[0001] The present invention relates to a heat regenerator,particularly designed for application
to fireplaces and the like.
[0002] As it is known heat regenerators or heat exchangers are progressively used in fireplaces
in such a way as to improve the combustion efficiency within the mentioned conventional
fireplaces which,as it is well known,have usually a low thermal exchange efficiency,since
it is determined only by radiation.
[0003] The prior art approaches generally provide a tube nest which is located inside the
fireplace in such a way as to be substantially near to its walls and encompass the
fireplace region itself.
[0004] Through the mentioned tube nest water is generally caused to circulate which,upon
heating, as it is touched by the flame,acts to transport heat to radiators and the
like.
[0005] With the mentioned known approaches, great constructional difficulties are involved,since
it is firstly necessary to provide a heat exchanger having the shape of the fireplace
and, therefore,it is necessary to employ a different shape for each type of fireplace.
[0006] Moreover the coupling to a radiator network generally involves installation problems.
[0007] Yet another drawback of the prior art approaches is that of making suitable seals
at the several fittings,if the fact is considered that such fittings are frequently
located at regions contacted by the flame.
[0008] Accordingly,the task of the present invention is to overcome the thereinabove mentioned
drawbacks, by providing a heat regenerator,particularly for fireplaces and the like,which
is so designed as to easily and quickly fit any possible fireplace shapes,as presently
commercially available,without requiring any struetural or installation modifications.
[0009] Within that task,it is a main object of the present invention to provide a heat regenerator,
particularly for fireplaces and the like,which affords the possibility of regenerating
the heat, as produced by the fireplace,without the need of using complex installation,and
able of reintroducing heated air directly into the environment.
[0010] Another object of the present invention is to provide a heat regenerator,particularly
for fireplaces and the like which can automatically fit any fireplace shapes.
[0011] Yet another object of the present invention is to provide a heat regenerator which
is very simple construction-wise and may be produced starting from easily available
components and materials and which is very advantageous from a mere economic standpoint.
[0012] According to one aspect of the present invention the above task and objects,as well
as yet other objects which will become more apparent thereinafter,are achieved by
a heat regenerator, particularly for fireplaces and the like,characterized in that
it comprises a tube nest,to be housed in a fireplace and including at least a leg
affecting the lower region of the fireplace and effective to be telescopically associated
with an air conveying manifold for regenerating or recovering heat.
[0013] Further characteristics and advantages of the heat regenerator according to the present
invention will become more apparent thereinafter from the following detailed description
of a preferred embodiment whereof, being illustrated by way of example and not of
limitation in the accompanying drawings,where:
fig.l is a schematic cross-sectional view illustrating a heat regenerator according
to the invention,as installed in a fireplace;
fig.2 is a perspective view illustrating the mentioned heat regenerator;
fig.3 schematically illustrates a tube nest with the hot air emitting ducts arranged
at the bottom;
fig.4 illustrates a tube nest with hot air emitting ducts arranged on one side;
fig.5 is a perspective view illustrating the tube nest;
and
fig.b illustrates another embodiment of the telescopic means.
[0014] With reference to the above figures, the heat regenerator,particularly for fireplaces
and the like according to the present invention comprises a tube nest, overally indicated
at the reference number 1.
[0015] The mentioned tube nest 1 consists of a plurality of tubular elements 2 which,advantageously
have a substantially C-shape.
[0016] The lower leg of the tube nest 1, indicated overally by the reference number 3,may
be housed at the bottom of the fireplace proper 4.
[0017] More specifically the lower leg 3 of the tube nest 1 may be telescopically associated
with a manifold 5 for conveying air.
[0018] As it is shown,the air conveying duct is of crancked shape in such a way that it
may be coupled to the bottom step 6 provided on the front of the fireplace.
[0019] From the manifold 5 rectilinear portions 7 extend which are telescopically inserted
into the ducts 2,at the lower leg 3.
[0020] It should be noted that the manifold 5 is provided for sucking air at the ground
level of the environment.
[0021] In order to convey and suck air,there is provided,inside the manifold 5,a fan d which
is supplied by a power supply(not shown).
