ES2425800A2 - Make water with hot air (Machine-translation by Google Translate, not legally binding) - Google Patents

Make water with hot air (Machine-translation by Google Translate, not legally binding) Download PDF

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Publication number
ES2425800A2
ES2425800A2 ES201200443A ES201200443A ES2425800A2 ES 2425800 A2 ES2425800 A2 ES 2425800A2 ES 201200443 A ES201200443 A ES 201200443A ES 201200443 A ES201200443 A ES 201200443A ES 2425800 A2 ES2425800 A2 ES 2425800A2
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Prior art keywords
tube
hot air
water
air
circle
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ES201200443A
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Spanish (es)
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ES2425800B1 (en
ES2425800R1 (en
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Fco. Javier Porras Vila
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D5/00Condensation of vapours; Recovering volatile solvents by condensation
    • B01D5/0033Other features
    • B01D5/0048Barometric condensation
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Vaporization, Distillation, Condensation, Sublimation, And Cold Traps (AREA)
  • Overhead Projectors And Projection Screens (AREA)
  • Percussion Or Vibration Massage (AREA)

Abstract

The manufacture of water with hot air, is a system formed by a large tube (1), inside which there are propellers (3) driven by an electric motor (2) that is on the outside. In the narrowing of the tube (1), there is a circle (4) of grooves (5), which the hot air must pass through and, further on, a tube of rings (7) that forms a coil that will condense into droplets of water. Water that hot air that has come from the circle (4) of grooves (5). The outside of the tube (1) is surrounded by a solenoid (6) that is connected to a voltage socket, in the same way as the tube that conducts the air to this tube (1), it also has a solenoid (6) wound . (Machine-translation by Google Translate, not legally binding)

Description

FABRICARAGUA CONAIRE CALIENTE OBJETIVO DE LA INVENCIÓN MANUFACTURING CONAIRE CALIENTE OBJECTIVE OF THE INVENTION


El principal objetivo de la presente invención es el de conseguir fabricar el máximo de agua en el menor tiempo posible para que este Sistema se pueda instalar en un Avión, con 5 el que se puedan regar los campos de cultivo, y, si así fuese necesario, que pudiese atacar,

The main objective of the present invention is to be able to manufacture the maximum water in the shortest possible time so that this System can be installed in an Airplane, with which the cultivation fields can be irrigated, and, if necessary , that could attack,

también, las llamas de un fuego forestal. also, the flames of a forest fire.

ANTECEDENTES DE LA INVENCIÓN BACKGROUND OF THE INVENTION

Los desconozco. I don't know them.

DESCRIPCIÓN DE LA INVENCIÓN DESCRIPTION OF THE INVENTION

1 D La Fabricación de agua con aire caliente, se refiere a la producción de Agua Potable a
partir del Aire Caliente que se hace entrar en un gran Tubo (1), en cuyo interior hay unas
Hélices (3), -movidas por un Motor Eléctrico exterior al Tubo (1 )-, que empujan con Fuerza al Aire, hacia el estrechamiento anterior del Tubo (1), en donde ponemos un Círculo (4) de Ranuras (5) estrechas, por donde el Aire Caliente deberá pasar con mucha Presión, de
1 D The Manufacture of hot air water refers to the production of Potable Water a
from the Hot Air that is brought into a large Tube (1), inside which there are some
Propellers (3), -moved by an Electric Motor outside the Tube (1) -, which push with force to the Air, towards the previous narrowing of the Tube (1), where we put a Circle (4) of narrow Slots (5) , where the Hot Air must pass with a lot of Pressure, of

15 manera que se condensará y creará Gotas de Agua. Para calentar el Aire, podemos rodear el Tubo (1) con una Bobina (6) de cable grueso de cobre, por la que hacemos pasar una Corriente. Pero, como este Tubo (1) es corto, siempre podemos hacer lo mismo en el tubo que conduce el Aire hacia este Tubo (1) en donde están las Hélices (3). Por lo tanto, formamos un Serpentín con este Tubo de Conducción del Aire, y, lo rodeamos, entonces, 15 way it will condense and create Water Drops. To heat the Air, we can surround the Tube (1) with a Coil (6) of thick copper wire, through which we pass a Current. But, since this Tube (1) is short, we can always do the same in the tube that leads the Air to this Tube (1) where the Propellers (3) are. Therefore, we form a Coil with this Air Conduction Tube, and, we surround it, then,

' ..'..

