Fine bubble generator

US11925908B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11925908-B2
Application numberUS-202217805514-A
CountryUS
Kind codeB2
Filing dateJun 6, 2022
Priority dateJun 7, 2021
Publication dateMar 12, 2024
Grant dateMar 12, 2024

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A fine bubble generator may include an inlet; an outlet; a first fine bubble generation portion; and a second fine bubble generation portion. The first fine bubble generation portion includes: a diameter-reducing flow path and a diameter-increasing flow path. The second fine bubble generation portion includes: a first swirling flow generation portion; and a second swirling flow generation portion. The first swirling flow generation portion includes: a first outer peripheral portion; and a plurality of first vanes disposed configured to generate a first swirling flow flowing in a first swirling direction with respect to a center axis of the second fine bubble generation portion. The second swirling flow generation portion includes: a second outer peripheral portion; and a plurality of second vanes configured to generate a second swirling flow flowing in a second swirling direction opposite to the first swirling direction with respect to the center axis.

First claim

Opening claim text (preview).

What is claimed is: 1. A fine bubble generator comprising: an inlet into which gas-dissolved water in which gas is dissolved flows; an outlet out of which the gas-dissolved water flows; a first fine bubble generation portion disposed between the inlet and the outlet; and a second fine bubble generation portion disposed between the first fine bubble generation portion and the outlet, wherein the first fine bubble generation portion comprises: a diameter-reducing flow path, wherein a flow path diameter of the diameter- reducing flow path reduces from upstream to downstream, and a diameter-increasing flow path disposed downstream of the diameter reducing flow path, wherein the flow path diameter of the diameter-increasing flow path increases from upstream to downstream, the second fine bubble generation portion comprises: a first swirling flow generation portion; and a second swirling flow generation portion disposed downstream of the first swirling flow generation portion, wherein the first swirling flow generation portion comprises: a first outer peripheral portion; and a plurality of first vanes disposed inside the first outer peripheral portion and configured to generate a first swirling flow flowing in a first swirling direction with respect to a center axis of the second fine bubble generation portion, wherein each of the plurality of first vanes has a first upstream-side protrusion protruding to an upstream side or a first downstream-side protrusion protruding to a downstream side or a combination thereof, wherein the first upstream- side protrusion is disposed on an upstream-side surface of the first vane, and wherein the first downstream-side protrusion is disposed on a downstream-side surface of the first vane, and wherein the second swirling flow generation portion comprises: a second outer peripheral portion; and a plurality of second vanes disposed inside the second outer peripheral portion and configured to generate a second swirling flow flowing in a second swirling direction opposite to the first swirling direction with respect to the center axis, wherein each of the plurality of second vanes has a second upstream-side protrusion protruding to the upstream side or a second downstream-side protrusion protruding to the downstream side or a combination thereof, wherein the second upstream-side protrusion is disposed on an upstream-side surface of the second vane, and wherein the second downstream-side protrusion is disposed on a downstream-side surface of the second vane. 2. The fine bubble generator according to claim 1 , wherein when the second fine bubble generation portion is seen along the center axis, each of the first vanes constitutes a pair with its corresponding one of the second vanes, an end of the corresponding second vane on a first swirling direction side is located more on the first swirling direction side than an end of the first vane on the first swirling direction side is, and an end of the corresponding second vane on a second swirling direction side is located more on the second swirling direction side than the first swirling direction-side end of the first vane is. 3. The fine bubble generator according to claim 1 , wherein each of the plurality of first vanes has the first upstream-side protrusion, and each of the plurality of second vanes has the second upstream-side protrusion. 4. The fine bubble generator according to claim 1 , wherein each of the plurality of first vanes has the first downstream-side protrusion, and each of the plurality of second vanes has the second downstream-side protrusion. 5. The fine bubble generator according to claim 1 , wherein each of the plurality of first vanes has the first upstream-side protrusion and the first downstream-side protrusion, and each of the plurality of second vanes has the second upstream-side protrusion and the second downstream-side protrusion. 