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US20050112013A1 - Method and apparatus for reducing noise in a roots-type blower - Google Patents

Method and apparatus for reducing noise in a roots-type blower
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Publication number
US20050112013A1
US20050112013A1US10/985,528US98552804AUS2005112013A1US 20050112013 A1US20050112013 A1US 20050112013A1US 98552804 AUS98552804 AUS 98552804AUS 2005112013 A1US2005112013 A1US 2005112013A1
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US
United States
Prior art keywords
gas
outlet
rotor
flow channel
blower
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US10/985,528
Inventor
Douglas DeVries
Malcolm Williams
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Pulmonetic Systems Inc
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Pulmonetic Systems Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US10/912,747external-prioritypatent/US7188621B2/en
Application filed by Pulmonetic Systems IncfiledCriticalPulmonetic Systems Inc
Priority to US10/985,528priorityCriticalpatent/US20050112013A1/en
Assigned to PULMONETIC SYSTEMS INC.reassignmentPULMONETIC SYSTEMS INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: WILLIAMS, MALCOLM, DEVRIES, DOUGLAS F.
Publication of US20050112013A1publicationCriticalpatent/US20050112013A1/en
Priority to US12/975,308prioritypatent/US9126002B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A Roots-type blower comprises a housing defining a rotor chamber and an inlet and outlet to the rotor chamber. First and second rotors are mounted in the rotor chamber, each rotor defining a plurality of lobes, adjacent lobes and the housing cooperating to define gas transport chambers. The blower is configured so that a net flow rate of gas into a gas transport chamber is generally or approximately constant, whereby a change in gas pressure in the gas transport chamber is generally or approximately linear, as the gas transport chamber approaches the outlet. In one embodiment, this is accomplished by providing flow channels extending from the outlet towards the inlet, and from the inlet towards the outlet, corresponding to each rotor. The flow channels permit gas to flow from the high pressure outlet to a gas transport chamber and from the gas transport chamber to the low pressure inlet. The resulting amelioration of pressure spikes associated with flow back substantially reduces the operational noise level of the blower.

Description

Claims (70)

1. A noise reducing configuration for a Roots-type blower comprising:
a housing defining a rotor chamber, said rotor chamber comprising having an inlet and an outlet;
a first and a second rotor rotatably mounted in said chamber, each rotor defining a plurality of lobes, adjacent lobes of each rotor cooperating with said housing to define at one or more times gas transport chambers, said rotors configured to move gas from said inlet via said gas transport chamber to said outlet; and
at least one outlet gas flow channel extending from said outlet along an inner surface of said housing at said rotor chamber in a direction opposite a direction of rotation of said rotor, said at least one outlet gas flow channel configured to permit gas to flow from said outlet into a gas transport chamber as said lobes of said rotor rotate towards said outlet, said at least one outlet gas flow channel configured so that a pressure of said gas in said chamber as said chamber moves towards said outlet changes at an approximately linear rate.
10. A noise reducing configuration for a Roots-type blower comprising:
a housing defining a rotor chamber, said rotor chamber having an inlet and an outlet;
a first and a second rotor rotatably mounted in said chamber, each rotor defining a plurality of lobes, adjacent lobes of each rotor cooperating with said housing to define at one or more times gas transport chambers, said rotors configured to move gas from said inlet via said gas transport chamber to said outlet; and
at least one outlet gas flow channel extending from said outlet along an inner surface of said housing in a direction opposite a direction of rotation of said rotor, said at least one outlet gas flow channel configured to permit gas to flow from said outlet into a gas transport chamber as said lobes of said rotor rotate towards said outlet, said at least one outlet gas flow channel configured so that a gas flow rate from said outlet into said gas transport chamber is approximately constant.
19. A noise reducing configuration for a Roots-type blower comprising:
a housing defining a rotor chamber, said rotor chamber having an inlet and an outlet;
a first and a second rotor rotatably mounted in said chamber, each rotor defining a plurality of lobes, adjacent lobes of each rotor cooperating with said housing to define at one or more times gas transport chambers, said rotors configured to move gas from said inlet via said gas transport chambers to said outlet; and
at least one outlet gas flow channel extending from said outlet along an inner surface of said housing in a direction opposite to a direction of rotation of said rotor, said at least one outlet gas flow channel configured to permit gas to flow from said outlet into a gas transport chamber as said lobes of said rotor rotate towards said outlet, said at least one outlet gas flow channel defining a flow area which increases generally non-linearly towards the direction of said outlet.
25. A noise reducing configuration for a Roots-type blower comprising:
a housing defining a rotor chamber, said rotor chamber having an inlet and an outlet;
a first and a second rotor rotatably mounted in said chamber, each rotor defining a plurality of lobes, adjacent lobes of each rotor cooperating with said housing to define at one or more times gas transport chambers, said rotors configured to move gas from said inlet via said gas transport chambers to said outlet;
at least one outlet gas flow channel corresponding to said first rotor, said at least one outlet gas flow channel extending from said outlet along an inner surface of said housing in a direction opposite a direction of rotation of said first rotor, said at least one outlet gas flow channel configured to permit gas to flow from said outlet into a gas transport chamber between two lobes of said first rotor as said lobes of said first rotor rotate towards said outlet;
at least one outlet gas flow channel corresponding to said second rotor, said at least one outlet gas flow channel extending from said outlet along an inner surface of said housing in a direction opposite a direction of rotation of second first rotor, said at least one outlet gas flow channel configured to permit gas to flow from said outlet into a gas transport chamber between two lobes of said second rotor as said lobes of said second rotor rotate towards said outlet;
at least one inlet gas flow channel corresponding to said first rotor, said at least one inlet gas flow channel extending from said inlet along an inner surface of said housing at said rotor chamber in a direction of rotation of said first rotor, said at least one inlet gas flow channel configured to permit gas to flow from said gas transport chamber between two lobes of said first rotor back to said inlet as said lobes of said first rotor rotate towards said outlet; and
at least one inlet gas flow channel corresponding to said second rotor, said at least one inlet gas flow channel extending from said inlet along an inner surface of said housing at said rotor chamber in a direction of rotation of said second rotor, said at least one inlet gas flow channel configured to permit gas to flow from said gas transport chamber between two lobes of said second rotor back to said inlet as said lobes of said second rotor rotate towards said outlet.
35. A method for configuring a gas flow path for providing a flow of gas between a port of a Roots-type blower and a gas transport chamber formed between lobes of at least one rotor of said blower, comprising the steps of:
selecting a length for said flow path;
selecting a desired gas transport chamber function that defines desired values of a characteristic of gas in said gas transport chamber as a function of rotor position;
selecting an area function that defines a cross-sectional area of said flow path along said length of said flow path;
calculating estimated values of said characteristic of said gas in said gas transport chamber corresponding to said area function;
comparing said estimated values to said desired values;
repeating said steps of selecting an area function, calculating estimated values, and comparing said estimated values to said desired values until said estimated values are approximately equal to said desired values.
56. A method for configuring a gas flow path for providing a flow of gas between a port of a Roots-type blower and a gas transport chamber formed between lobes of at least one rotor of said blower, comprising the steps of:
selecting a length for said flow path;
selecting a desired gas transport chamber function that defines desired values of a characteristic of gas in said gas transport chamber as a function of rotor position;
selecting an initial incremental rotor position;
calculating an initial desired cross-sectional flow area corresponding to said gas transport chamber function at said initial incremental rotor position;
selecting a succeeding incremental rotor position;
calculating a succeeding desired cross-sectional flow area corresponding to said gas transport chamber function at said succeeding incremental rotor position;
repeating said steps of selecting a succeeding incremental rotor position and calculating a succeeding desired cross-sectional flow area for rotor positions traversing said length of said flow path.
US10/985,5282003-08-042004-11-10Method and apparatus for reducing noise in a roots-type blowerAbandonedUS20050112013A1 (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
US10/985,528US20050112013A1 (en)2003-08-042004-11-10Method and apparatus for reducing noise in a roots-type blower
US12/975,308US9126002B2 (en)2003-08-042010-12-21Mechanical ventilation system utilizing bias valve

