FLUID SYSTEM
20210270379 · 2021-09-02
Assignee
Inventors
- Michael Frydendal LARSSEN (Veksoe, DK)
- Per Kokholm SORENSEN (Virum, DK)
- Thorvaldur Oli BODVARSSON (Copenhagen S, DK)
- Boris VALNERT (Copenhagen V, DK)
Cpc classification
F16K99/0057
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01M8/1011
ELECTRICITY
H01M8/04201
ELECTRICITY
F16K15/147
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K99/0015
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E60/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
Disclosed is a fluid system comprising a first member and a membrane sheet. The first member having a first surface, a first fluid inlet and a first flow channel. The membrane sheet having a first side, a second side opposite to the first side and a first slit, wherein the first side of the membrane sheet is abutting the first surface of the first member, the first flow channel forming a fluid passage from the first fluid inlet towards the first slit. The fluid system is configured to allow said membrane sheet to deform and thereby open said first slit and enable a fluid in the first flow channel to flow through the first slit when the pressure at the first slit is higher on the first side of the membrane sheet than on the second side of the membrane sheet.
Claims
1. A fluid system comprising a first member and a membrane sheet, said first member having a first surface, a first fluid inlet and a first flow channel, said membrane sheet having a first side, a second side opposite to said first side and a first slit, wherein said first side of said membrane sheet is abutting said first surface of said first member, said first flow channel forming a fluid passage from said first fluid inlet towards said first slit, wherein said fluid system is configured to allow said membrane sheet to deform and thereby open said first slit and enable a fluid in said first flow channel to flow through said first slit when the pressure at said first slit is higher on the first side of the membrane sheet than on the second side of the membrane sheet; and wherein said fluid system is further configured to secure that said first slit is substantially closed when the pressure at said first slit is higher on the second side of the membrane sheet than on the first side of the membrane sheet.
2. A fluid system according to claim 1, wherein said first slit in a relaxed state abuts said first surface of said first member along at least 50%, 70%, 90% or 100% of its length.
3. A fluid system according to claim 1, wherein said fluid system further comprises a second member having a first surface, a second flow channel and a first fluid outlet, wherein said second side of said membrane sheet is abutting said first surface of said second member and said second flow channel is forming a fluid passage from said first slit to said first fluid outlet whereby said first fluid inlet of said first member is fluidly connected to said first fluid outlet of said second member via said first slit of said membrane sheet when the pressure at said first slit is higher on the first side of the membrane sheet than on the second side of the membrane sheet.
4. A fluid system according to claim 3, wherein said second member has a first cavity portion forming part of said second flow channel, said first slit being arranged at said first cavity portion of said second member allowing said membrane sheet to deform into said first cavity portion and thereby open said first slit when the pressure at said first slit is higher on the first side of the membrane sheet than on the second side of the membrane sheet.
5. A fluid system according to claim 1, wherein the first member further has a second fluid inlet and a third flow channel, said membrane sheet further has a second slit, said third flow channel forming a fluid passage from said second fluid inlet towards said second slit, wherein said fluid system is configured to allow said membrane sheet to deform and thereby open said second slit and enable a fluid in said third flow channel to flow through said second slit when the pressure at said second slit is higher on the first side of the membrane sheet than on the second side of the membrane sheet; and wherein said fluid system is further configured to secure that said second slit is substantially closed when the pressure at said second slit is higher on the second side of the membrane sheet than on the first side of the membrane sheet.
6. A fluid system according to claim 3, wherein said second member further has a fourth flow channel and a second fluid outlet, said fourth flow channel is forming a fluid passage from said second slit to said second fluid outlet whereby said second fluid inlet of said first member is fluidly connected to said second fluid outlet of said second member via said second slit of said membrane sheet when the pressure at said second slit is higher on the first side of the membrane sheet than on the second side of the membrane sheet.
7. A fluid system according to claim 6, wherein said second member has a second cavity portion forming part of said fourth flow channel, said second slit being arranged at said second cavity portion of said second member allowing said membrane sheet to deform into said second cavity portion and thereby open said second slit when the pressure at said second slit is higher on the first side of the membrane sheet than on the second side of the membrane sheet.
