Nozzle/venturi with pressure differentiating bypass

4885084
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Inventors

Doyle, Lorin G.

Application #

209828

Filed

Jun-22-1988

Published

Dec-5-1989

Current US Class

137/494
137/599.12
210/132
210/221.2
210/254
261/66
261/76
261/DIG39
261/DIG75

International Classes

C02F 001/74

Field of Search

210/132 210/202 210/205 210/221.2 210/253 210/254 210/257.2 210/420 210/722 210/758 210/DIG.13 210/188 55/226 55/421 137/494 137/599.1 251/82 261/42 261/43 261/76

Assignee

Flint & Walling, Inc. (Kendallville, IN)

Examiners

Fisher; Richard V.

Attorney, Agent or Firm

Zarins; Edgar A., Sutherland; Malcolm L.

US Patent References

4068681   Liquid proportionin...
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4129502   Liquid treatment pr...
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4246922   Fluid flow control a...
4301009   Water filter
4317731   Gas absorber
4420228   Method and appar...
4488571   Flow-control system...
4491551   Method and device...
4634560   Aspirator pump an...
4659463   System to remove c...
4722363   Additive injection s...
4776952   Regulated control v...
4784771   Method and appar...
4790944   Process and appar...
 

Referenced by:

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Citation

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Abstract
A nozzle/venturi with a bypass for controlling the pressure differential and therefore the amount of air which is entrained into the fluid stream. The nozzle/venturi assembly is utilized in a filtering system for removing contaminants from a water supply. The nozzle/venturi assembly includes a nozzle/venturi with a water inlet, an air inlet and an outlet passage and a bypass valve with an adjustable passageway to control the fluid flow through the bypass. The bypass valve includes a diaphragm which is effected by the downstream pressure resulting in an adjustment of the pressure differential and a spring biased seal valve to control the pressure which will open the bypass. The nozzle/venturi assembly provides efficient and precise control of the pressure differential to ensure that a constant amount of air is entrained into the fluid stream through the entire pump cycle.
 
Claims
I claim:

1. A system for mixing a controlled quantity of an additive fluid into a carrier fluid having a variable fluid flow rate and fluid pressure, said system having a main fluid inlet and a main fluid outlet, said system comprising:

a nozzle/venturi having a carrier fluid inlet, an additive fluid inlet and a fluid mixture outlet; and

a selectively adjustable pressure differentiating bypass valve having a fluid inlet and a fluid outlet, said bypass valve selectively adjustable to vary the fluid pressure necessary to open said bypass valve, said bypass valve including poppet valve means comprising a valve head selectively sealingly cooperating with a valve seat, said poppet valve means including adjustable means for biasing said valve head against said valve seat such that the fluid pressure of said fluid inlet must exceed the force of said biasing means to open said poppet valve means permitting fluid flow through said bypass valve;



Description
BACKGROUND OF THE INVENTION

I. Field of the Invention

This invention relates to a system for removing contaminants from a water supply and, in particular, to a nozzle/venturi assembly for use in such a system to precisely control and maintain the amount of air which is entrained into the fluid stream during the complete cycle of the water system.

II. Description of the Prior Art

Systems for removing impurities such as iron, sulphur and man-made contaminants from a water supply have been developed and refined over the years in order to provide a safe and palatable water supply. Generally, these systems include chlorination and filtration of the water to remove the contaminants. However, many contaminants must first be oxidized to permit removal through filtration. As a result, several of the past known systems employ means for entraining air into the water stream to facilitate removal of the contaminants.

Several of the past known filtering systems utilize venturi assemblies to entrain the air into the fluid stream. The simple nozzle/venturi works well where the pressure differential is stable and a constant fluid flow through the nozzle is maintained. However, any variations and the amount of entrained air may not be enough for removal of the contaminants or may be too much for efficient operation of the system. As a result, bypass means were added to the nozzle/venturi to more accurately control the water/air mixture. The bypass may form a segregated portion of the nozzle with the nozzle/venturi mounted parallel thereto. However, such systems do not provide efficient diversion since both the bypass and the nozzle/venturi are disposed within the same chamber. The bypass has also been restricted by a diaphragm to continuously vary the fluid flow through the bypass. However, such systems are dependent upon the elastic properties of the diaphragm and true control of the entrainment process is not provided. The amount of flow through the bypass necessary to open the diaphragm will always be the same and cannot be varied from system to system or as the differential pressure varies. Thus, simple and accurate means of controlling the differential pressure necessary to open the bypass passageway are needed to provide efficient removal of contaminants from a water supply.
 
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