Patents by Inventor Marco Betting

Marco Betting has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20120024690
    Abstract: The invention relates to a cyclonic fluid separator comprising a throat portion (4) which is arranged between a converging fluid inlet section and a diverging fluid outlet section. The cyclonic fluid separator is arranged to facilitate a cyclonic flow through the converging fluid inlet section and the throat portion towards the diverging fluid outlet section in a downstream direction. The diverging fluid outlet section comprises an inner primary outlet conduit (7) for condensable depleted fluid components and an outer secondary outlet conduit (6) for condensable enriched fluid components. The cyclonic fluid separator comprises a further outer secondary outlet conduit (16). The outer secondary outlet conduit (6) is positioned on a first position along a central axis (I) of the cyclonic fluid separator and the further outer secondary outlet conduit (16) is positioned on a second position along the central axis (I) of the cyclonic fluid separator.
    Type: Application
    Filed: February 5, 2009
    Publication date: February 2, 2012
    Applicant: TWISTER B.V.
    Inventors: Marco Betting, Cornelis Antonie Tjeenk Willink, Robert Petrus van Bakel
  • Patent number: 8105422
    Abstract: The invention is a method and cyclonic separator for degassing a fluid mixture comprising a carrier liquid and gaseous or vaporizable components. In this method, the fluid mixture is accelerated in a throat section of a vortex tube such that the static pressure of the fluid mixture is decreased and vaporizable components evaporate into a gaseous phase and the fluid mixture flows as a substantially homogeneously dispersed gas-liquid mixture through the throat section; the accelerated fluid mixture is induced to swirl within a tubular mid section of the vortex tube such that the fluid mixture is separated by centrifugal forces into a degassed liquid fraction and a gas enriched fraction; the degassed liquid fraction is induced to flow into an annular liquid outlet conduit; and the gas enriched fraction is induced to flow into a central gas outlet conduit.
    Type: Grant
    Filed: June 27, 2007
    Date of Patent: January 31, 2012
    Assignee: Shell Oil Company
    Inventors: Marco Betting, Bart Prast, Helmar Van Santen, Cornelius Johannes Schellekens, Paulus Henricus Joannes Verbeek, Peter Mervyn Wilkinson
  • Publication number: 20120017638
    Abstract: The invention relates to a method of removing carbon dioxide from a fluid stream by a fluid separation assembly. The fluid separation assembly has a cyclonic fluid separator with a tubular throat portion arranged between a converging fluid inlet section and a diverging fluid outlet section and a swirl creating device. The separation vessel has a tubular section positioned on and in connection with a collecting tank. In the method, a fluid stream with carbon dioxide is provided. Subsequently, a swirling motion is imparted to the fluid stream so as to induce outward movement. The swirling fluid stream is then expanded such that components of carbon dioxide in a meta-stable state within the fluid stream are formed. Subsequently, the outward fluid stream with the components of carbon dioxide is extracted from the cyclonic fluid separator and provided as a mixture to the separation vessel.
    Type: Application
    Filed: December 18, 2009
    Publication date: January 26, 2012
    Applicant: TWISTER B.V.
    Inventors: Bart Prast, Jakob Arie Cornelis Langerak, Marco Betting, Cornelis Antonie Tjeenk Willink
  • Patent number: 8002878
    Abstract: A method and cyclonic separator are disclosed for degassing a fluid mixture comprising a carrier liquid and one or more gaseous and/or vaporizable components, wherein: —the fluid mixture is accelerated in a throat section (6) of a vortex tube (1) such that the static pressure of the fluid mixture is decreased and vaporizable components evaporate into a gaseous phase; —the accelerated fluid mixture is induced to swirl within the vortex tube such that the fluid mixture is separated by centrifugal forces into a degassed liquid fraction and a gas enriched fraction; —the degassed liquid fraction is induced to flow into a liquid outlet conduit (4) which is located at or near the outer circumference of the vortex tube (1); and—the gas enriched fraction is induced to flow into a gas outlet conduit (3) which is located at or near a central axis of the vortex tube (1).
