Patents by Inventor Rafael Olavarria Rodríguez-Arango

Rafael Olavarria Rodríguez-Arango 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: 20160215695
    Abstract: Hybrid plant with a combined solar-gas cycle and operating method with two circuits, one air circuit and one steam circuit, the air circuit having a gas turbine with an intercooler with a natural gas supply, and the steam circuit having a steam turbine and storage systems. The steam circuit can have steam or salt solar receiver. Said plant can work more reliably by reducing the working temperature of the air in the receiver.
    Type: Application
    Filed: December 27, 2013
    Publication date: July 28, 2016
    Inventors: Juan Pablo Nunez Bootello, Rafael Olavarría Rodríguez Arango, Francisco Martín De Oliva Ferraro, Manuel Martín Sánchez, José Barragán Jiménez, Sonia Fereres Rapoport, Román Korzynietz, Antonio Esteban Germendia
  • Patent number: 9151518
    Abstract: Solar concentrator plant using natural-draught tower technology, in which the tower is, in turn, used as cooling system. The tower houses saturated or superheated steam receivers in cavities with different orientations, with adaptive dynamic control of the heliostat field in order to direct said receivers towards different focusing points, for the production of electricity, process heat or solar fuels or for use in thermochemical processes.
    Type: Grant
    Filed: June 2, 2010
    Date of Patent: October 6, 2015
    Assignee: Abengoa Solar New Technologies, S.A.
    Inventors: Rafael Olavarría Rodríguez-Arango, Elena Garcia Ramírez, José Barragan Jiménez, Raúl Navio Gilaberte, Lucía Serrano Gallar
  • Publication number: 20150204315
    Abstract: Method of operating a solar thermoelectric power plant that allows operation of high-, medium- and low-pressure superheating turbines with both superheated steam and saturated steam. The plant includes energy storage in high-pressure liquid tanks. The method described allows the direct introduction of saturated steam into a superheated steam turbine. This steam may receive an intermediate reheating between the high-pressure turbine and the low- and medium-pressure turbines to achieve conditions of superheated steam. The mode of operation proposed in the invention facilitates the operation of the plant in periods without sunshine (during transient periods, such as passing clouds or night time) or during discharge of accumulators (saturated liquid tanks at high-pressure).
    Type: Application
    Filed: July 11, 2013
    Publication date: July 23, 2015
    Inventors: Rafael Olavarría Rodríguez-Arango, José Maria Méndez Marcos, Maite Diago López
  • Patent number: 9086058
    Abstract: Method for the natural-draught cooling of a high-concentration thermoelectric solar plant that includes a central receiver or tower with a heliostat field, wherein the tower is used as a natural-draught cooling tower. The steam originating from the turbine will be made to circulate through a series of condensers located at the base of the tower, where said condensers condense the steam therein and discharge the condensation heat to the atmosphere. The fluid responsible for this heat exchange is the air at ambient temperature at the base of the tower. Once condensed, the steam is pumped back towards the receiver so that it can be re-used as a heat-transfer fluid. The cooling air travels up through the tower and exits through the highest part thereof. The plant can be used to reduce not only its own electricity consumption, but also water consumption.
    Type: Grant
    Filed: June 18, 2010
    Date of Patent: July 21, 2015
    Assignee: Abengoa Solar New Technologies, S.A.
    Inventors: Rafael Olavarría Rodríguez-Arango, Elena García Ramírez, José Barragán Jiménez
  • Publication number: 20120132403
    Abstract: Method for the natural-draught cooling of a high-concentration thermoelectric solar plant that includes a central receiver or tower with a heliostat field, wherein the tower is used as a natural-draught cooling tower. The steam originating from the turbine will be made to circulate through a series of condensers located at the base of the tower, where said condensers condense the steam therein and discharge the condensation heat to the atmosphere. The fluid responsible for this heat exchange is the air at ambient temperature at the base of the tower. Once condensed, the steam is pumped back towards the receiver so that it can be re-used as a heat-transfer fluid. The cooling air travels up through the tower and exits through the highest part thereof. The plant can be used to reduce not only its own electricity consumption, but also water consumption.
    Type: Application
    Filed: June 18, 2010
    Publication date: May 31, 2012
    Applicant: ABENGOA SOLAR NEW TECHNOLOGIES, S.A.
    Inventors: Rafael Olavarria Rodríguez-Arango, Elena García Ramírez, Jose' Barragán Jiménez
  • Publication number: 20120131915
    Abstract: System and method for accumulating steam in tanks for solar use made up of two sets of Ruths tanks (1, 2), called base set and overheat set, identical to one another and each having a saturated steam inlet (3), steam injectors (10) installed inside the tank (1, 2), a steam outlet (4, 4?) with a valve (13) and drainage means (11). A heat exchanger (6) is installed between the two sets of tanks (1, 2). The method of storage consists of a tank loading stage and a tank discharging stage, the latter comprising two discharging phases, the first one from a maximum to an intermediate pressure and the second one from an intermediate to a low pressure.
    Type: Application
    Filed: June 18, 2010
    Publication date: May 31, 2012
    Applicant: ABENGOA SOLAR NEW TECHNOLOGIES, S.A.
    Inventors: Rafael Olavarria Rodríguez-Arango, Elena García Ramírez, José Barragán Jiménez
  • Publication number: 20120132193
    Abstract: Solar concentration plant placed on tower technology wherein the tower is used not only to equate the receiver devices at great height but also as a natural-draft cooling system. The tower is hollow and has a hyperboloid. structure that may exceed 200 m in height, accommodating devices for receiving saturated or superheated steam in cavities with different orientations. There is a dynamic control for adapting the heliostat field so that the heliostats can be focussed on different focal points for producing electricity, producing process heat, producing solar fuels or for application to thermochemical processes.
    Type: Application
    Filed: June 18, 2010
    Publication date: May 31, 2012
    Applicant: ABENGOA SOLAR NEW TECHNOLOGIES, S.A.
    Inventors: Rafael Olavarria Rodríguez-Arango, Elena García Ramírez, José Barragán Jiménez
  • Publication number: 20120125000
    Abstract: Solar concentrator plant using natural-draught tower technology, in which the tower is, in turn, used as cooling system. The tower houses saturated or superheated steam receivers in cavities with different orientations, with adaptive dynamic control of the heliostat field in order to direct said receivers towards different focusing points, for the production of electricity, process heat or solar fuels or for use in thermochemical processes.
    Type: Application
    Filed: June 2, 2010
    Publication date: May 24, 2012
    Applicant: ABENGOA SOLAR NEW TECHNOLOGIES, S.A.
    Inventors: Rafael Olavarría Rodríguez-Arango, Elena García Ramírez, Josê Barragán Jiménez, Raúl Navío Gilaberte, Lucía Serrano Gallar