Continuous flow water heater that mitigates the effect of altitude
Abstract
A continuous flow heater that mitigates the effect of altitude, characterized in that it consists of a combustion system with four mixers attached to a rectangular base into which the gas is injected and distributed through fifty small cavities is provided. The combustion system is attached to a heat transfer system. The continuous flow heater that mitigates the effect of altitude is suitable for altitudes greater than 2000 meters above the sea level without notable reductions in power or significant increases in polluting and toxic emissions. The combustion system has better air draft than conventional systems, enabling it to mitigate the reduction in the quantity of oxygen in the air at higher altitudes, improving the operation of the equipment compared to the operation of equipment already available on the market, and making a better use of non-renewable natural resources.
Claims
exact text as granted — not AI-modified1 . Continuous flow water heater that attenuates the effect of altitude, characterized by:
A combustion system. A heat transfer system. A mechanical structure. A control system and product safety.
2 . Continuous flow water heater that attenuates the effect of altitude, characterized by, according to claim 1 , a combustion system, consisting of four pieces:
A unified injection system made of injected aluminum Four stainless steel mixers Two deflectors A support for spark plugs
3 . Continuous flow water heater that attenuates the effect of altitude, characterized by, according to claim 2 , a combustion system comprising a unified injection system, comprising a rectangular bottom part made of injected aluminum comprising two parts (a lower section and an upper section) joined by pressure, carrying a stick around the bottom piece.
4 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 2 , an injection system comprising a rectangular base with a variable length between 20 and 25 centimeters and a width varying between 8 and 15 centimeters.
5 . Continuous flow water heater that attenuates the effect of altitude, characterized by, according to claim 2 , a unified injection system composed by a rectangular base made of injected aluminum, composed by two pieces, held together by pressure, carrying a stick around the bottom piece:
A rectangular-shaped lower section made of injected aluminum, which contains four channels which are arranged horizontally, divided in the middle by a channel perpendicular to the previous channel, thereby generating six cavities. A rectangular-shaped upper section made of die-cast aluminum, which contains four channels which are arranged horizontally divided in the middle by a channel perpendicular to the previous channel, thereby generating six cavities.
6 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 5 , a lower section which has an interior and a very thin channel in the external perimeter and channel perimeters to accommodate the sealing adhesive of the two parts of the injection system.
7 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 5 , having a distributor in the lower section and center channel of the bottom center of the unified injection system.
8 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 5 , having 50 nozzles evenly distributed, with a diameter less than a millimeter in the channels of the upper section of the unified injection system.
9 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 1 , a heat transfer system, comprising four mixers made of stainless steel, which form a set of defined geometry, this being comparable to two opposing and overlapping triangles, so that the vertices are at the center and the bases form the ends of the mixers. The mixers are tightly sealed by the lateral sides with stainless steel blades that replicate the form of the burners.
10 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 9 , a set of four mixers having a variable height between 8 and 11 centimeters and a width varying between 8 and 15 centimeters and a length varying between 20 and 25 centimeters.
11 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 9 , four mixers, from which the lower base of each of them, two rectangular shape flat surfaces extend laterally which are bent at its tip generating a tab, also rectangular shape, for being fixed on the unified injection system.
12 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 9 , four mixers sealed on the sides by stainless steel caps.
13 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 1 , two stainless steel deflectors, which are made by a flange of 7 mm, with an angle of approximately 90 degrees, which is broken in its central zone, generating a low angle. One is a rear deflector and the other one is a front deflector, which has a shorter flange.
14 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 1 , a support of rectangular spark plugs, which are assembled on top of the front mixer, by two side flanges and having along its top and bottom edges a flange quartered, generating four chambers which house the spark plugs, fastened by a support supplementary piece.
15 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 9 , four mixers connected at their lower end and supported to the mechanical structure by a cradle.
16 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 1 , a heat transfer system comprising:
A heat exchanger A diffuser A smoke evacuation duct.
17 . Continuous flow water heater that attenuates the effect of altitude characterized by, according to claim 1 , a mechanical structure composed by two die-cut and painted parts: a front rectangular shape casing with volume and that at its rear has a crescent-shaped cavity to allow pipeline to pass over the evacuation duct and a back casing, the latter being the support for all parts of the heater, with receiving parts for most components and serving as the basis for the final fastening of the heater.Join the waitlist — get patent alerts
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