    Type: Grant
    Filed: December 29, 2005
    Date of Patent: August 23, 2011
    Assignee: Shell Oil Company
    Inventors: Marco Betting, Gerhardus Willem Colenbrander, Michael Alvin Curole, Theodorus Cornelis Klaver, Eric Johannes Puik
  • Publication number: 20110185633
    Abstract: A refining system for refining a feed gas comprising hydrocarbons and hydrogen sulfide having a first concentration of hydrogen sulfide includes a first part for producing a stream of a first processed feed gas, a second part for producing a second stream of a second processed feed gas from the stream of the first processed feed gas using a separation process for H2S removal.
    Type: Application
    Filed: July 30, 2009
    Publication date: August 4, 2011
    Applicant: TWISTER B.V.
    Inventors: Marco Betting, Robert Petrus van Bakel, Cornelis Antonie Tjeenk Willink
  • Publication number: 20110146216
    Abstract: The invention relates to a cyclonic separator comprising a throat portion (4) which is arranged between a converging fluid inlet section and a diverging fluid outlet section, which is arranged to generate a swirling fluid flow in a downstream direction. The diverging fluid outlet section comprises outlets (6, 7) comprising an inner primary outlet (7) for condensables depleted fluid components and an outer secondary outlet for condensables enriched fluid components (6). The cyclonic separator comprises at least one volute diffuser (9, 9?) connected to one of the outlets (6, 7), the at least one volute diffuser (9, 9?) comprising a volute outlet duct (90, 90?) defined by a volute axis (I1), forming a spiral shape around the central axis (I). The outlet duct (90, 90?) comprising a vortex chamber 95, in use the vortex chamber 95 is provided to transform axial momentum of the swirling fluid flow with respect to the central axis (I) into tangential momentum with respect to the volute axis (I1).
    Type: Application
    Filed: August 1, 2008
    Publication date: June 23, 2011
    Applicant: TWISTER B.V.
    Inventors: Cornelis Antonie Tjeenk Willink, Marco Betting, Frederik Albert Lammers
  • Publication number: 20110123736
    Abstract: The invention pertains to a method for reducing gas hydrate adhesion to the interior surface of a conduit and associated equipment transporting or processing a fluid stream in oil and gas exploration and production, petroleum refining and/or petrochemistry, by providing the conduit interior surface with a coating layer exhibiting a static contact angle of the sessile water drop on the coating layer in air higher than 75° at ambient air conditions, as measured according to ASTM D7334-08, wherein said coating layer comprises diamond like carbon (DLC) comprising fractions of one or more components selected from the group consisting of silicon (Si), oxygen (O) and fluor (F).
    Type: Application
    Filed: May 27, 2009
    Publication date: May 26, 2011
    Applicant: TWISTER B.V.
    Inventors: Marco Betting, Cornelis Antonie Tjeenk Willink, Zvonimir Opic, Swie Siang Sebastiaan Kwee
  • Patent number: 7909912
    Abstract: A method is disclosed for enhancing condensation and separation in a fluid separator, wherein: —a fluid mixture is accelerated to a transonic or supersonic velocity in a throat section of a flow channel and thereby expanded and cooled such that at least some initially gaseous components become supersaturated and condense; —at least some condensed components are removed from the fluid mixture in the flow channel at a location downstream of the throat section; and —condensation of at least some supersaturated components is enhanced by illuminating the fluid mixture flowing through the flow channel by a radiation source (10), such as an Ultraviolet (UV) light source which excites and/or ionizes and induces mercury, water, aromatic hydrocarbons, carbon dioxide, hydrogen sulphide and/or other components to condense thereby forming condensation nuclei for other supersaturated fluid components.
    Type: Grant
    Filed: September 11, 2006
    Date of Patent: March 22, 2011
    Assignee: Twister B.V.
