WO1996041099A1 - Integral flash steam generator - Google Patents
Integral flash steam generator Download PDFInfo
- Publication number
- WO1996041099A1 WO1996041099A1 PCT/US1996/007815 US9607815W WO9641099A1 WO 1996041099 A1 WO1996041099 A1 WO 1996041099A1 US 9607815 W US9607815 W US 9607815W WO 9641099 A1 WO9641099 A1 WO 9641099A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- bore
- sterilizer
- heater
- fluid
- block
- Prior art date
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F22—STEAM GENERATION
- F22B—METHODS OF STEAM GENERATION; STEAM BOILERS
- F22B1/00—Methods of steam generation characterised by form of heating method
- F22B1/28—Methods of steam generation characterised by form of heating method in boilers heated electrically
- F22B1/288—Instantaneous electrical steam generators built-up from heat-exchange elements arranged within a confined chamber having heat-retaining walls
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61L—METHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
- A61L2/00—Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
- A61L2/02—Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using physical phenomena
- A61L2/04—Heat
- A61L2/06—Hot gas
- A61L2/07—Steam
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F22—STEAM GENERATION
- F22B—METHODS OF STEAM GENERATION; STEAM BOILERS
- F22B1/00—Methods of steam generation characterised by form of heating method
- F22B1/28—Methods of steam generation characterised by form of heating method in boilers heated electrically
- F22B1/284—Methods of steam generation characterised by form of heating method in boilers heated electrically with water in reservoirs
Definitions
- This invention relates generally to a steam generator that quickly provides steam to a device requiring steam under pressure and that is integral with, but external to, the device. More particularly this invention relates to a flash steam generator integrated into a medical device sterilizer but not disposed within the sterilizer chamber.
- This invention relates to a steam generator for use in conjunction with a device, such as a medical device steam sterilizer, that requires a supply of pressurized steam.
- a device such as a medical device steam sterilizer
- the generator and the device are integrated into a single unit so that the generator supplies steam directly to the portion of the device requiring the steam.
- the generator supplies steam directly to the sterilizer jacket or chamber.
- Certain types of devices such as steam sterilizers, require pressurized steam for their operation.
- Some of these devices create steam by boiling water inside a chamber within the device, such as a sterilizer chamber, using an immersion heater.
- An immersion heater essentially is a large heating element usually located over the bottom surface of the chamber.
- An immersion heater has several disadvantages, however.
- An immersion heater can be a relatively large piece of equipment. It works best when its wattage can be spread out over a large heating element surface area. This keeps the watt density low and extends the life of the heating element.
- This large heating element surface area requires a lot of space and greatly increases the size of the steam generator and of the overall device when the generator is within the device.
- An immersion heater also must have its heating element completely immersed in water.
- the large heating element thus requires a large volume of water -- a much larger volume of water than the sterilizer needs to complete a sterilization cycle.
- This large volume of water must be disposed of at the end of each pressure pulse during a sterilization cycle, including at the end the entire sterilization cycle.
- Unified plumbing codes require that the water be cooled in a heat exchanger or mixed with cooling water before disposing it down a building drain.
- a large volume of heated water requires a proportionately large amount of cooling water. Thus the disposal process consumes a substantial amount of water.
- an immersion heater used with a sterilizer increases the total length of the sterilization cycle because of the time required at the start of the cycle to bring the large volume of sterilizer chamber water up to boiling temperature to start generating steam.
- An immersion heater also is prone to several service and reliability problems. The heater is prone to leaks where the heating element passes through the wall of the sterilizer chamber. The overtemperature protection device for the heater also must be inside the chamber, immersed in water or steam, and, therefore, its connections also must pass through the chamber wall creating additional potential leakage points. In addition, scale or mineral deposits build up on the heating element surface, reducing the heat transfer efficiency and heater life.
- steam may be provided from a stand- alone boiler to the device requiring pressurized steam, such as a steam sterilizer.
- a stand-alone boiler is more costly than an immersion heater built into a device because it must be purchased as an entirely separate component from the device.
- a stand-alone boiler generally uses an immersion heater to produce steam, and, therefore, is prone to the same problems associated with that type of heater.
- the stand-alone boiler also requires time-consuming flushing procedures to clear mineral deposits that build up inside the boiler chamber.
- the present invention provides a flash steam generator that is integral with a medical device steam sterilizer or other device requiring pressurized steam. Thus, it is less costly than a stand-alone boiler.
- the steam generator of the present invention does not use an immersion heater to produce steam.
- the heating mechanism used in the present invention requires substantially less water, which decreases the sterilization cycle time and provides easier and more efficient water disposal.
