GAS VALVE FOR VENTILATION, A CIRCUIT FOR A VENTILATION SYSTEM AND A METHOD FOR DETERMINING A RELEASING GAS FLOW
20220218939 · 2022-07-14
Inventors
- Christopher M. Varga (Laguna Hills, CA, US)
- Martin Björn HESS (Malans, CH)
- Matthias VAN DER STAAY (Obstalden, CH)
Cpc classification
A61M16/0003
HUMAN NECESSITIES
B01D46/4236
PERFORMING OPERATIONS; TRANSPORTING
International classification
A61M16/20
HUMAN NECESSITIES
A61M16/00
HUMAN NECESSITIES
A61M16/08
HUMAN NECESSITIES
B01D46/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A gas valve (11) for ventilation which comprises a main body (12) having a first gas chamber (13), a second gas chamber (15) and at least an inlet duct (14) for supplying a gas to the first gas chamber (13). The gas valve (11) further comprises a proportional valve (24) for temporally sealing the first gas chamber (13) from the second gas chamber (15). The second gas chamber (15) comprises at least a second passage opening (22) for releasing the gas from the second gas chamber (15) and the second gas chamber (15) comprises a port (30) for connecting a pressure measurement apparatus for measuring the gas pressure in the second gas chamber (15). A circuit with a ventilation limb which comprises a gas valve (11) and a method for determining a releasing gas flow of a gas valve are also disclosed.
Claims
1-15. (canceled)
16. A pressure release valve for ventilation comprising: a main body having a first gas chamber, a second gas chamber, at least an inlet duct for supplying a gas to the first gas chamber and an outlet duct for releasing the gas from the first gas chamber, whereby said outlet duct and said inlet duct form said first gas chamber, wherein the first gas chamber and the second gas chamber are connected at least by a first passage opening, a proportional valve for temporally sealing the first gas chamber from the second gas chamber, while the second gas chamber comprises at least a second passage opening for releasing the gas from the second gas chamber, and the second gas chamber comprises a port for connecting a pressure measurement apparatus for measuring the gas pressure in the second gas chamber.
17. The pressure release valve according to claim 16, wherein the first gas chamber is at least partially surrounded by the second gas chamber.
18. The pressure release valve according to claim 16, wherein the first passage opening comprises a smaller cross-sectional area, compared to a cross-sectional area of the second passage opening, while a ratio of the cross-sectional area of the first passage opening and the cross-sectional area of the second passage opening is between 0.3 and 0.99.
19. The pressure release valve according to claim 16, wherein an intermediate chamber is arranged between the first gas chamber and the second gas chamber, while the intermediate chamber comprises the first passage opening and a third passage opening.
20. The pressure release valve according to claim 19, wherein the first passage opening comprises a larger cross sectional area compared to the third passage opening, while a ratio of a cross-sectional area of the third passage opening and the cross-sectional area of the second passage opening is between 0.3 and 0.99.
21. The pressure release valve according to claim 16, wherein the cross-sectional area of at least one of the first passage opening, the second passage opening and/or the third passage opening is controllable by an adjustment mechanism.
22. The pressure release valve according to claim 16, wherein at least the first passage opening and the second passage opening are vertically separated within the pressure release valve.
23. The pressure release valve according to claim 16, wherein the second gas chamber comprises at least a dividing element for stabilizing the pressure measurement in the second gas chamber.
24. The pressure release valve according to claim 23, wherein the dividing element comprises at least one of at least a rib and/or a filter.
25. The pressure release valve according to claim 16, wherein the proportional valve is a membrane and the pressure release valve comprises a membrane control mechanism for controlling the membrane operation configuration at least between an inactive operation and an active operation.
26. The pressure release valve according to claim 25, wherein the membrane comprises an operation stabilizer for reducing operation noise.
27. The pressure release valve according to claim 16, wherein the main body comprises a releasable lid for separating the proportional valve from the pressure release valve (11), while the lid comprises at least one of a membrane operation limitation and/or a membrane hinge stabilizer (32).
28. The pressure release valve according to claim 16, wherein the main body comprises a releasable cap for closing at least the second gas chamber.
29. The pressure release valve according to claim 28, wherein the cap comprises at least the second passage opening.
30. The pressure release valve according to claim 28, wherein the releasable cap comprises at least a protection means for at least partially protecting the second passage opening from clogging, and the releasable cap comprises at least a cap opening.
31. The pressure release valve according to claim 16, wherein the main body comprises a filter media for filtering the gas in the second gas chamber, while the filter media is assembled in one of the releasable cap, the inlet duct, or the second gas chamber.
32. A circuit for a ventilation system comprising a ventilation limb and at least a pressure release valve according to claim 16.
33. The circuit according to claim 32, wherein the pressure release valve is assembled at the distal end of the ventilation limb and/or a carbon dioxide measurement is connected to the circuit, while the carbon dioxide measurement is assembled in the pressure release valve, and is a colorimetric carbon dioxide indicator.
34. The circuit according to claim 32, wherein a leakage is assembled at a proximal end of the ventilation limb, while the leakage can either be a fixed leakage or an adjustable leakage.
35. A method for determining a releasing gas flow of the pressure release valve according to claim 16, said method comprises the at least the following steps: supplying the gas to the first gas chamber through said inlet duct in a first direction, while said proportional valve is in an active operation configuration; supplying the gas to the first gas chamber in a second direction through said outlet duct, while said proportional valve is in an inactive operation configuration; measuring the gas pressure in the second gas chamber with a pressure measurement apparatus; and determining a releasing gas flow based on said measured gas pressure in said second gas chamber.