8. A fluid system according to claim 1, wherein said first member further has a third fluid outlet and a fifth flow channel, said first fluid inlet and said third fluid outlet being combined into a first inlet/outlet fluid connection port, said membrane sheet having a third slit, said fifth flow channel forming a fluid passage from said first inlet/outlet fluid connection port to said third slit, wherein said fluid system is configured to allow said membrane sheet to deform and thereby open said third slit and enable a fluid to flow through said third slit when the pressure at said third slit is higher on the second side of the membrane sheet than on the first side of the membrane sheet; and wherein said fluid system is further configured to secure that said third slit is substantially closed when the pressure at said third slit is higher on the first side of the membrane sheet than on the second side of the membrane sheet.
9. A fluid system according to claim 8, wherein said first member has a third cavity portion forming part of said fifth flow channel, said third slit being arranged at said third cavity portion of said first member allowing said membrane sheet to deform into said third cavity portion and thereby open said third slit when the pressure at said third slit is higher on the second side of the membrane sheet than on the first side of the membrane sheet.
10. A fluid system according to claim 3, wherein said second member has a sixth flow channel and a third fluid inlet, said sixth flow channel is forming a fluid passage from said third fluid inlet toward said third slit whereby said first inlet/outlet fluid connection port of said first member is fluidly connected to said third fluid inlet of said second member via said third slit of said membrane sheet when the pressure at said third slit is higher on the second side of the membrane sheet than on the first side of the membrane sheet.
11. A fluid system according to claim 8, wherein said first member further has a fourth fluid outlet and a seventh flow channel, said second fluid inlet and said fourth fluid outlet being combined into a second inlet/outlet fluid connection port, said membrane sheet having a fourth slit, said seventh flow channel forming a fluid passage from said second inlet/outlet fluid connection port to said fourth slit, wherein said fluid system is configured to allow said membrane sheet to deform and thereby open said fourth slit and enable a fluid in said seventh flow channel to flow through said fourth slit when the pressure at said fourth slit is higher on the second side of the membrane sheet than on the first side of the membrane sheet; and wherein said fluid system is further configured to secure that said fourth slit is substantially closed when the pressure at said fourth slit is higher on the first side of the membrane sheet than on the second side of the membrane sheet.
12. A fluid system according to claim 11, wherein said first member has a fourth cavity portion forming part of said seventh flow channel, said fourth slit being arranged at said fourth cavity portion of said first member allowing said membrane sheet to deform into said fourth cavity portion and thereby open said fourth slit when the pressure at said fourth slit is higher on the second side of the membrane sheet than on the first side of the membrane sheet.
13. A fluid system according to claim 3, wherein said second member has an eighth flow channel and a fourth fluid inlet, said first fluid outlet and said fourth fluid inlet being combined into a third inlet/outlet fluid connection port, said eighth flow channel is forming a fluid passage from said third inlet/outlet fluid connection port toward said fourth slit whereby said second inlet/outlet fluid connection port of said first member is fluidly connected to said third inlet/outlet fluid connection port via said fourth slit of said membrane sheet when the pressure at said fourth slit is higher on the second side of the membrane sheet than on the first side of the membrane sheet.
14. A fluid system according to claim 3, wherein the first surface of the first member and/or the second member comprise(s) a curved, convex portion in an area of a cavity portion of the opposing member.
15. A fluid system according to claim 14, wherein a slit of the membrane sheet is placed in a direction which is approximately coinciding with a radius of the curved, convex portion of the first surface of the first member and/or the second member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0045] The above and/or additional objects, features and advantages of the present invention, will be further elucidated by the following illustrative and non-limiting detailed description of embodiments of the present invention, with reference to the appended drawings, wherein:
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DETAILED DESCRIPTION
[0053]
[0054] The first member 101 has a first surface 110, a first fluid inlet 111 and a first flow channel 112. The membrane sheet 102 has a first side 121, a second side 122 opposite to said first side 121 and a first slit 123. The first side of the membrane sheet 121 is abutting the first surface of the first member 110 and the membrane sheet 102 is made of a resilient material. The first flow channel 112 forms a fluid passage from the first fluid inlet 111 towards the first slit 123. In this embodiment the first slit 123 is arranged with a distance to the first flow channel 112. The fluid system 100 is configured to allow the membrane sheet 102 to deform and thereby open the first slit 123 and enable a fluid in the first flow channel 112 to flow through the first slit 123 when the pressure at the first slit 123 is higher on the first side of the membrane sheet 121 than on the second side of the membrane sheet 122. The fluid system 100 is further configured to secure that the first slit 123 is substantially closed when the pressure at the first slit 123 is higher on the second side of the membrane sheet 122 than on the first side of the membrane sheet 121. The first flow channel 112 has a first part 113 that is closed (formed internally in the first member 101) and a second part 114 that is open. The second part 114 will however be closed by the membrane sheet, whereby pipe flow will be present in both the first part 113 and the second part 114.