2Ucontrn Solenoide (~, al que atravesará una Corriente Alterna de cierta Intensidad y Voltaje. 2Ucontrn Solenoid (~, to which an Alternating Current of certain Intensity and Voltage will pass through.

De esta manera, el Aire, cuando llegue a las Hélices (3), tendrá ya una Temperatura muy elevada que expandirá y separará los iones del Aire todo lo que pueda, con lo cual, cuando estos iones tengan que atravesar las estrechas Ranuras, no tendrán más remedio que condensarse mucho formando así Gotas de Agua. Esta condensación siempre será mayor In this way, the Air, when it reaches the Propellers (3), will already have a very high Temperature that will expand and separate the air ions as much as possible, which, when these ions have to cross the narrow Slots, will not They will have no choice but to condense a lot, thus forming Water Drops. This condensation will always be greater

25 que la que tendrían que realizar en el caso de que el Aire estuviese más Frío, y, el motivo es sencillo de comprender. Cuando los Átomos del Aire se han expandido y separado a causa de la Energía que les ha aportado el Calor añadido, esto se debe al aumento de las Fuerzas de Repulsión de sus cargas eléctricas respectivas, que hace que se alejen unos Átomos de los otros. Siendo aSÍ, cuando algo debe obligar a estos Átomos a que se junten, la Presión 25 than what they would have to do in the event that the air was colder, and, the reason is simple to understand. When the Atoms of the Air have expanded and separated because of the Energy that has given them the added Heat, this is due to the increase of the Repulsion Forces of their respective electric charges, which causes some Atoms to move away from the others. Being YES, when something must force these Atoms to come together, the Pressure

3I] que sientan en ese trance debe ser mucho mayor que en condiciones normales, -o sea, 3I] that they feel in that trance must be much greater than in normal conditions, that is,

cuando estos Átomos tienen menos Energía y están más Fríos-, con lo cual, si no tienen más remedio que juntarse, las' consecuencias de esta aproximación es que, cuando se juntan, lo hacen con mucha más Energía que cuando, antes de Calentarse, estaban más próximos entre sí, de manera que sus enlaces serán ahora mucho más sólidos, y, así, los Átomos de 5 Hidrógeno y los de Oxígeno, se fundirán mejor para formar Gotas de Agua. Si suponemos que, en un Avión muy grande, ponemos muchos Tubos (1) como éste, -con el Motor, las Hélices y el Círculo de Ranuras-, en cada segundo se podrán fabricar muchos litros de Agua, con lo cual, el Avión será útil para regar, desde el Aire, los campos de cultivo, y, también, para apagar los Incendios forestales. Este Sistema, también se puede utilizar sin 1V Avión alguno, y, servirá para fabricar Agua en cualquier lugar que haga falta. Tenemos la experiencia de los Músicos que soplan por la boquilla de sus Clarinetes, de sus Trompas y Trompetas. Cuando el Aire Caliente que sale de sus bocas atraviesa la estrecha Ranura del instrumento, esto siempre forma Gotas de Saliva que se deben limpiar poco después. La Potencia del soplido no se puede comparar con la Potencia que pueden desplegar unas when these Atoms have less Energy and are Cooler-, so, if they have no choice but to get together, the consequences of this approach is that, when they come together, they do so with much more Energy than when, before Warming up, they were closer to each other, so that their bonds will now be much more solid, and, thus, the Atoms of 5 Hydrogen and those of Oxygen, will melt better to form Water Drops. If we assume that, in a very large Airplane, we put many Tubes (1) like this, -with the Engine, the Propellers and the Slot Circle-, in each second many liters of Water can be manufactured, with which, the Airplane it will be useful to irrigate, from the Air, the cultivation fields, and, also, to extinguish the forest fires. This System can also be used without any 1V Aircraft, and it will be used to make Water in any place that is needed. We have the experience of the Musicians who blow through the mouthpiece of their Clarinets, their Trumpets and Trumpets. When the Hot Air coming out of their mouths goes through the narrow groove of the instrument, this always forms Saliva Drops that must be cleaned shortly after. The Blow Power cannot be compared with the Power that can be displayed by

