This invention is in the field of solar energy and in particular a water tank with a portion of its construction a solar collector.
Solar energy water heaters are usually made of two main parts, namely solar collectors and the water tank. This kind of system requires more space for the two bulky components and the tank has to be higher than the collectors for the thermal water flow to operate, otherwise a pump is needed to pump the heated water to the tank.
Space is often a critical factor causing problems with these kind of solar water systems.
What is needed is a system or a device that combines the water tank and the solar collector that do not need one part higher than the other or pumping apparatus. Such a combination also saves lengthy piping needed in prior art to join the tank portion to the solar collector portion and saves having two separate apparatuses namely the water tank and the solar collector.
More over such a device that combines the water tank and the solar collector will also improve the saving in constructions especially in high rise building.
It is to be understood that both the foregoing general description and the following detailed description present embodiments of the invention and are intended to provide an overview or framework for understanding the nature and character of the invention as it is claimed. The accompanying drawings are included to provide a further understanding of the invention and are incorporated into and constitute a part of this specification. The drawings illustrate various embodiments of the invention and, together with the description, serve to explain the principles and operations of the invention but not to limit the invention to these descriptions only.
This invention reveals a water tank/solar collector comprising a tank for holding water and incorporated into the tank, in the upper face of the tank, are a plurality of ridges alternating with indentations. Alternately, the upper tank face could be made of semi-spherical bodies.
The whole water tank/solar collector would be in an insulated container where the insulation covers the underside and side walls of the water tank/solar collector. The top face of the water tank/solar collector has the surface area increased by means of the undulating ridges and indentations or the semi-spherical bodies. The top face of the insulated container is a glass cover to make a greenhouse effect in the space between the glass cover and the top face of the water tank/solar collector. The glass cover could be double glazed glass or other kind of glass that allows maximum solar energy to enter between the glass and the top face of the water tank/solar collector, while preventing as much as possible, the accumulated heat energy from exiting via the glass cover especially at times when the sun is not shining through the glass.
The energy from the sun is transferred to the water in the water tank/solar collector by conduction of heat from the accumulated heat under the glass, commonly known as the greenhouse effect. The increased surface area of the top face of the water tank/solar collector namely the ridges or the semi-spheres increases the efficiency of this heat conduction process to heat the water in the tank. When the ridges or semi-spheres are made of glass or other transparent material the water in the tank will also be heated by the transfer of radiated energy from the sun directly onto the water in the tank. The semi-spheres, when transparent, may also increase the water heating efficiency by the magnification effect caused by the convex transparent surface.
The water tank/solar collector with its insulated container would be supported facing the sun in an optimal direction and angle to catch the optimal amount of solar energy from the sun.
A lead pipe connected to the lower portion of the tank is used to supply unheated water to the tank. A lead pipe connected to the upper portion of the tank is used to supply heated water to the user.
The water tank could be cylindrical, semi-cylindrical or cuboid.
Undulating ridges and semi-spherical bodies expose a large surface area for collecting solar energy. In addition the dome shape of each semi-spherical body will catch the sun's rays at the optimal angle for high solar radiated energy absorption at all angles of the sun relative to the earth during day-light hours. A majority of the heat that heats the water in the water tank is by the conduction of heat collected under the glass cover of the tank. The greater the surface area of the water tank, the undulating ridges or semi-spherical bodies, the quicker the heat is absorbed into the water. The sun's radiated energy will add to the heat of the water.
The water tank of this invention could have an electrical heating element attached to the tank to heat water in the tank in addition to the solar heating or in place of the solar energy when the sun's energy is concealed.
The tank could have an outer shell made of one or more of the following materials namely metal, plastic, polyurethane compounds, polypropylene or polypropene, also known as PP, polymethyl methacrylate, also known as PMMA and also known as acrylic glass, polyvinylidene difluoride, also known as PVDF, and polyethylene terephthalate, also known as PET.
There could be more than one tank in an insulated container under a sheet of glass.
The accompanying drawings, which are incorporated in and form a part of this specification, illustrate embodiments of the invention and together with the description, serve to explain by way of example only, the principles of the invention:
As will be appreciated the present invention is capable of other and different embodiments than those discussed above and described in more detail below, and its several details are capable of modifications in various aspects, all without departing from the spirit of the invention.
Accordingly, the drawings and description of the embodiments set forth below are to be regarded as illustrative in nature and not restrictive.
There is a pipe 120 leading from a source of cool water into the water tank/solar collector 100 and a pipe 122 leading out heated water from the water tank/solar collector 100.
The water tank/solar collector 100 could be supported at an angle of about 45 degrees so the absorption of energy from the sun would be at a maximum average. A convenient place for the water tank/solar collector 100 would be on a sloping roof tile.
An electric element 126 could be affixed into the side of the tank. The electrical element 126 would be for use when there is insufficient exposure to solar energy.
An electrical heating element 126 is installed in the water tank/solar collector 200 for supplementary energy to heat the water in the water tank/solar collector 200 when solar energy is insufficient.
The material of the upper face 201 and of the spheres 202 could be metal, glass, plastic or polymers or a combination of these materials, in order to aid the transfer solar energy from the exterior of the water tank/solar collector 200 to the water inside the water tank.
The water tank/solar collector 200 is surrounded by insulation 103 in order to preserve the accumulated heat in the water at times when the sun energy does not reach the water tank/solar collector 200, namely when there are clouds or at night.
The present invention is not intended to be limited to the embodiments described above, but to encompass any and all embodiments within the scope of the following claims.
Number | Date | Country | Kind |
---|---|---|---|
190649 | Apr 2008 | IL | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/IL09/00311 | 3/19/2009 | WO | 00 | 10/5/2010 |