6. A fine bubble generator comprising: an inlet into which gas-dissolved water in which gas is dissolved flows; an outlet out of which the gas-dissolved water flows; a first fine bubble generation portion disposed between the inlet and the outlet; and a second fine bubble generation portion disposed between the first fine bubble generation portion and the outlet, wherein the first fine bubble generation portion comprises: a diameter-reducing flow path, wherein a flow path diameter of the diameter- reducing flow path reduces from upstream to downstream, and a diameter-increasing flow path disposed downstream of the diameter reducing flow path, wherein the flow path diameter of the diameter-increasing flow path increases from upstream to downstream, the second fine bubble generation portion comprises: a first swirling flow generation portion; and a second swirling flow generation portion disposed downstream of the first swirling flow generation portion, the first swirling flow generation portion comprises: a first outer peripheral portion; and a plurality of first vanes disposed inside the first outer peripheral portion and configured to generate a first swirling flow flowing in a first swirling direction with respect to a center axis of the second fine bubble generation portion, and the second swirling flow generation portion comprises: a second outer peripheral portion; and a plurality of second vanes disposed inside the second outer peripheral portion and configured to generate a second swirling flow flowing in a second swirling direction opposite to the first swirling direction with respect to the center axis, wherein when the second fine bubble generation portion is seen along the center axis, each of the first vanes constitutes a pair with its corresponding one of the second vanes, an end of the corresponding second vane on a first swirling direction side is located more on the first swirling direction side than an end of the first vane on the first swirling direction side is, and an end of the corresponding second vane on a second swirling direction side is located more on the second swirling direction side than the first swirling direction side end of the first vane is, wherein each of upstream-side surfaces of the first vanes and upstream-side surfaces of the second vanes comprises an upstream-side protrusion protruding to an upstream side, each of downstream-side surfaces of the first vanes and downstream-side surfaces of the second vanes comprises a downstream-side protrusion protruding to a downstream side, and a distance between the center axis and each of the upstream-side protrusions is different from a distance between the center axis and each of the downstream-side protrusions. 7. The fine bubble generator according to claim 3 , wherein when the second fine bubble generation portion is seen along the center axis, each of the first vanes constitutes a pair with its corresponding one of the second vanes, an end of the corresponding second vane on a first swirling direction side is located more on the first swirling direction side than an end of the first vane on the first swirling direction side is, and an end of the corresponding second vane on a second swirling direction side is located more on the second swirling direction side than the first swirling direction-side end of the first vane is. 8. The fine bubble generator according to claim 4 , wherein when the second fine bubble generation portion is seen along the center axis, each of the first vanes constitutes a pair with its corresponding one of the second vanes, an end of the corresponding second vane on a first swirling direction side is located more on the first swirling direction side than an end of the first vane on the first swirling direction side is, and an end of the c

Assignees

Inventors

Classifications

  • B01F23/232Primary

    using flow-mixing means for introducing the gases, e.g. baffles · CPC title

  • for obtaining fine bubbles, i.e. bubbles with a size below 100 µm · CPC title

  • with additional mixing means other than vortex mixers, e.g. the vortex chamber being positioned in another mixing chamber · CPC title

  • using elements provided with a plurality of channels or using a plurality of tubes which can either be placed between common spaces or collectors · CPC title

  • Mixers with a converging-diverging cross-section · CPC title

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What does patent US11925908B2 cover?
A fine bubble generator may include an inlet; an outlet; a first fine bubble generation portion; and a second fine bubble generation portion. The first fine bubble generation portion includes: a diameter-reducing flow path and a diameter-increasing flow path. The second fine bubble generation portion includes: a first swirling flow generation portion; and a second swirling flow generation porti…
Who is the assignee on this patent?
Rinnai Kk
What technology area does this patent fall under?
Primary CPC classification B01F23/232. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Mar 12 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).