Towel rail radiator that can be oriented vertically or horizontally

The towel dryer design addresses the limitation of single-orientation towel dryers by incorporating adjustable thermal limiters and regulation sensors, allowing safe and effective operation in both vertical and horizontal orientations.

FR3150091B1Active Publication Date: 2025-05-16ATLANTIC IND
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Patent Information

Application Number
FR2023006557
Authority / Receiving Office
FR · FR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-06-23
Publication Date
2025-05-16
Estimated Expiration
2043-06-23

AI Technical Summary

Technical Problem

Existing towel dryers are designed for a single orientation, either vertical or horizontal, which limits their flexibility and can compromise safety and thermal regulation if used in a different orientation.

Method used

A towel dryer design that includes an air supply column with heating boxes that can be oriented vertically or horizontally, featuring thermal limiters and regulation sensors that adjust their placement to ensure proper safety and regulation signals regardless of orientation.

Benefits of technology

Enables the towel dryer to be safely and effectively used in both vertical and horizontal orientations, ensuring proper thermal regulation and preventing overheating, thus enhancing user safety and flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a towel radiator (10) that can be oriented horizontally or vertically, comprising: - at least one air supply column (12) extending along a supply axis (A), and - a plurality of heating chambers (30) mounted on said at least one supply column (12), - at least one thermal limiter (62) disposed in each heating chamber to transmit a safety signal, characterized in that said at least one thermal limiter (62) is disposed jointly in a first (50) and a second (52) end portions of each heating chamber (30) so as to be able to be disposed in an upper zone of the heating chamber when said at least one air supply column (12) is oriented vertically or horizontally. Figure for the abstract: Figure 3
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Description

Title of the invention: Towel dryer radiator that can be adjusted vertically or horizontally Technical field

[0001] The present invention relates to a towel radiator.

[0002] In particular, the present invention relates to a towel radiator comprising an air supply column communicating with heating boxes. Technological background

[0003] There is a type of towel radiator comprising an air supply column and a plurality of heating boxes connected to this air supply column. Heating members are arranged in the heating boxes to heat the air circulating inside the air supply column. Orifices formed in the heating boxes make it possible to diffuse hot air into a room where the towel radiator is installed. An example of such a towel radiator is for example described in European patent application EP3578091.

[0004] It is known that towel radiators include means for determining the temperature inside the heating boxes. These determination means make it possible to know the temperature of the heating box. This temperature determination is generally required by the standard and allows thermal regulation and safety functions for the towel radiator.

[0005] The position of the thermostats is essential to ensure proper thermal regulation and safety of the radiator. The safety thermostat is generally located at a higher position in the heating box where the temperature of the heating box is maximum. The regulating thermostat is generally located at a lower position where the temperature of the radiator is minimum.

[0006] The arrangement of the safety and regulation thermostats as well as the design of the towel radiator is therefore generally intended for a single orientation of the towel radiator. It is therefore not possible to arrange a towel radiator horizontally if its design has been intended to be vertical. The safety thermostat would not be placed in the right place, which would not be regulatory and dangerous for users. The regulation thermostat would also not be placed in the right place, which would not allow effective regulation of the temperature of the towel radiator.

[0007] There is therefore a need for a more flexible towel radiator allowing use in different orientations of the towel radiator. Summary of the invention

[0008] For this, the invention proposes a towel radiator which can be oriented horizontally or vertically, comprising: - at least one air supply column extending along a supply axis, and - a plurality of heating boxes mounted on said at least one supply column, transversely to the supply axis, each heating box being in fluid communication with said at least one air supply column, each heating box defining a first upper portion when the supply column is oriented horizontally and a second upper portion when the supply column is oriented vertically, - at least one heating element placed in each heating box, - a controller to control the heating components, and - at least one thermal limiter placed in each heating box to transmit a safety signal when the temperature in the heating box reaches a temperature threshold representative of overheating, characterized in that said at least one thermal limiter is arranged jointly in the first and second upper portions of each heating box so as to be able to be arranged in an upper portion of the heating box when said at least one air supply column is oriented vertically or horizontally.

