The invention relates to the field of installations (hydraulic and electric) for the heating of buildings and the saving of energy.
A method for autonomous operation of radiator and microboiler appliance (1) of such type that is connected above the radiator of the heating installation, individual or central, making it function autonomously from the heating installation and capable to function alternately with the central heating and in particular without having to cut off or open, via switch, its connection with the remainder installation, does not exist.
There are various patents in the state of the art which aim at providing heating bodies autonomous from the remaining system. FR 867699A (ERNEST CHARLES MARON) relates to on-floor heating bodies, on which an external heater is installed.
Water circulates in a natural way, without using a circulator, thereby making the invention suitable to be installed on already existing central heating systems. Similarly, FR 875054 A (RAYMOND VICTOR CLÉMENT ANDRÉ) provides a way of connecting a heating system to already existing central heating systems. Also, DE 2738036 A1 (KELLER ROLAND) and EP 0080428 A1 (PINAL PATRICK) are known which provide heating bodies, which incorporated cartridges for the heating thereof. Finally, DE 3640281 A1 (WEISS HANS JOACHIM) provides a heating device, for liquid or gaseous fuels. None of the said patents isolates the heating body, however without cutting it off from the remaining circuit, which would allow both its individual operation and its operation with the remaining circuit as desired. Also, none of the said systems operates both with electricity and with a solid, liquid or gaseous fuel, contrasted to the present invention.
The present method for autonomous operation of radiator and the microboiler appliance (1) have aim to allow heating of a space via the autonomous operation of a single radiator (or a plurality thereof), independently and without cutting it off and disconnecting it from the installation.
It intends to the improvement in the quality of life with improvement in the operation safety of the heating and at the same time in energy saving, since:
The methods and the materials of manufacture of the microboiler (1) of autonomous operation of radiator and saving of consumption which can be used suitably in the present invention, include, in general, known materials and methods of manufacture of hydraulics, from components made of iron, copper, brass or plastic with high resistance to temperature or any other material, that when are connected in the suitable places provide the final required form and operation of the appliance. A special compact manufacture for microboiler (1) is not required, unless reasons of economy in its manufacture make it necessary.
The electric resistances with thermostat (4) that can be used with possible modification for reduction of power and change in the point of the provision in order to guarantee the protection in the region of the cable connections exist in the market for use in various domestic electric appliances, small heaters, boilers and kettles.
The circulation of hot water is effected without mechanic assistance exploiting the impulse that the heating gives to water directing it upwards and prompting it to generate a stream of perpetual motion to the radiator that causes the cold water to enter via the return pipe (8) to the chamber (2) of the microboiler (1) so that it is heated and led again via the hot water discharge pipe (6) to the radiator. The appliance of the microboiler (1) may be adapted and incorporated as permanent element in the radiator bodies by the manufacturers in a version of adaptation and incorporation in the volume of radiator and with resistance with thermostat (4) of special form, or without a thermostat (i.e. self-regulatory) that is manufactured specifically for this purpose.
Advantage of this invention is, that it gives the possibility of autonomy of operation of the individual radiator of room, achieving thus improvement in quality of life because someone may use the heating with safety and any moment he needs even without fuels in the central boiler or when any co-owners do not agree for the time moment of activation of central heating and also there is a saving in the energy consumption, from the non- activation of the central boiler of the installation, for only one individual building or room. The central boiler has large energy losses from the repeated reboots and through the piping during transport of the heating in the individual point of demand and for its operation it also requires larger quantity of energy (fuels) than that it would need in order to heats one only radiator of the total installation. Another advantage is that it creates an operation of the closed circuit type while it remains open with the radiator connected to the existing network, allowing the radiator to operate individually or alternately with the central system. Also it is big advantage that it is incorporated in the existing installation and provides absolute operation safety against any alternative solution of heating a space (stoves with incandescent resistors or oil or liquified gas stoves or woodstoves) which usually consume more energy and heat only locally.
The invention is described below with the help of figures for the general comprehension and with 3D photographic depiction, of different forms of the microboiler appliance (1) depending on the type of the manufacture materials employed, where:
The examples that follow are given aiming at the further explanation of present invention without excluding the manufacturing of different types of microboiler appliance (1) that would carry out the same final operation of the invention described herein.
The
Analyzing the parts of the iron construction of the microboiler appliance (1) we see that the chamber (2) consists of T-shaped element 1½′, constriction from 1½′ to 1¼′ in order to screw the electric resistance with thermostat (4), constriction from 1½′ to ½′ in order to screw the corner ½′ of the cold water return pipe (8), racord 1½′ in order to connect a glass-constriction from 1½′ to ½′ in order to screw the hot water discharge pipe (6) which is directed to the radiator via the hot water entry (7).
Also we see that the electric resistance with thermostat (4) consists of a folded screw resistance with a reception for a short thermostat which is connected with cables to the ends of the resistance and then the thermostat is connected via a flexible shielded cable to the current supply. We also see that the part of the resistance with the terminals, the connected cables and the connected thermostat are found constrained for protection and safety in a waterproof box, from which the supply cable comes out.
Also the
The microboiler appliance (1) may be manufactured in a different form and configuration, as well as it can be incorporated in the lower part and within the volume of thermal radiator as a permanent component thereof.
Filing Document | Filing Date | Country | Kind |
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PCT/GR2014/000010 | 2/12/2014 | WO | 00 |
Number | Date | Country | |
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20150377495 A1 | Dec 2015 | US |