15 Hélices (3) con un Motor (2) muy potente, de manera que, el Aire Caliente que entrará por las Ranuras (5) del Círculo (4) del extremo anterior del Tubo (1), producirá muchísimas más Gotas de Agua que las que puede producir un Músico mientras interpreta sus obras. 15 Propellers (3) with a very powerful Motor (2), so that the Hot Air that will enter through the Slots (5) of the Circle (4) of the front end of the Tube (1), will produce many more Water Drops than which a Musician can produce while performing his works.

Es más, como en el Círculo (4) habrá muchas Ranuras (5), se sumará así, la Potencia de las Hélices (3), con la cantidad de Ranuras (5), con lo cual, se producirá mucha Agua por 2DsegJndo. El último recurso aumenta aún más la Potencia del proceso y puede contribuir a formar aún más Gotas de Agua. Se trata de añadir un Tubo (7), en cada una de las salidas de las Ranuras (5), o sea, en la cara externa del Círculo (4).' Estos Tubos (7) tienen una forma similar a la de los Tubos que se ponen en el interior de las paredes de las casas, en cuyo interior se encierran los Cables de la Electricidad. Son, por tanto, unos Tubos (7) Moreover, as in Circle (4) there will be many Slots (5), so the Power of Propellers (3) will be added, with the amount of Slots (5), which will produce a lot of Water by 2DsecJndo. The last resource further increases the Power of the process and can help to form even more Water Drops. It is about adding a Tube (7), in each of the outputs of the Slots (5), that is, on the outer face of the Circle (4). ' These Tubes (7) have a similar shape to that of the Tubes that are placed inside the walls of the houses, inside which the Electricity Cables are enclosed. They are, therefore, Tubes (7)

25 que no son lisos, sino que parecen estar formados por pequeños Aros sucesivos. De esta manera, la cara interna de este Tubo con Aros (7), también parecerá tener dichos Aros, con lo que tampoco será liso en su interior. Este hecho es fundamental a la hora de conseguir que el Aire que lo recorre se reconcentre más y mejor formando mayores Gotas de Agua. 25 that are not smooth, but appear to consist of small successive hoops. In this way, the inner face of this Tube with Rings (7) will also appear to have said Rings, so it will not be smooth inside either. This fact is fundamental when it comes to ensuring that the Air that travels through it becomes more and better concentrated, forming greater Water Drops.

Para aumentar el efecto, no tenemos más que practicar algunas espiras en este Tubo (7) To increase the effect, we only have to practice some turns in this Tube (7)

con Aros, -creando con eÍlas un Serpentín-, para que el Aire se pueda condensar aún más, y, with Aros, -creating with them a Coil-, so that the Air can condense even more, and,

esto permita que se fabrique aún más Agua. Fecha de la invención: (15.04.12). this allows even more water to be manufactured. Date of the invention: (15.04.12).