Description
[0066] Further advantageous aspects of the invention are explained in the following by means of exemplary embodiments and the figures. In the drawings, it is shown in a schematic manner. Furthermore, a numeric counting within this application is just used to differ between said parts of said gas valve.
[0067]
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[0070]
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[0075]
[0076]
[0077] Said first gas chamber 13 and said second gas chamber 15 are arranged in said main body 12, while said first gas chamber 13 is at least partially surrounded by the second gas chamber 15. The compact arrangement supports the pressure measurement in the said second gas chamber 15 due to a short measurement path within said gas valve 11. This preferred embodiment of said gas valve 11 comprises said intermediate gas chamber 17, which is arranged between the first gas chamber 13 and the second gas chamber 15. Said intermediate gas chamber 17 comprises said first passage opening 19 and a third passage opening 20. The first passage opening 19 and the second passage opening 22 as well as the third passage opening 20 are vertically separated within the assembled gas valve 11.
[0078] The first passage opening 19 comprises a larger cross-section area compared to the cross-section area of the third passage opening 20. Said third passage opening 20 comprises a smaller cross-section area compared to the cross-section area of the second passage opening 22. The ratio of the cross-section area of the third passage opening 20 and the cross-section area of the second passage opening 22 is about 0.69, which leads to a stable valve characteristic and an optimized characteristic slope of the gas pressure characteristic during the gas pressure measurement.
[0079] In addition, said gas valve 11 comprises a releasable lid 31 and releasable cap 41 and therefore comprises three main parts (main body 12, lid 31 and cap 41), which can be separated from each other (see
[0080] In an alternative embodiment of said gas valve 11, said intermediate gas chamber can be omitted (not shown). The remaining parts of the above-mentioned gas valve 11 are unchanged. Such an embodiment of said gas valve comprises just one passage opening (as a first passage opening) for above-mentioned first passage opening and said third passage opening, which is arranged between a first gas chamber and a second gas chamber. The ratio of the cross-section area of first passage opening and the cross-section area of the second passage opening can be also 0.69.
[0081]
[0082] The gas valve 11 comprises a membrane control mechanism 28 for controlling the membrane operation configuration between an inactive operation and an active operation. Said membrane control mechanism 28 is a pneumatic mechanism comprising a pressure control port 29. Said pressure control port 29 can be connected to a control apparatus, like a ventilator apparatus, which controls the membrane operation configuration by pressurizing said membrane 25 from one side. Said pressure control port 29 can be connected to said control apparatus by a pressure pipe/tube (see
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[0084]
[0085] The gas valve 11 furthermore can comprise a filter media 50 for filtering the gas in the second gas chamber 15 within the main body 12. Said filter media 50 can be assembled in the releasable cap 41 (not shown). Alternatively, said filter media 50 is assembled in the inlet duct 14 of said main body 12.
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[0089] In addition, a further leakage 76 is placed at the proximal end 73 of the ventilation limb 71. Said proximal end 73 of the ventilation limb 71 is connected to a respiration mask 108.
[0090] During an inhalation process, an inhalation gas will pass the pressure release valve through said inlet duct 14 and outlet duct 16 and afterwards will reach via said ventilation limb 71 a patient. During an exhalation process, an exhalation gas will leave said ventilation limb 71 through said further leakage 76 and will not contaminate said pressure release valve. Nevertheless, part of said exhalation gas will pressurize the remaining gas in the ventilation limb 71 during said exhalation process, which is measured in the gas valve 11 for measuring said gas pressure and calculating said release gas flow in said second gas chamber 15.
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LIST OF REFERENCES
[0092] 11 gas valve
[0093] 12 main body of 13
[0094] 13 first gas chamber
[0095] 14 inlet duct
[0096] 15 second gas chamber
[0097] 16 outlet duct
[0098] 17 intermediate gas chamber
[0099] 19 first passage opening
[0100] 20 third passage opening
[0101] 22 second passage opening
[0102] 23 main gas flow through 15
[0103] 24 proportional valve
[0104] 25 membrane
[0105] 26 flexible hinges of 25
[0106] 27 operation stabilizer
[0107] 28 membrane control mechanism
[0108] 29 pressure control port
[0109] 30 port
[0110] 31 lid
[0111] 32 membrane hinge stabilizer
[0112] 33 membrane operation limitations
[0113] 37 dividing element
[0114] 38 rib
[0115] 39 filter
[0116] 41 cap
[0117] 45 protection means
[0118] 47 cap opening of 41
[0119] 50 filter media
[0120] 60 adjustment mechanism
[0121] 61 cap
[0122] 63 control opening
[0123] 67 cap openings of 61
[0124] 70 circuit
[0125] 71 ventilation limb
[0126] 72 distal end of 71
[0127] 73 proximal end 71
[0128] 75 carbon dioxide measurement
[0129] 76 leakage
[0130] 78 colorimetric carbon dioxide indicator
[0131] 80 assembly
[0132] 100 ventilation system
[0133] 101 ventilator apparatus
[0134] 102 pressure pipe/tubes
[0135] 103 pressure pipe/tubes
[0136] 105 pressure measurement apparatus
[0137] 108 respiration mask