[0001] The present invention concerns a method for treating, in particular for heating air
in a dryer for linen and the like, as well as a dryer applying this method.
[0002] It is known that with traditionally embodied dryers, the linen is dried by bringing
it into contact with a hot air flow, whereby the linen is preferably also kept moving
in this air flow, by putting said linen in a rotary drying drum. The hot air flow
is obtained by drawing in air and by heating it in an electric heating device, built
in in the dryer.
[0003] The present invention aims an improved method for treating air in a dryer, as well
as an improved dryer applying this method, in particular a method and a dryer which
are more efficient to use, seen from the viewpoint of the heating and the air flow
used thereby.
[0004] To this end, the invention in the first place concerns a method for treating air
in a dryer for linen and the like, in particular for heating the air used in the dryer,
whereby this air is heated in a heating device to be subsequently led through a drying
drum, in which the linen or the like to be dried is situated, characterized in that
the air is pre-heated before being supplied to the above-mentioned heating device.
[0005] As the air is pre-heated, the heating will be more efficient. Consequently, the temperature
difference which must then be bridged at the main heating, in particular the above-mentioned
heating device, can be reduced, which results in a better output.
[0006] The air is preferably pre-heated by putting it into contact with parts of the dryer
which are situated behind the heating device, seen in the direction of flow of the
air, and which are heated thanks to the produced hot air flow and/or the warmth produced
by the heated linen or the like. In this manner, heat is recycled, resulting in a
considerable energy saving and consequently also an efficiency improvement.
[0007] According to the most preferred embodiment, the air is at least pre-heated by putting
it into contact with the drying drum, in particular the outside of the drying drum
and/or with a fixed drum situated around the actual drying drum. Since these are the
hottest parts of the dryer, and since these parts moreover have a relatively large
outer surface from which warmth for the pre-heating can be abstracted, a very efficient
pre-heating is obtained in this manner.
[0008] In practical embodiments, the air is put into contact with the drying drum or with
a fixed drum situated around the actual drying drum, two or several times in a row
in different places.
[0009] Thanks to the repeated contacts, the air will be better mixed in between, thanks
to the canalization through which it has to move, which results in a more uniformly
heated air flow, so that in the second and possibly ensuing pre-heating stages, good
results for a further heating can be guaranteed.
[0010] Secondly, the invention naturally also concerns a dryer to realize the above-mentioned
method. To this end, such a dryer according to the invention comprises a drying drum,
as well as an air heating device and means for leading the heated air through the
drying drum, and it is characterized in that it at least also comprises means to subject
the air to a pre-heating before supplying said air to the aforesaid heating device.
[0011] According to the above-mentioned method, the means for subjecting the air to a pre-heating
preferably consist of a canalization which brings said air into contact with parts
of the dryer situated behind the heating device according to the direction of flow
of the air, and which are heated thanks to the produced hot air flow and/or the warmth
produced by the heated linen or the like. As mentioned above, these parts are preferably
formed of the dryer drum, in particular the outside of the dryer drum and/or a fixed
drum situated around the actual dryer drum.
[0012] The invention can be applied to dryers for domestic use as well as to dryers for
industrial use.
[0013] In order to better explain the characteristics of the invention, the following preferred
embodiments are described as an example only without being limitative in any way,
with reference to the accompanying drawings, in which:
figure 1 represents the method of the invention in a highly schematic manner;
figure 2 schematically represents a section of a dryer according to the invention;
figure 3 schematically represents a view in perspective of the dryer from figure 2,
partly dismantled;
figure 4 represents a view analogous to that in figure 2 of a variant of a dryer according
to the invention.
[0014] Figure 1 schematically represents a drying space, in particular a drying drum 1,
of a dryer 2, which drying drum 1 can usually be driven in a rotating manner, for
example by means of an electric motor which is not represented in the figure. The
drying takes place, as is normally the case, by drawing in air via a suction device
3 and a suction opening 4 and by heating it in a heating device 5, for example an
electric heating, after which this air, as indicated by arrow 6, is led through the
drying drum 1, so that the linen to be dried which is present there is heated and
the moisture which is thereby released is carried off together with the air via the
schematically represented discharge 7. This discharge 7 may have a free connection
with the surroundings and may for example open into the outside air via a pipe. According
to a variant, it may also be connected to a condensing device which has either or
not been built in in the dryer 2, designed to remove the moisture from the exhaust
air.
[0015] According to the present invention, the air, before being supplied to the heating
device 5, is pre-heated by bringing it into contact, as illustrated by means of the
schematically represented canalization 8, with one or several of the parts of the
dryer 2 which, while the dryer 2 is in use, are heated due to the produced hot air
flow and/or the heat produced by the heated linen or the like. In the schematic example
of figure 1, the outer surface 9 of the drying drum 1 is used as a heated part.
[0016] According to a variant, not the outer surface 9 of the drying drum 1 itself will
be used as a heated part, but the surface of a fixed drum surrounding the drying drum
1, which can usually be driven in a rotating manner.
[0017] Thanks to the contact with the heated part, i.e. the drying drum 1 and/or possibly
the fixed drum situated around it, the supplied air is already heated in the canalization
8, and pre-heated air is consequently supplied to the actual heating device 5, which
results in the advantages as explained in the introduction.
[0018] It is clear that the aforesaid contact of the air with the heated parts, as well
as the canalization 8 applied thereby, can be realized in any way whatsoever. Two
examples thereof will be further described in detail by means of figures 2 to 4.
[0019] Figures 2 and 3 represent a first embodiment whereby the air, in order to subject
it to a pre-heating, is put into contact with the rotating drying drum 1.