    Inventors: Cornelis Antonie Tjeenk Willink, Marco Betting, Jeroen Geldorp, Bart Prast
  • Publication number: 20110036122
    Abstract: A method for removing hydrogen sulphide (H2S) from a natural gas stream comprising methane (CH4) and H2S comprises:—cooling the natural gas stream in a heat exchanger assembly (13,16,18);—feeding at least part of the cooled natural gas stream through a feed conduit (19,21) into a cyclonic expansion and separation device (1) in which the cooled natural gas stream is expanded in a nozzle (4) and thereby further cooled to a temperature and pressure below the dew point of H2S and is separated by inducing the cooled natural gas stream to swirl in a tubular separation chamber (9) thereby inducing centrifugal forces to separate the cooled natural gas stream into a cooled low density fluid fraction, which is H2S depleted and methane enriched, and a cooled high density fluid fraction, which is H2S enriched and methane depleted;—feeding the cooled low density fluid fraction to a product gas conduit (33) which is connected to the heat exchanger assembly (14) for cooling the natural gas stream fed to the cyclonic expansi
    Type: Application
    Filed: June 27, 2008
    Publication date: February 17, 2011
    Applicant: TWISTER B.V.
    Inventors: Marco Betting, Cornelis Antonie Tjeenk Willink, Robert Petrus Van Bakel
  • Publication number: 20110016917
    Abstract: The invention relates to a method of removing carbon dioxide from a fluid stream by a fluid separation assembly. The fluid separation assembly has a cyclonic fluid separator with a tubular throat portion arranged between a converging fluid inlet section and a diverging fluid outlet section and a swirl creating device. The separation vessel has a tubular section positioned on and in connection with a collecting tank. In the method, a fluid stream with carbon dioxide is provided. Subsequently, a swirling motion is imparted to the fluid stream so as to induce outward movement. The swirling fluid stream is then expanded such that components of carbon dioxide in a meta-stable state within the fluid stream are formed. Subsequently, the outward fluid stream with the components of carbon dioxide is extracted from the cyclonic fluid separator and provided as a mixture to the separation vessel.
    Type: Application
    Filed: December 28, 2007
    Publication date: January 27, 2011
    Applicant: TWISTER B.V.
    Inventors: Bart Prast, Jakob Arie Cornelis Langerak, Marco Betting, Cornelis Antonie Tjeenk Willink
  • Publication number: 20100319533
    Abstract: A cyclonic fluid separator has a tubular housing (10) in which the fluid is accelerated and swirl imparting means (2) for inducing the fluid to swirl through an annular space between the housing and a central body (1) mounted within the housing (10), which central body (1) is provided with resonance abatement means, such as: tensioning means (20,22) which apply a tension load to an elongate tail section (8) of the central body (1) such that the natural frequency of the central body (1) is increased; vibration dampening means (31,50,60), which inhibit vibration of at least part (8) of the central body (1); solid particles (31) arranged in a segmented tubular tail section (8) of the central body (1), a viscous liquid (50) arranged between a tubular tail section (8) of the central body (1) and a tensioning rod (51), apertures (60) drilled radially through a tail section (8) of the central body (1); and/or a low pressure fluid (80) injected through a central opening (82) in the central body (1).
    Type: Application
    Filed: March 6, 2008
    Publication date: December 23, 2010
    Applicant: TWISTER B.V.
    Inventors: Marco Betting, Max Robert Anthony Ter Haar, Frederik Albert Lammers, Cornelis Antonie Tjeenk Willink
  • Publication number: 20100147021
    Abstract: The invention relates to fluid separator comprising: —a throat portion (4) which is arranged between a converging fluid inlet section and a diverging fluid outlet section, the diverging fluid outlet section comprising an inner primary outlet (7) for condensables depleted fluid components and an outer secondary outlet for condensables enriched fluid components (6); and —a central body (10) provided upstream of the throat portion (4) in the fluid inlet section, the central body (10) being arranged substantially coaxial to a central axis I of the fluid separator. The fluid separator is arranged to facilitate a main flow through the converging fluid inlet section, the throat portion towards the diverging fluid outlet section. The central body (10) comprises an outlet (13), directed towards the tubular throat portion (4) and is arranged to add a central flow towards the throat portion (4).