[0009] According to one embodiment of the towel radiator, said controller is configured to stop the operation of the heating member when the controller receives said safety signal.

[0010] According to one embodiment of the towel radiator, the towel radiator comprises, for each heating box: - either a thermal limiter arranged jointly in the first and second upper portions, - or two thermal limiters arranged respectively in the first upper portion and the second upper portion.

[0011] According to one embodiment of the towel radiator, the first and second upper portions of each heating box overlap at a common upper portion of said heating box, said at least one thermal limiter being arranged in said common upper portion of each heating box.

[0012] According to one embodiment of the towel radiator, said at least one thermal limiter comprises for each heating box: - a horizontal thermal limiter arranged in the first upper portion and configured to transmit to the controller a first safety signal when the temperature in the heating box reaches said temperature threshold representative of overheating, and - a vertical thermal limiter arranged in the second upper portion and configured to transmit a second safety signal to the controller when the temperature in the heating box reaches said temperature threshold representative of overheating.

[0013] According to one embodiment of the towel radiator, the latter further comprises a member for determining the horizontal or vertical orientation of said at least one supply column, said member for determining the orientation being configured to transmit to the controller: - a first orientation signal when said at least one feed column is determined to be horizontally oriented, and - a second orientation signal when said at least one power column is determined to be vertically oriented.

[0014] According to one embodiment of the towel radiator, the orientation determining member is one of a ball switch associated with a moving part, a resistive angle sensor or encoder associated with a moving part, a gyroscope and a human-machine interface allowing a user to declare the orientation of said at least one air supply column.

[0015] According to one embodiment of the towel radiator, the controller is configured to stop the operation of the heating member when the controller receives: - the first orientation signal and the first safety signal, or - the second orientation signal and the second safety signal.

[0016] According to one embodiment of the towel radiator, the latter further comprises at least one thermal regulation sensor, each heating box having a first lower portion when the supply column is oriented horizontally and a second lower portion when the supply column is oriented vertically, said at least one thermal regulation sensor being arranged in the first lower portion of one of the heating boxes and / or the second lower portion of one of the heating boxes.

[0017] According to one embodiment of the towel radiator, said at least one thermal regulation sensor is configured to measure a temperature in said at least one heating box and transmit a setpoint signal when the temperature in the heating box reaches a regulation temperature threshold.

[0018] According to one embodiment of the towel radiator, the towel radiator comprises: - either a thermal regulation sensor arranged jointly in the first and second lower portions of the same heating box arranged at a lower end of the air supply column, - either two thermal regulation sensors arranged respectively in the first lower portion of one of the heating boxes and the second lower portion of said heating box arranged at a lower end of the air supply column.

[0019] According to one embodiment of the towel radiator, the plurality of heating boxes define a lower box disposed at a lower end of the air supply column, the first and second lower portions of said lower box overlapping at a common lower portion of said lower box, said thermal regulation sensor being disposed in said common lower portion.

[0020] According to one embodiment of the towel radiator, said at least one thermal regulation sensor comprises: - a horizontal thermal regulation sensor arranged in a first lower portion of one of the heating boxes and configured to transmit to the controller a first setpoint signal when the temperature in the heating box reaches said regulation temperature threshold, and - a vertical thermal regulation sensor arranged in the second lower portion and configured to transmit a second setpoint signal to the controller when the temperature in the heating box reaches said regulation temperature threshold.

[0021] According to one embodiment of the towel radiator, each heating box defines: - a maximum longitudinal dimension along the feed axis between a longitudinal upper edge and a longitudinal lower edge, and - a maximum transverse dimension taken transversely to the feed axis between an upper transverse edge and a lower transverse edge, in which: * the first upper portion is defined as being a portion of the heating box extending, from the upper transverse edge and towards the lower transverse edge, over a distance less than or equal to 30% of the maximum transverse dimension, * the second upper portion is defined as a portion of the heating box extending, from the upper longitudinal edge and towards the lower transverse edge, over a distance less than or equal to 30% of the maximum longitudinal dimension.