[0022] The tube nest 1 is moreover provided with a vertically extending leg 9,coupled to
the lower or bottom leg 3 and connected to an air emitting duct 10 which may directly
led to the environment to introduce air into the latter,said air being heated as it
is caused to forcibly pass through the tube nest 1 which, during the operation of
the fireplace is contacted by the flame.
[0023] As it is shown in fig.3,it is possible to provide a tube nest 20 having portions
for emitting hot air, which portions are indicated at 21.
[0024] The latter are arranged at the bottom and laterally,with respect to the lower leg
3 which is coupled to the manifold.
[0025] The coupling between the lower leg 3 and the ducts 21,arranged at the bottom,is carried
out by U-shaped fittings 22 lying in a vertical plane and arranged at the bottom of
the fireplace.
[0026] In the embodiment of fig.4 there is illustrated a tube nest,indicated at 30,which
is provided with side air emitting ducts,indicated overally at 31,which are coupled
to vertically extending fittings 32,also extending or depending from the lower leg
3.
[0027] According to the embodiment illustrated in fig.6,the lower or bottom leg 3 of the
tube nest is rigidly coupled to a single manifold 40 of flattened and elongated shape
thereto there is telescopically coupled a mating shape connector 41 rigidly extending
from the manifold 5.
[0028] This embodiment provides the advantage of greatly simplifing all of the couplings,
by replacing the plurality of telescopic couplings of the tubes with a single telescopic
element.
[0029] From the above disclostzre, it should be apparent that the heat regenerator in particular
for fireplaces and the like according to the present invention may be installed in
a very quick and simple way, sinee it is possible to simply arrange the tube nest
in the proper position, inside the fireplace and then connect said tube nest,through
the mentioned telescopic coupling, with the manifold 5.
[0030] The latter will forcibly introduce, owing to the provision of the fan 8, the air
which is heated inside the tube nest and which is conveyed to the environment,thereby
improving substantially the thermal exchange efficiency.
[0031] If it is desired,it is possible to connect to the emitting ducts baffle members ll,effective
to convey hot air to the desired regions to be heated.
[0032] From the above disclosure it should be noted that the invention fully achieves the
intended task and objects.
[0033] In particular it is to be pointed out the great construction and assembling simplicity
of the device which, by exploiting for the thermal exchange a forced conveying of
air,does not require any complex fittings or sealing members, the device consisting
essentially of a number of suitably bent tubular elements.
[0034] In practicing the invention the used materials, provided that they are compatible
with the intended use,as well as the shape and size,may be any according to needs.
1- A heat regenerator,particularly for fireplaces and the like,characterized in that
it comprises a tube nest (l),to be housed in a fireplace and including at least a
leg (3) affecting the lower region of the fireplace and effective to be telescopically
associated with an air conveying manifold (5) for regenerating heat.
2- A heat regenerator,particularly for fireplaces and the like,characterized in that
said tube nest (1) is provided with a vertically extending portion (9) starting from
said lower leg (3) and communicating with ducts (10) for emitting hot air into the
environment.
3- A heat regenerator,particularly for fireplaces and the like,according to claim
l,characterized in that said air conveying manifold (5) is provided, in its inside,with
a fan (8) for sucking air from the bottom of the environment and forcibly introducing
it into said tube nest (1).
4- A heat regenerator,particularly for fireplaces and the like,according to claim
1,characterized in that said air conveying manifold (5) is of crancked configuration
in order to be coupled to the bottom step (6) of said fireplace.
5- A heat regenerator,particularly for fireplaces and the like,according to claim
2,characterized in that said ducts (10) for emitting hot air from said tube nest (1)
may be arranged at the top,at the bottom and on one side of said fireplace.
6- A heat regenerator,particularly for fireplaces and the like,according to claim
l,characterized in that said air conveying duct (5)is arranged at the front,on a corner
of the fireplace and is provided with coaxial ducts (7) for coupling the air inlet
ducts.
7- A heat regenerator,particularly for fireplaces and the like,according to claim
l,characterized in that it comprises a conveyor (40) rigid with said lower leg (3)
of said tube nest (1),said conveyor being effective to be telescopically inserted
into a connector of mating shape (41) extending from said air conveying manifold (5).
8- A heat regenerator, particularly for fireplaces and the like,according to claim
l, charaeterized in that it comprises air baffles for orienting the hot air at the
output of said air emitting ducts (10).