    Type: Application
    Filed: March 26, 2008
    Publication date: June 17, 2010
    Applicant: TWISTER B.V.
    Inventors: Marco Betting, Cornelis Antonie Tjeenk Willink, Bart Prast, Zvonimir Opic
  • Publication number: 20090205488
    Abstract: A method and cyclonic separator are disclosed for degassing a fluid mixture comprising a carrier liquid and gaseous and/or vaporizable components, wherein: the fluid mixture is accelerated in a throat section (6, 21) of a vortex tube (1, 20) such that the static pressure of the fluid mixture is decreased and vaporizable components evaporate into a gaseous phase and the fluid mixture flows as a substantially homogeneously dispersed gas-liquid mixture through the throat section; the accelerated fluid mixture is induced to swirl within a tubular mid section of the vortex tube such that the fluid mixture is separated by centrifugal forces into a degassed liquid fraction and a gas enriched fraction; the degassed liquid fraction is induced to flow into a annular liquid outlet conduit (4, 21); and the gas enriched fraction is induced to flow into a central gas outlet conduit (3, 24).
    Type: Application
    Filed: June 27, 2007
    Publication date: August 20, 2009
    Inventors: Marco Betting, Bart Prast, Helmar Van Santen, Cornelius Johannes Schellekens, Paulus Henricus Joannes Verbeek, Peter Mervyn Wilkinson
  • Patent number: 7494535
    Abstract: A cyclonic fluid separator for separating condensable, liquid and/or solid components from a fluid mixture includes an upstream fluid inlet section in which the fluid mixture is accelerated to a supersonic velocity to expand and cool the fluid mixture such that one or more condensable fluid components are liquefied and/or solidified; a downstream separation section in which condensables depleted and condensables enriched fluid fractions are separated and fed into separate outlets; and a midstream vortex generation section which includes a plurality of tilted wings of which the wing tips are located at relatively large mutual spacings and at a small spacing from the inner wall of the midstream vortex generation section such that during normal operation of the separator adjacent to the various wing tips widely spaced vortices of swirling fluid are generated in the fluid stream flowing through the housing, which vortices are still separated from each other at the entrance of the downstream separation section.
    Type: Grant
    Filed: September 2, 2003
    Date of Patent: February 24, 2009
    Assignee: Shell Oil Company
    Inventors: Marco Betting, Cornelis Antonie Tjeenk Willink
  • Publication number: 20090031756
    Abstract: A method for cooling a natural gas stream (CxHy) and separating the cooled gas stream into various fractions having different boiling points, such as methane, ethane, propane, butane and condensates, comprises: cooling the gas stream (1,2); and separating the cooled gas stream in an inlet separation tank (4); a fractionating column (7) in which a methane lean rich fluid fraction (CH4) is separated from a methane lean fluid fraction (C2+Hz); feeding at least part of the methane enriched fluid fraction from the inlet separation tank (4) into a cyclonic expansion and separation device (8), which preferably has an isentropic efficiency of expansion of at least 80%, such as a supersonic or transonic cyclone; and feeding the methane depleted fluid fraction from the cyclonic expansion and separation device (8) into the fractionating column (7) for further separation.
    Type: Application
    Filed: February 24, 2006
    Publication date: February 5, 2009
    Inventors: Marco Betting, Jacob Michiel Brouwer, Pascal van Eck, Cornelis Antonie Tjeenk Willink
  • Publication number: 20080289502
    Abstract: A method and cyclonic separator are disclosed for degassing a fluid mixture comprising a carrier liquid and one or more gaseous and/or vaporizable components, wherein: —the fluid mixture is accelerated in a throat section (6) of a vortex tube (1) such that the static pressure of the fluid mixture is decreased and vaporizable components evaporate into a gaseous phase; —the accelerated fluid mixture is induced to swirl within the vortex tube such that the fluid mixture is separated by centrifugal forces into a degassed liquid fraction and a gas enriched fraction; —the degassed liquid fraction is induced to flow into a liquid outlet conduit (4) which is located at or near the outer circumference of the vortex tube (1); and—the gas enriched fraction is induced to flow into a gas outlet conduit (3) which is located at or near a central axis of the vortex tube (1).