DESCRIPCIÓN DE LAS FIGURAS DESCRIPTION OF THE FIGURES

5 5
Figura nO 1: Vista lateral del Sistema formado por el Tubo (1), el Motor Eléctrico (2) con Figure # 1: Side view of the System formed by the Tube (1), the Electric Motor (2) with

las Hélices (3), y, el Círculo (4) de Ranuras (5). El exterior del Tubo (1) está rodeado por un the Propellers (3), and, the Circle (4) of Slots (5). The outside of the Tube (1) is surrounded by a

Solenoide (6) que Solenoid (6) which
se conecta a una Toma de Tensión. En esta figura, el Motor (2) se be connect to a power outlet. In this figure, the Engine (2) be

muestra en el interior del Tubo (1), aunque, en realidad, deberá estar instalado en el exterior sample inside the Tube (1), although, in fact, it must be installed outside

para evitar el sobrecalentamiento, ya que el interior del Tubo (1) estará lleno de Aire muy to avoid overheating, since the inside of the Tube (1) will be full of Very

10 10
caliente. hot.

Figura nO 2: Vista frontal del Círculo (4) de Ranuras (5) Figure # 2: Front view of the Circle (4) of Slots (5)

Figura n° 3: Vista lateral de un Tubo de Aros (7) que forma un Serpentín. Figure 3: Side view of a Ring Tube (7) that forms a coil.

Figura n° 1-3: Figure 1-3:

1) Tubo 1) Tube

15 fifteen
2) Motor eléctrico 2) Electric motor

3) Hélices 3) Propellers

4) Círculo metálico 4) Metallic circle

5) Ranuras 5) Slots

6) Solenoide 6) Solenoid

2O 7) Thbo de aros 2O 7) Thbo hoops

DESCRIPCIÓN DE UN MODO DE REALIZACIÓN PREFERIDO DESCRIPTION OF A PREFERRED EMBODIMENT

La Fabricación de agua con aire c,aliente, está caracterizada por ser un sencillo Sistema de creación de agua potable, formado por un gran Tubo (1), en cuyo interior hay unas Hélices (3), movidas por un Eje que tiene una Rueda Dentada en cada extremo, que se The manufacture of water with air c, encouragement, is characterized by being a simple system of creation of drinking water, formed by a large tube (1), inside which there are some propellers (3), moved by an axis that has a wheel Serrated at each end, which

25 conecta a un Motor Eléctrico (2) que se halla por el exterior para evitar el sobrecalentamiento del Motor, en el caso de que éste fuese instalado en el interior de este Tubo (1). En el extremo anterior de este Tubo (1) hay un estrechamiento que termina en un Círculo metálico (4) que está lleno de Ranuras (5). Y, más allá de las Ranuras (5), en la otra cara del Círculo (4), se pone, -en cada Ranura (5)-, un Tubo de Aros (7) que forma 25 connects to an Electric Motor (2) that is on the outside to prevent overheating of the Motor, in the event that it is installed inside this Tube (1). At the front end of this Tube (1) there is a narrowing that ends in a metal Circle (4) that is full of Grooves (5). And, beyond the Slots (5), on the other side of the Circle (4), - in each Slot (5) -, a Tube of Rings (7) that forms

3 D un Serpentín. Estos Tubos de Aros (7) parecen una oruga porque están formados por Aros sucesivos, de manera que sus dos caras, la interior y la exterior, están arrugadas, lo que contribuye a la función que tienen ahí, de condensar mejor en Gotas, el Aire que ha atravesado las Ranuras (5). El exterior del Tubo (1) estará rodeado por un Solenoide (6) que se conectará a una Toma de Tensión. Esto se hace así para que el Aire del interior del 3 D a Coil. These Hoop Tubes (7) look like a caterpillar because they are formed by successive Hoops, so that their two faces, the inner and the outer, are wrinkled, which contributes to the function they have there, of better condensing in Drops, the Air that has passed through the Slots (5). The outside of the Tube (1) will be surrounded by a Solenoid (6) that will be connected to a Power Outlet. This is done so that the Air inside the