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
US49242103P2003-08-042003-08-04
US10/912,747US7188621B2 (en)2003-08-042004-08-04Portable ventilator system
US10/985,528US20050112013A1 (en)2003-08-042004-11-10Method and apparatus for reducing noise in a roots-type blower

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US10/912,747Continuation-In-PartUS7188621B2 (en)2003-08-042004-08-04Portable ventilator system

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Publication NumberPublication Date
US20050112013A1true US20050112013A1 (en)2005-05-26

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US10/985,528AbandonedUS20050112013A1 (en)2003-08-042004-11-10Method and apparatus for reducing noise in a roots-type blower

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Cited By (36)

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US20050166921A1 (en)*2003-08-042005-08-04Pulmonetic Systems, Inc.Method and apparatus for attenuating compressor noise
US20060144396A1 (en)*2003-08-042006-07-06Devries Douglas FPortable ventilator system
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US20060249153A1 (en)*2003-08-042006-11-09Pulmonetic Systems, Inc.Mechanical ventilation system utilizing bias valve
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US8555881B2 (en)1997-03-142013-10-15Covidien LpVentilator breath display and graphic interface
US20130302201A1 (en)*2012-05-142013-11-14Richard WeatherleyGear Pump
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CN104689443A (en)*2015-03-242015-06-10湖南明康中锦医疗科技发展有限公司Noise-reduction air passage structure of respirator fan
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US9119925B2 (en)2009-12-042015-09-01Covidien LpQuick initiation of respiratory support via a ventilator user interface
USD745056S1 (en)*2012-06-042015-12-08Eaton CorporationBlower housing
US9262588B2 (en)2009-12-182016-02-16Covidien LpDisplay of respiratory data graphs on a ventilator graphical user interface
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US9950129B2 (en)2014-10-272018-04-24Covidien LpVentilation triggering using change-point detection
US9956371B2 (en)2015-03-242018-05-01Ventec Life Systems, Inc.Ventilator with integrated cough-assist
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US10362967B2 (en)2012-07-092019-07-30Covidien LpSystems and methods for missed breath detection and indication
US10773049B2 (en)2016-06-212020-09-15Ventec Life Systems, Inc.Cough-assist systems with humidifier bypass
US11191915B2 (en)2018-05-132021-12-07Ventec Life Systems, Inc.Portable medical ventilator system using portable oxygen concentrators
US11247015B2 (en)2015-03-242022-02-15Ventec Life Systems, Inc.Ventilator with integrated oxygen production
US11672934B2 (en)2020-05-122023-06-13Covidien LpRemote ventilator adjustment
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US7527053B2 (en)2003-08-042009-05-05Cardinal Health 203, Inc.Method and apparatus for attenuating compressor noise
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