- the heating mechanism of the present invention is not prone to leaks or the build up of scale or mineral deposits.
- the present invention is a flash steam generator to be used as an integral component of a steam sterilizer or other device requiring a supply of pressurized steam.
- the generator comprises a metal block having a first bore drilled lengthwise, preferably through the center. Surrounding the first bore are additional lengthwise bores in which heating elements are inserted.
- the generator is integral to the sterilizer piping and control systems. Water is supplied to the first bore from the sterilizer piping system, and electricity is supplied to the heating elements by the sterilizer power supply. The heating elements convert the electricity to heat, which transfers via the metal block to the first bore where the heat rapidly vaporizes the contained water in what is essentially a flash vaporization process.
- An overtemperature device protects the system should the heating elements be energized without sufficient water in the block.
- a safety valve exists between the block and the sterilizer chamber to protect the block and the chamber from overpressure conditions.
- the block and connected piping are properly insulated to prevent heat loss to the atmosphere and accidental injury to the sterilizer operator.
- FIG. 1 is a side view of the integral flash steam generator of the present invention, with partial cut-away views showing internal features.
- FIG. 2 is a bottom view of the generator shown in FIG. 1.
- FIG. 3 is a schematic drawing of the flash steam generator of the present invention integrated into a sterilizer system.
- the generator comprises a block of metal 11, preferably carbon steel, although other heat-transferring metals may be used.
- the metal block 11 is mounted on the side of a steam sterilizer.
- the precise shape and dimensions may very depending upon the sterilizer, and the block may be sized and shaped to fit any common steam sterilizer or to accommodate any common heating elements.
- the metal block is elongated into a rectangular prism and mounted vertically on the side of the sterilizer, although other shapes such as square blocks and cylinders may be used.
- the first bore is sized to receive a volume of water that is sufficiently small to be vaporized rapidly in what amounts to essentially a flash vaporization process.
- each heater bore 14 has a first bore end at the bottom of the metal block and a second bore end toward the top of the metal block.
- the heater bores 14 should extend at least substantially the entire length of the metal block, and preferably should extend through the entire metal block to permit easier access to the heater bores for maintenance purposes.
- the heater bores 14 are sized to receive a heating element 15. Electric cartridge heaters are particularly appropriate for use as the heating element in this device because they are commonly elongated and thin so that each heating element can be inserted into a heater bore and extend from the first bore end substantially to the second bore end.
- Figures 1 and 2 illustrate a preferred configuration of the heater bores 14, the electric cartridge heaters 15, and the first bore 12.
- the electric cartridge heaters are chosen to be thin enough so that the heater bores are narrow in comparison to the center bore. This ensures that there are a sufficient number of heating elements to create heat in an amount sufficient to vaporize the water contained in the first bore.
- Figure 2 depicts a preferred embodiment having four heater bores 14, each containing an electric cartridge heater 15 , surrounding the first bore 12 located in the center of the metal block.
- the electric cartridge heaters may be mounted within the heater bores using screw plates 20, although other mechanisms to mount the heaters known in the art may be used. Note that any number and arrangement of heater bores and electric cartridge heaters may be incorporated into the metal block so long as sufficient heat can be generated by the heaters to produce steam.
- the metal block 11 is fluidly connected to the sterilizer piping system 31,34.
- the metal block 11 comprises a bottom end having a first female NPT thread 16 extending downward from the first bore. This thread is a standard thread that will accept typical piping used with sterilizers.
- the first NPT thread connects the first bore to sterilizer piping 31 from which the first bore receives its supply of water.
- the metal block also comprises a top end having a second female NPT thread 17 extending upward from the first bore.
- the second NPT thread provides a fluid connection via piping 34 between the first bore 12 and the sterilization chamber 30, thereby permitting steam to be transferred from the generator water chamber to the sterilizer chamber for use during the sterilization cycle.
- each of the heating elements 15 is electrically connected to the sterilizer power supply by wires 18.
- the sterilizer power supply provides the electricity to the heating elements, which convert the electricity to heat for producing the steam.
- FIG. 3 is a schematic depicting how the steam generator 10 is used integrally with a steam sterilizer 30.
- Water is supplied from sterilizer piping 31 through the first female NPT thread 16 to the first bore of the generator.
- the amount of water transferred to the generator is controlled by a solenoid valve 32 operated by the sterilizer control system, and is sufficiently small enough to be vaporized in what is essentially a flash vaporization process.
- the sterilizer piping system 31 also contains a check valve 33 to prevent the backflow of water out of the steam generator.
- the sterilizer control system also is used to control the flow of electricity from the sterilizer power supply to the heating elements 15.