5 Tubo (1) siempre esté 10 más caliente posible. Ahora bien, como este Tubo (1) es muy corto, habrá que poner otro Solenoide (6) arrollando al tubo que conduce el Aire hacia la entrada de este Tubo (1). De esta manera, el Aire se calentará antes de que llegue a la zona de trabajo, o sea, al interior del Tubo (1) en donde están las Hélices (3). 5 Tube (1) is always 10 as hot as possible. Now, since this Tube (1) is very short, another Solenoid (6) must be placed winding the tube that leads the Air towards the entrance of this Tube (1). In this way, the Air will be heated before it reaches the work area, that is, inside the Tube (1) where the Propellers (3) are.

Claims (1)

REIVINDICACIONES 1) Fabricación de agua 'con aire caliente, caracterizada por ser un sencillo Sistema de creación de agua potable, formado por un gran Tubo (1), en cuyo interior hay unas Hélices (3), cuyo Eje se conecta a otro Eje que tiene una Rueda Dentada en cada extremo, estando   1) Manufacture of water 'with hot air, characterized by being a simple system of creation of drinking water, formed by a large tube (1), inside which there are some propellers (3), whose axis is connected to another axis that has a Cogwheel at each end, being 5 conectada la Rueda exterior, con el Eje de un Motor Eléctrico (2) que se halla por el exterior del Tubo (1). En el extremo anterior de este Tubo (1) hay un estrechamiento que termina en un Círculo metálico (4) que está lleno de Ranuras (5). Y, más allá de las Ranuras (5), en la otra cara del Círculo (4), se pone, -en cada Ranura (5)-, un Tubo de Aros 5 connected the outer wheel, with the shaft of an electric motor (2) that is outside the tube (1). At the front end of this Tube (1) there is a narrowing that ends in a metal Circle (4) that is full of Grooves (5). And, beyond the Slots (5), on the other side of the Circle (4), - in each Slot (5) -, a Tube of Rings is placed (7) que forma un Serpentín. Estos Tubos de Aros (7) parecen una oruga porque están (7) that forms a Coil. These Hoop Tubes (7) look like a caterpillar because they are 1Oformados por Aros, de manera que sus dos caras, la interior y la exterior, están arrugadas. El exterior del Tubo (1) estará rodeado por un Solenoide (6) que se conectará a una Toma de Tensión. Ahora bien, habrá que poner otro Solenoide (6) arrollando al tubo que conduce el Aire hacia la entrada de este Tubo (1). 1 Formed by Aros, so that its two faces, the inner and the outer, are wrinkled. The outside of the Tube (1) will be surrounded by a Solenoid (6) that will be connected to a Power Outlet. Now, another Solenoid (6) must be placed winding the tube that leads the Air towards the entrance of this Tube (1).
ES201200443A 2012-04-17 2012-04-17 Make water with hot air Active ES2425800B1 (en)

Priority Applications (1)

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ES2425800A2 true ES2425800A2 (en) 2013-10-17
ES2425800R1 ES2425800R1 (en) 2013-11-04
ES2425800B1 ES2425800B1 (en) 2014-09-30

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Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7645322B2 (en) * 2006-09-15 2010-01-12 Ingersoll Rand Energy Systems Corporation System and method for removing water and siloxanes from gas
US20100313581A1 (en) * 2007-01-25 2010-12-16 Thompson Christopher E Method and Apparatus for Harvesting Water and Latent Energy from a Gaseous Mixture
US20110056457A1 (en) * 2008-05-12 2011-03-10 Turbulent Energy, Inc. System and apparatus for condensation of liquid from gas and method of collection of liquid
FR2941445A1 (en) * 2009-01-28 2010-07-30 Andre Lapaix System for producing water and electricity, comprises an air carrier pipe extending from a lower level and an upper level, a unit for heating the collected air at the lower level, and a heat exchanger connected to the air carrier pipe

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ES2425800R1 (en) 2013-11-04

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