    Type: Application
    Filed: December 29, 2005
    Publication date: November 27, 2008
    Applicant: SHELL INTERNATIONALE RESEARCH MAATSCHAPPIJ B.V.
    Inventors: Marco Betting, Gerhardus Willem Colenbrander, Michael Alvin Curole, Theodorus Cornelis Klaver, Eric Johannes Puik
  • Publication number: 20080196582
    Abstract: A method is disclosed for enhancing condensation and separation in a fluid separator, wherein: —a fluid mixture is accelerated to a transonic or supersonic velocity in a throat section of a flow channel and thereby expanded and cooled such that at least some initially gaseous components become supersaturated and condense; —at least some condensed components are removed from the fluid mixture in the flow channel at a location downstream of the throat section; and —condensation of at least some supersaturated components is enhanced by illuminating the fluid mixture flowing through the flow channel by a radiation source (10), such as an Ultraviolet (UV) light source which excites and/or ionizes and induces mercury, water, aromatic hydrocarbons, carbon dioxide, hydrogen sulphide and/or other components to condense thereby forming condensation nuclei for other supersaturated fluid components.
    Type: Application
    Filed: September 11, 2006
    Publication date: August 21, 2008
    Applicant: Twister B.V.
    Inventors: Cornelis Antonie Tjeenk Willink, Marco Betting, Jeroen Geldorp, Bart Prast
  • Publication number: 20080173363
    Abstract: A Joule-Thompson or other throttling valve comprises an outlet channel (7) in which swirl imparting means (10) impose a swirling motion to the cooled fluid stream discharged by the valve, thereby inducing liquid droplets to swirl towards the outer periphery (7A) of the fluid outlet channel (7) and to coalesce into enlarged liquid droplets (17) which can be separated easily from a gaseous or other carrier fluid.
    Type: Application
    Filed: December 29, 2005
    Publication date: July 24, 2008
    Inventor: Marco Betting
  • Patent number: 7357825
    Abstract: A cyclonic fluid separator of the type comprising a tubular throat portion in which a fluid mixture is accelerated to a subsonic or supersonic speed and thereby expanded and cooled down so that condensable components condense and/or solidify and then swirl into a diverging fluid outlet section that comprises an outer secondary outlet for condensables enriched fluid components and an inner primary outlet for condensables depleted fluid components comprises swirl imparting vanes that protrude from a central body that extends through at least part of an inlet section of the separator, wherein the central body has, at a location upstream of the throat portion, a larger outer width (2Ro max) than the smallest inner width (2Rn min) of the throat portion.
    Type: Grant
    Filed: September 27, 2002
    Date of Patent: April 15, 2008
    Assignee: Shell Oil Company
    Inventors: Marco Betting, Theodoor Van Holten, Bart Prast
  • Patent number: 7318849
    Abstract: A cyclonic fluid separator for separating one or more condensable components, such as water, and/or solids, such as smoke or sand particles, from a fluid mixture has a tubular housing having a fluid inlet section in which the fluid mixture is accelerated to a supersonic velocity and thereby expanded and cooled such that condensable components condense and/or solidify, one or more wings for inducing the fluid mixture to swirl within a central section of the tubular housing, a fluid separation section in which a tubular vortex finder is movably arranged, a condensables enriched fluid outlet which is connected to an annular space surrounding the tapered tubular vortex finder and a condensables depleted fluid outlet which is connected to the interior of the tapered tubular vortex finder.
    Type: Grant
    Filed: April 29, 2003
    Date of Patent: January 15, 2008
    Assignee: Shell Oil Company
    Inventors: Marco Betting, Cornelis Antonie Tjeenk Willink