- the first bore 12 is injected with water 13 and the heating elements 15 are activated, heat transfers from the heating elements, through the metal block 11 to the first bore. The heat then flash vaporizes the water 13 located in the first bore 12 to produce steam. Then an additional amount of water is injected into the first bore and vaporized in the same manner.
- the process continues in this manner, producing more steam from the series of water injections.
- the pressure inside the first bore 12 increases.
- the steam is forced under pressure through the second female NPT thread 17, through a fluid pathway 34 connecting the generator 10 to the sterilization chamber 30, and into the sterilization chamber.
- the metal block 11 and the generator-to-chamber pathway are properly insulated to prevent heat loss to the atmosphere and human injury from inadvertent contact with the generator apparatus.
- the device also is equipped with two other safety features.
- An overtemperature device 19 is mounted on the metal block 11 and shuts down the heaters in the event the heaters are energized without sufficient water in the block.
- a safety release valve 35 is provided between the metal block 11 and the sterilization chamber 30 that can release excess pressure to protect the block and the chamber from overpressure conditions.
- Immersion heaters require that the heating element remain submerged in water at all times throughout the sterilization cycle. Due to the large surface area of immersion heaters, this requires substantially more water than that used in the series of water injections in the flash vaporization process of the present invention.
- the present invention therefore, reduces total sterilization cycle time by reducing the initial start-up time required to produce steam. In addition, only a minimal amount of hot water remains for disposal between pulses in a sterilization cycle and/or at the end of the cycle.
- unified plumbing codes require that any residual hot water be cooled in a heat exchanger or mixed with cooling water before disposing the water down a building drain. Because the present invention leaves only the smallest possible amount of residual hot water for disposal, less cooling water is required resulting in a substantial conservation of water.
- the integral flash steam generator provides other advantages over an immersion heater or stand-alone boiler.
- the heating elements of the integral flash steam generator have no element portions submerged in water or steam that provide potential points of leakage.
- the heating elements are not prone to the build-up of scale or mineral deposits as are immersion heater elements.
- the flash steam generator also provides the advantage of being integral with the sterilizer or other device.
- the generator receives its water from the sterilizer piping and operates under electronic control of the sterilizer control system. Thus it requires no additional piping or electronics to operate, making it less expensive to manufacture and install.
- the steam generator may be installed on the sterilizer at the manufacturing stage, or alternatively, provided as a sterilizer accessory to be retrofitted to the sterilizer as described above. While a certain preferred embodiment of this invention has been described, it is understood by those skilled in the art that many modifications are possible without departing from the principles of this invention as defined in the claims that follow.
Abstract
Description
Claims
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP50077197A JP3408544B2 (en) | 1995-06-07 | 1996-05-28 | Integrated flash steam generator |
AT96920531T ATE189299T1 (en) | 1995-06-07 | 1996-05-28 | INTEGRAL FAST STEAM GENERATOR |
DE69606408T DE69606408T2 (en) | 1995-06-07 | 1996-05-28 | INTEGRAL QUICK STEAM GENERATOR |
CA002223457A CA2223457C (en) | 1995-06-07 | 1996-05-28 | Integral flash steam generator |
EP96920531A EP0830543B1 (en) | 1995-06-07 | 1996-05-28 | Integral flash steam generator |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US08/485,736 | 1995-06-07 | ||
US08/485,736 US6094523A (en) | 1995-06-07 | 1995-06-07 | Integral flash steam generator |
Publications (1)
Publication Number | Publication Date |
---|---|
WO1996041099A1 true WO1996041099A1 (en) | 1996-12-19 |
Family
ID=23929264
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/US1996/007815 WO1996041099A1 (en) | 1995-06-07 | 1996-05-28 | Integral flash steam generator |
Country Status (8)
Country | Link |
---|---|
US (1) | US6094523A (en) |
EP (1) | EP0830543B1 (en) |
JP (2) | JP3408544B2 (en) |
AT (1) | ATE189299T1 (en) |
CA (1) | CA2223457C (en) |
DE (1) | DE69606408T2 (en) |
ES (1) | ES2144248T3 (en) |
WO (1) | WO1996041099A1 (en) |
Cited By (4)
