Synthetic media pads for an evaporative cooler and method for evaporative cooling
US-2017276386-A1 · Sep 28, 2017 · US
US2021190339A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2021190339-A1 |
| Application number | US-201716334552-A |
| Country | US |
| Kind code | A1 |
| Filing date | Sep 22, 2017 |
| Priority date | Sep 23, 2016 |
| Publication date | Jun 24, 2021 |
| Grant date | — |
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A humidifier having a multiplicity of metallic flow plates and a multiplicity of water transfer membranes, in particular for humidifying process gas for an electrochemical system or for HVAC applications is described. The humidifier has a construction in which the metallic flow plates and the water transfer membranes are arranged such that in each case at most one of the single-layer flow plates is arranged between adjacent water transfer membranes of the stack; and at least one of the water transfer membranes is in each case accommodated in a sealing manner, in particular clamped in a sealing manner, between the mutually facing sealing lines of adjacent flow plates of the stack. The humidifier has lower production costs, greater efficiency and lower weight.
Opening claim text (preview).
1 - 23 . (canceled) 24 . A humidifier, in particular for humidifying process gas for an electrochemical system or for HVAC applications, which comprises a stack with a multitude of flow plates and with a multitude of water transfer membranes; wherein the flow plates are each formed of precisely one layer of a metal sheet, wherein at least one sealing bead which is formed as one part with the metal sheet and which forms at least one sealing line on the flat sides of the metal sheet which lie opposite one another is formed into the metal sheet, wherein the flow plates and the water transfer membranes are arranged in a manner such that at the most one of the single-layered flow plates is arranged between adjacent water transfer membranes of the stack; and wherein at least one of the water transfer membranes is sealingly received, in particular sealingly pressed between the sealing lines which face one another, of adjacent flow plates of the stack. 25 . The humidifier according to claim 24 , further comprising two end plates, between which the flow plate stack is arranged, with two stack termination plates which are arranged between the end plates and which terminate the stack to the end plates, and with a stack interior which comprises the flow plates which are arranged between the stack termination plates, wherein at least two of the flow plates of the stack interior, wherein each second one of the flow plates of the stack interior are structurally identical to one another, so that the stack interior comprises at the most two types of flow plates of a different construction type. 26 . The humidifier according to claim 25 , wherein all flow plates of the stack interior are structurally identical to one another. 27 . The humidifier according to claim 26 , wherein the first and the second flat side of the metal sheets of the structurally identical flow plates of the stack interior are each designed differently and wherein the structurally identical flow plates of the stack interior are arranged and aligned in a manner such that structurally identical flow plates of the stack interior which are adjacent to one another face one another with their first flat sides and with their second flat sides in an alternating manner. 28 . The humidifier according to claim 24 , wherein the flow plates are each designed in a manner such that the same sealing bead on a first flat side of the metal sheet forms a first sealing line and on a second flat side of the metal sheet forms at least one second sealing line, wherein a perpendicular projection of the first sealing line into a projection plane which is aligned parallel to the planar surface plane of the respective flow plate and a perpendicular projection of the second sealing line into the projection plane run in a manner such that the projection of the first sealing line encompasses the projection of the second sealing line or that the projection of the second sealing line encompasses the projection of the first sealing line, wherein the projections of the first and the second sealing line are distanced to one another in a continuous manner. 29 . The humidifier according to claim 28 , wherein the flow plates each comprise a symmetry axis with a two-fold symmetry and are designed in a manner such that the first sealing line of the flow plate is sealingly supportable on the first sealing line of a structurally identical first adjacent plate and that the second sealing line is sealingly supportable on the second sealing line of a structurally identical second adjacent plate. 30 . The humidifier according to claim 29 , wherein the flow plates each comprise a rectangular shape, by way of which two diagonals of the flow plate are defined, wherein the diagonals of the same flow plate intersect one another at an intersection point and wherein the symmetry axis of the respective flow plate runs through the intersection point. 31 . The humidifier according to claim 30 , wherein the flow plates are each designed in a manner such that the symmetry axis is aligned perpendicularly to the planar surface plane of the flow plate. 32 . The humidifier according to claim 31 , wherein the flow plates are each designed in a manner such that the symmetry axis and/or that a further symmetry axis of the flow plate with a two-fold symmetry is aligned parallel to the planar surface plane of this flow plate. 33 . The humidifier according to claim 24 , wherein the flow plates each comprise a flow field for guiding a gas on at least one of the flat sides of the metal sheet, wherein the flow field comprises channel structures for guiding the gas which are designed as one piece with the metal sheet and which are formed into the metal sheet. 34 . The humidifier according to claim 33 , wherein the flow plates each comprise flow fields on both flat sides of the metal sheet, wherein the metal sheet in the region of the flow fields comprises through-openings which create a fluid connection between the flow fields on the flat sides of the metal sheet which lie opposite one another. 35 . The humidifier according to claim 34 , wherein the flow plates are each designed in a manner such that the flow field and/or the flow fields is/are each encompassed by the sealing bead or by one of the sealing beads, for sealing off the flow fields and for sealing off the flow field respectively. 36 . The humidifier according to claim 35 , wherein the flow plates are each designed in a manner such that the metal sheet comprises through-openings for guiding a gas through the metal sheet, wherein the through-openings are encompassed by the sealing bead or by one of the sealing beads, for sealing the through-openings. 37 . The humidifier according to claim 36 , wherein the flow plates are each designed in a manner such that the sealing bead which encompasses the through openings and/or the sealing bead which encompasses the flow field comprise openings, wherein the openings create a fluid connection between the through-openings and the flow field. 38 . The humidifier according to claim 37 , wherein the flow plates are each designed in a manner such that the sealing beads which encompass the through-openings, on a side facing away from the respective through-opening comprise web-like continuations for supporting a water transfer membrane or a supporting medium. 39 . The humidifier according to claim 24 , wherein the flow plates are each designed in a manner such that the sealing bead or the sealing beads comprises or comprise a bead roof and two bead feet which are formed on both sides of the bead roof, wherein the two bead feet form two first sealing lines on the first flat side of the metal sheet and wherein the bead roof forms the at least one second sealing line on the second flat side of the metal sheet. 40 . The humidifier according to claim 24 , wherein the flow plates are each designed such that the sheet metal is formed from stainless steel. 41 . The humidifier according to claim 24 , wherein the flow plates are each designed in a manner such that a sheet thickness of the metal sheet is at the most 200 μm. 42 . The humidifier according to claim 24 , wherein the flow plates are designed and arranged in a manner such that the through-openings of the flow plates of the stack are arranged in an aligned manner and form conduits which extend through the stack in the stack direction for guiding gas to be humidified, gas to be dehumidified, humidified gas and dehumidified gas, wherein the conduits are each in fluid connection with a gas
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