IP Library Granted Patent US 8,308,339
Granted Patent B2
US 8,308,339 · App. 13/363,327 · Granted Nov 13, 2012

Method and means for precision mixing

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Quick Facts
Patent No.
US 8,308,339
App. No.
13/363,327
Granted
Nov 13, 2012
Kind
B2
Abstract

An extremely dilute mixture of a liquid in a flowing fluid stream is prepared by forming tiny droplets of the liquid and injecting the droplets individually into the flowing stream. The rate at which liquid is added to the flowing stream is determined by the number of droplet forming units that are provided and upon the frequency with which the units are activated, allowing a precise digital control of the concentration of the liquid in the flowing fluid stream.

Claims (57)

1. A method for introducing a liquid into a fluid stream comprising:

passing a fluid stream through a confined space connected at a first location to a fluid source and connected at a second location to use point;

injecting a first liquid into the fluid stream within the confined space before the fluid stream reaches the use point, wherein injecting the first liquid into the fluid stream further includes electrically controlling a first droplet forming device to:

generate a pressure wave,

deform a transducer,

form a liquid droplet at an exit port of the first droplet forming device; and

cause the liquid droplet to be expelled into the fluid stream; and

sensing a characteristic of the fluid stream before the fluid stream reaches the use point;

signaling the first droplet forming device in accordance with the sensed characteristic; and

varying at least one of a size and frequency of expulsion of the liquid droplet in response to the signaling.

2. A method for introducing a liquid into a fluid stream comprising:

passing a fluid stream through a confined space connected at a first location to a fluid source and connected at a second location to use point;

injecting a first liquid into the fluid stream within the confined space before the fluid stream reaches the use point, wherein injecting the first liquid into the fluid stream further includes electrically controlling a first droplet forming device to:

generate a pressure wave,

deform a transducer,

form a liquid droplet at an exit port of the first droplet forming device; and

cause the liquid droplet to be expelled into the fluid stream

injecting a second liquid into the fluid stream within the confined space before the fluid stream reaches the use point, wherein

injecting the second liquid into the fluid stream further includes electrically controlling a second droplet forming device to:

generate a pressure wave,

deform a transducer,

form a liquid droplet at an exit port of the second droplet forming device, and

expel the liquid droplet into the fluid stream; and

sensing a characteristic of the fluid stream before the fluid stream reaches the use point;

signaling at least one of the first droplet forming device and the second droplet forming device in accordance with the sensed characteristic; and

varying at least one of a size and frequency of expulsion of the liquid droplet in response to the signaling.

3. A method for introducing a liquid into a fluid stream comprising:

passing a fluid stream through a confined space connected at a first location to a fluid source and connected at a second location to use point;

injecting a first liquid into the fluid stream within the confined space before the fluid stream reaches the use point, wherein injecting the first liquid into the fluid stream further includes electrically controlling a first droplet forming device to:

generate a pressure wave,

deform a transducer,

form a liquid droplet at an exit port of the first droplet forming device; and

cause the liquid droplet to be expelled into the fluid stream

injecting a second liquid into the fluid stream within the confined space before the fluid stream reaches the use point, wherein

injecting the second liquid into the fluid stream further includes electrically controlling a second droplet forming device to:

apply a current pulse to a resistance heater,

cause the temperature in a liquid located within the second droplet forming device to rise,

form a vapor bubble in the liquid, and

expel a liquid droplet into the fluid stream from an exit port of the second droplet forming device; and

sensing a characteristic of the fluid stream before the fluid stream reaches the use point;

signaling at least one of the first droplet forming device and the second droplet forming device in accordance with the sensed characteristic; and

varying at least one of a size and frequency of expulsion of the liquid droplet in response to the signaling.

4. A method for introducing a liquid into a fluid stream comprising:

passing a fluid stream through a confined space connected at a first location to a fluid source and connected at a second location to use point;

injecting a first liquid into the fluid stream within the confined space before the fluid stream reaches the use point, wherein injecting the first liquid into the fluid stream further includes electrically controlling a first droplet forming device to:

apply a current pulse to a resistance heater,

cause the temperature in a liquid located within the second droplet forming device to rise, form a vapor bubble in the liquid, and

expel a liquid droplet into the fluid stream from an exit port of the first droplet forming device;

injecting a second liquid into the fluid stream within the confined space before the fluid stream reaches the use point, wherein injecting the second liquid into the fluid stream further includes electrically controlling a second droplet forming device to:

apply a current pulse to a resistance heater,

cause the temperature in a liquid located within the second droplet forming device to rise, form a vapor bubble in the liquid, and

expel a liquid droplet into the fluid stream from an exit port of the second droplet forming device; and

sensing a characteristic of the fluid stream before the fluid stream reaches the use point;

signaling at least one of the first droplet forming device and the second droplet forming device in accordance with the sensed characteristic; and

varying at least one of a size and frequency of expulsion of the liquid droplet in response to the signaling.

5. The method in accordance with claims 1 , 2 , 3 , and 4 , further comprising detecting at least one characteristic of the fluid stream at the use point.

6. The method in accordance with claims 1 , 2 , 3 , and 4 , wherein the expelled liquid droplet reacts with a component of the fluid stream resulting in a change in the chemical composition thereof.

Assignments (7)
RELEASE OF SECURITY INTEREST Recorded Jan 17, 2020
From: CITIBANK, N.A., AS COLLATERAL AGENT
To: LEIDOS, INC.
Reel/Frame 051632/0742 →
RELEASE OF SECURITY INTEREST Recorded Jan 17, 2020
From: CITIBANK, N.A., AS COLLATERAL AGENT
To: LEIDOS, INC.
Reel/Frame 051632/0819 →
SECURITY INTEREST Recorded Aug 25, 2016
From: LEIDOS, INC.
To: CITIBANK, N.A.
Reel/Frame 039809/0801 →
SECURITY INTEREST Recorded Aug 25, 2016
From: LEIDOS, INC.
To: CITIBANK, N.A.
Reel/Frame 039818/0272 →
CHANGE OF NAME Recorded Apr 16, 2014
From: SCIENCE APPLICATIONS INTERNATIONAL CORPORATION
To: LEIDOS, INC.
Reel/Frame 032695/0453 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2012
From: KARPETSKY, TIMOTHY P.; BERENDS, JR., JOHN C.
To: EAI CORPORATION
Reel/Frame 027628/0800 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2012
From: EAI CORPORATION
To: SCIENCE APPLICATIONS INTERNATIONAL CORPORATION
Reel/Frame 027628/0803 →