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[0059] The fluid system 100 is configured to allow the membrane sheet 102 to deform into the first cavity portion 133 and thereby open the first slit 123 and enable a fluid to flow from the first inlet/outlet fluid connection port 111 to the third inlet/outlet fluid connection port 132 via the first slit 123 when the pressure at the first slit 123 is higher on the first side of the membrane sheet 121 than on the second side of the membrane sheet 122; and wherein the fluid system 100 is further configured to secure that the first slit 123 is substantially closed when the pressure at the first slit 123 is higher on the second side of the membrane sheet 122 than on the first side of the membrane sheet 121.
[0060] The fluid system 100 is further configured to allow the membrane sheet 102 to deform into the second cavity portion 139 and thereby open the second slit 124 and enable a fluid to flow from the second inlet/outlet fluid connection port 118 to the second fluid outlet 137 via the second slit 124 when the pressure at the second slit 124 is higher on the first side 121 of the membrane sheet 102 than on the second side 122 of the membrane sheet 102; and wherein the fluid system 100 is further configured to secure that the second slit 124 is substantially closed when the pressure at the second slit 124 is higher on the second side 122 of the membrane sheet 102 than on the first side 121 of the membrane sheet 102.
[0061] The fluid system 100 is further configured to allow the membrane sheet 102 to deform into the third cavity portion 150 and thereby open the third slit 125 and enable a fluid to flow from the third fluid inlet 138 to the first inlet/outlet fluid connection port 111 via the third slit 125 when the pressure at the third slit 125 is higher on the second side 122 of the membrane sheet 102 than on the first side 121 of the membrane sheet 102; and wherein the fluid system 100 is further configured to secure that the third slit 125 is substantially closed when the pressure at the third slit 125 is higher on the first side 121 of the membrane sheet 102 than on the second side 122 of the membrane sheet 102.
[0062] The fluid system 100 is further configured to allow the membrane sheet 102 to deform into the fourth cavity portion 151 and thereby open the fourth slit 126 and enable a fluid to flow from the third inlet/outlet fluid connection port 132 to the second inlet/outlet fluid connection port 118 via the fourth slit 126 when the pressure at the fourth slit 126 is higher on the second side 122 of the membrane sheet 102 than on the first side 121 of the membrane sheet 102; and wherein the fluid system 100 is further configured to secure that the fourth slit 126 is substantially closed when the pressure at the fourth slit 126 is higher on the first side 121 of the membrane sheet 102 than on the second side 122 of the membrane sheet 102.
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[0066] In the illustrated embodiments, the first member 101 and the second member 103 have different size, i.e. the first member 101 is larger than the second member 103. However, in other embodiments, the second member 103 may be equal to or larger than the first member 101.
[0067] Although some embodiments have been described and shown in detail, the invention is not restricted to them, but may also be embodied in other ways within the scope of the subject matter defined in the following claims. In particular, it is to be understood that other embodiments may be utilised and structural and functional modifications may be made without departing from the scope of the present invention.
[0068] In device claims enumerating several means, several of these means can be embodied by one and the same item of hardware. The mere fact that certain measures are recited in mutually different dependent claims or described in different embodiments does not indicate that a combination of these measures cannot be used to advantage.
[0069] It should be emphasized that the term “comprises/comprising” when used in this specification is taken to specify the presence of stated features, integers, steps or components but does not preclude the presence or addition of one or more other features, integers, steps, components or groups thereof.