[0020] According to a practical aspect, use is made to this end of a canalization 8 which
is at least partially formed of a double-walled structure, consisting of walls 10
and 11, which structure extends along at least one side of the housing 12 of the dryer
2. This double-walled structure, together with a number of canalization parts 19-20-21-22
opening therein via openings 13-14-15-16-17-18 in the wall 10, forms the canalization
8. The canalization part 19 hereby forms a connection between the suction device 3
and the double-walled structure. The canalization part 20 extends in such a manner
that the air led through it is put into contact with the drying drum 1 a first time,
whereas the canalization part 21 makes sure that this air is put into contact with
the drying drum 1 a second time. The canalization part 22 finally provides for a connection
with the actual heating device 5.
[0021] Naturally, the necessary partitions 23 are provided in the double-walled structure,
and additional air conducting means 24 may be present in the canalization parts 20
and 21, so that the air is forced to make contact with the surface of the drying drum
1.
[0022] For clarity's sake, neither the canalizations for leading the air as of the heating
device 5 into the drying drum 1, as well as for discharging said air from the drying
drum 1, nor the drive for the drying drum 1 are represented in the figures.
[0023] The working of the above-described dryer 2 can be easily derived from figure 2. After
the linen to be dried has been put in the drying drum 2, the latter is driven in a
rotating manner in the known way. Air is drawn in via the suction device 3 and carried
through the canalization 8 towards the heating device 5. In the heating device 5,
said air is heated, after which it is led through the drying drum 1, so that the linen
is dried.
[0024] Initially, the outer surface 9 of the drying drum 1 is at room temperature, but after
a short while it will have a considerable temperature as heated air is being carried
through the drying drum 1. This has for a result that the air supplied to the heating
device 5 is pre-heated, as it is put into contact with the heated outer surface 9
in the canalization 8, in particular in the canalization parts 20 and 21, which results
in a more efficient energy consumption.
[0025] As the air is put into contact with the drying drum 1 at least twice in a row, in
the canalization parts 20 and 21 respectively, this offers the advantage that the
air has the possibility to mix in the meantime, which results in a better heat exchange.
[0026] According to the variant of figure 4, the canalization 8 is not directly connected
to the rotating drying drum 1, but to a fixed drum 25 which extends around the drying
drum 1.
[0027] However, the operation is analogous as in the embodiment from figure 2.
[0028] It is clear that the suction device 3 must not necessarily be situated at the entrance
of the canalization 8, but that it may also be situated in or at the end of said canalization
8.
[0029] It is also clear that the present invention cannot only be applied to dryers 2 having
a rotary drying drum 1, but possibly also to dryers whereby the linen is moved in
another manner in a drying space. According to the present application, by the term
'drying drum' should be understood any form of drying space, whether it has a drum
shape or not or whether it can rotate or not.
[0030] The invention is by no means limited to the above-described embodiments given as
an example and represented in the accompanying drawings; on the contrary, such a method
for treating air in a dryer, as well as such a dryer, can be made in all sorts of
variants while still remaining within the scope of the invention.
1. Method for treating air in a dryer for linen and the like, in particular for heating
the air used in the dryer (2), whereby this air is heated in a heating device (5)
to be subsequently led through a drying drum (1), in which the linen or the like to
be dried is situated, characterized in that the air is pre-heated before being supplied to the above-mentioned heating device
(5).
2. Method according to claim 1, characterized in that the air is pre-heated by putting it into contact with parts of the dryer (2) which
are situated behind the heating device (5), seen in the direction of flow, and which
are heated thanks to the produced hot air flow and/or the warmth produced by the heated
linen or the like.
3. Method according to claim 2, characterized in that the air is at least pre-heated by putting it into contact with the drying drum (1),
in particular the outer surface (9) of the drying drum (1) and/or with a fixed drum
(25) situated around the actual drying drum (1).
4. Method according to claim 3, characterized in that the air is put into contact with the drying drum (1) or with a fixed drum (25) situated
around the actual drying drum (1) two or several times in a row in different places.
5. Dryer for drying linen or the like, in particular a dryer (2) applying the method
according to any of the preceding claims, whereby this dryer (2) comprises a drying
drum (1), as well as an air heating device (5) and means for leading the heated air
through the drying drum (1), characterized in that the dryer (2) also comprises means to subject the air to a pre-heating before supplying
said air to the aforesaid heating device (5).
6. Dryer according to claim 5, characterized in that the above-mentioned means for subjecting the air to a pre-heating preferably consist
of a canalization (8) which brings said air into contact with parts of the dryer (2)
situated behind the heating device (5) according to the direction of flow of the air,
and which are heated thanks to the produced hot air flow and/or the warmth produced
by the heated linen or the like.
7. Dryer according to claim 6, characterized in that the above-mentioned canalization (8) works in conjunction with, in particular extends
along, the drying drum (1), in particular the outer surface (9) of the drying drum
(1), and/or with a fixed drum (25) situated around the actual drying drum (1).
8. Dryer according to claim 7, characterized in that the canalization (8) extends such that the air is put into contact with the drying
drum (1) or with a fixed drum (25) situated around the actual drying drum (1), two
or several times in a row in different places.
9. Dryer according to any of claims 6 to 8, characterized in that the canalization (8) which is at least partially formed of a double-walled structure
extends along at least one side of the housing (12) of the dryer (2), from where the
air is put into contact with the dryer drum (1) or with the above-mentioned fixed
drum (25).
10. Dryer according to any of the preceding claims, characterized in that the above-mentioned heating device (5) consists of an electric heating.