor is within ±10% O 2 of a bulk oxygen fraction of the gas flow.
5. The respiratory therapy system of claim 1 , further comprising a diffuser positioned between the flow mixer and the ultrasonic sensor.
6. The respiratory therapy system of claim 1 , wherein the filter cover comprises prongs extending rearwardly from a front wall of the filter cover, wherein the prongs are configured to hold filter media in place and create the cavity between the filter cover and the filter media.
7. The respiratory therapy system of claim 6 , wherein the prongs are configured to push the filter media in fully.
8. The respiratory therapy system of claim 6 , wherein the prongs are configured to prevent the filter media from sagging.
9. The respiratory therapy system of claim 6 , wherein the cavity between the filter cover and the filter media is defined by the rearwardly extending prongs of the filter cover.
10. The respiratory therapy system of claim 1 , wherein the flow mixer comprises at least one baffle configured to induce the swirling flow regions.
11. The respiratory therapy system of claim 1 , wherein the flow mixer comprises a first baffle and a second baffle, wherein the first baffle is spaced apart from the second baffle.
12. The respiratory therapy system of claim 11 , wherein the first baffle extends in a downstream direction at a first angle offset from a horizontal plane and the second baffle extends in the downstream direction at a second angle offset from the horizontal plane.
13. The respiratory therapy system of claim 12 , wherein the first angle and the second angle are offset on opposing sides of the horizontal plane.
14. The respiratory therapy system of claim 11 , wherein the first baffle causes a gas flow through the flow mixer to move upwards and then sharply turn at a downstream edge of the first baffle.
15. The respiratory therapy system of claim 14 , wherein the second baffle causes the gas flow through the flow mixer to move downwards and then sharply turn at a downstream edge of the second baffle.
16. The respiratory therapy system of claim 11 , wherein the flow mixer comprises a pinch defined between a downstream edge of the first baffle and an upstream face of the second baffle.
17. The respiratory therapy system of claim 16 , wherein a length of the pinch is less than a height of the first baffle.
18. The respiratory therapy system of claim 16 , wherein the flow mixer comprises a second pinch defined between a downstream edge of the second baffle and a bottom wall of the flow mixer.
19. The respiratory therapy system of claim 11 , wherein the first baffle extends in a downstream direction at a first angle offset from a first vertical plane and the second baffle extends in the downstream direction at a second angle offset from a second vertical plane.
20. The respiratory therapy system of claim 19 , wherein the first angle and the second angle are the same.
21. The respiratory therapy system of claim 19 , wherein the first angle and the second angle are different.
22. The respiratory therapy system of claim 1 , wherein the passageway is a curved passageway.
23. The respiratory therapy system of claim 1 , wherein the at least one baffle is a pair of baffles.