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WO1998044956A2 (en) * | 1997-04-04 | 1998-10-15 | Steris Corporation | Steam delivery system for a decontamination apparatus |
WO1998045647A1 (en) * | 1997-04-04 | 1998-10-15 | Steris Corporation | Integral flash steam generator |
US5880438A (en) * | 1997-04-04 | 1999-03-09 | Steris Corporation | Steam sterilization apparatus and control system |
WO2006097062A2 (en) * | 2005-03-15 | 2006-09-21 | Rational Ag | Heatable housing, device for producing steam and cooking appliance |
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US7186374B2 (en) | 2001-02-16 | 2007-03-06 | Steris Inc. | Vapor phase decontamination of containers |
US7090808B2 (en) * | 2001-07-09 | 2006-08-15 | Pharmaceutical Systems, Inc. | Apparatus for testing sterilization methods and materials |
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US7803315B2 (en) | 2001-10-05 | 2010-09-28 | American Sterilizer Company | Decontamination of surfaces contaminated with prion-infected material with gaseous oxidizing agents |
US6967315B2 (en) * | 2002-06-12 | 2005-11-22 | Steris Inc. | Method for vaporizing a fluid using an electromagnetically responsive heating apparatus |
US6906296B2 (en) * | 2002-06-12 | 2005-06-14 | Steris Inc. | Electromagnetically responsive heating apparatus for vaporizer |
US6734405B2 (en) | 2002-06-12 | 2004-05-11 | Steris Inc. | Vaporizer using electrical induction to produce heat |
US7122149B2 (en) * | 2002-07-12 | 2006-10-17 | Applied Research Associates, Inc. | Apparatus and method for continuous depyrogenation and production of sterile water for injection |
US7071152B2 (en) * | 2003-05-30 | 2006-07-04 | Steris Inc. | Cleaning and decontamination formula for surfaces contaminated with prion-infected material |
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US7730568B2 (en) * | 2006-06-09 | 2010-06-08 | Whirlpool Corporation | Removal of scale and sludge in a steam generator of a fabric treatment appliance |
US7765628B2 (en) | 2006-06-09 | 2010-08-03 | Whirlpool Corporation | Steam washing machine operation method having a dual speed spin pre-wash |
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US7918109B2 (en) * | 2007-08-31 | 2011-04-05 | Whirlpool Corporation | Fabric Treatment appliance with steam generator having a variable thermal output |
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-
1996
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- 1996-05-28 DE DE69606408T patent/DE69606408T2/en not_active Expired - Lifetime
- 1996-05-28 WO PCT/US1996/007815 patent/WO1996041099A1/en active IP Right Grant
- 1996-05-28 EP EP96920531A patent/EP0830543B1/en not_active Expired - Lifetime
- 1996-05-28 CA CA002223457A patent/CA2223457C/en not_active Expired - Fee Related
- 1996-05-28 ES ES96920531T patent/ES2144248T3/en not_active Expired - Lifetime
- 1996-05-28 AT AT96920531T patent/ATE189299T1/en active
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2002
- 2002-12-25 JP JP2002375515A patent/JP2003225286A/en not_active Withdrawn
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EP0634606A2 (en) * | 1993-07-16 | 1995-01-18 | Max Friedheim | Superheated vapor generator and control system and method |
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5949958A (en) * | 1995-06-07 | 1999-09-07 | Steris Corporation | Integral flash steam generator |
WO1998044956A2 (en) * | 1997-04-04 | 1998-10-15 | Steris Corporation | Steam delivery system for a decontamination apparatus |
WO1998045647A1 (en) * | 1997-04-04 | 1998-10-15 | Steris Corporation | Integral flash steam generator |
WO1998044956A3 (en) * | 1997-04-04 | 1999-01-28 | Steris Corp | Steam delivery system for a decontamination apparatus |
US5880438A (en) * | 1997-04-04 | 1999-03-09 | Steris Corporation | Steam sterilization apparatus and control system |
US5906800A (en) * | 1997-04-04 | 1999-05-25 | Steris Corporation | Steam delivery system for a decontamination apparatus |
WO2006097062A2 (en) * | 2005-03-15 | 2006-09-21 | Rational Ag | Heatable housing, device for producing steam and cooking appliance |
WO2006097062A3 (en) * | 2005-03-15 | 2007-02-08 | Rational Ag | Heatable housing, device for producing steam and cooking appliance |
US7856170B2 (en) | 2005-03-15 | 2010-12-21 | Rational Ag | Device for producing steam and cooking appliance |
Also Published As
Publication number | Publication date |
---|---|
ES2144248T3 (en) | 2000-06-01 |
JPH10507120A (en) | 1998-07-14 |
EP0830543A1 (en) | 1998-03-25 |
JP3408544B2 (en) | 2003-05-19 |
JP2003225286A (en) | 2003-08-12 |
EP0830543B1 (en) | 2000-01-26 |
US6094523A (en) | 2000-07-25 |
DE69606408T2 (en) | 2000-08-10 |
CA2223457A1 (en) | 1996-12-19 |
CA2223457C (en) | 2005-08-30 |
DE69606408D1 (en) | 2000-03-02 |
ATE189299T1 (en) | 2000-02-15 |
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