[0022] According to one embodiment of the towel radiator: * the first lower portion is defined as being a portion of the heating box extending, from the lower transverse edge and towards the upper transverse edge, over a distance less than or equal to 30% of the maximum transverse dimension, * the second lower portion is defined as a portion of the heating box extending, from the lower longitudinal edge and towards the upper transverse edge, over a distance less than or equal to 30% of the maximum longitudinal dimension. Brief description of the figures

[0023] The description which follows with reference to the appended drawings, given as non-limiting examples, will make it clear what the invention consists of and how it can be implemented. In the appended figures:

[0024] [Fig-1] [Fig.l] represents a perspective view of a towel radiator comprising an air supply column and heating boxes attached to the supply column;

[0025] [Fig.2] [Fig.2] shows an exploded perspective view of the radiator dryer napkin of [Fig.l];

[0026] [Fig.3] [Fig.3] a schematic front view of the towel radiator of the [Fig.l] in a vertical orientation, the towel radiator comprising a thermal regulation sensor, each heating box also comprising at least one thermal limiter;

[0027] [Fig.4] [Fig.4] a schematic front view of the towel radiator of the [Fig.3] in a horizontal orientation. Description of embodiment(s)

[0028] The inventive concept is described more fully below with reference to the accompanying drawings, in which embodiments of the inventive concept are shown. In the drawings, the size and relative sizes of elements may be exaggerated for clarity. Like numerals refer to like elements throughout the drawings. However, this inventive concept may be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein. Instead, these embodiments are provided so that this description is complete, and communicates the scope of the inventive concept to those skilled in the art.

[0029] A reference throughout the specification to "an embodiment" means that a particular functionality, structure, or characteristic described in connection with an embodiment is included in at least one embodiment of the present invention. Thus, the appearance of the phrase "in one embodiment" at various locations throughout the specification does not necessarily refer to the same embodiment. Furthermore, particular features, structures, or characteristics may be combined in any suitable manner in one or more embodiments. Furthermore, the term "comprising" does not exclude other elements or steps.

[0030] A towel radiator is proposed that can be oriented horizontally or vertically. In other words, the towel radiator can be installed in either a vertical or horizontal orientation while remaining fully functional and safe from potential overheating.

[0031] With reference to [Fig.l], the towel radiator 10 comprises an air supply column 12 extending along a supply axis A.

[0032] The towel radiator 10 further comprises a plurality of heating boxes 30 mounted on said at least one air supply column 12. The heating boxes 30 are fixed to the air supply column 12, for example at a front face 22.

[0033] Each heating box 30 is arranged on the air supply column 12 transversely to the supply axis A.

[0034] Each heating box 30 comprises a front box wall 32, a rear box wall 34 and a box side wall 36 extending transversely between the front 32 and rear 34 box walls. The box side wall 36 comprises an upper box face 38, a lower box face 40 and two box side faces 42.

[0035] The front 32, rear 34 and side 36 box walls define an interior box space 37.

[0036] Each heating box 30 has substantially the shape of a parallelepiped when viewed facing the front wall 32. Alternatively, the front wall 32, and therefore the heating box 30, may have any shape that allows it to be mounted on the air supply column 12, such as for example a circular front wall. Each heating box 30 is preferably defined by a height taken along the supply axis A, a width taken perpendicular to the supply axis A and a depth taken perpendicular to the width and the height.

[0037] Each heating box 30 comprises a heating member 44. This heating member 44 is arranged in the interior space of the box 37. The heating member 44 is for example in the form of a resistive plate electrically powered to generate heat. The heating member 30 preferably extends between the air supply column 12 and the front wall 32.

[0038] The towel radiator 10 further comprises a controller (not visible) for controlling the heating members 44. The controller makes it possible in particular to control the starting of one or more of the heating members 44.

[0039] The air supply column 12 comprises at least one air inlet orifice 14, for example arranged on an upper end face 16 of the air supply column 12. The inlet orifice 14 may be in the form of a grid.

[0040] The air supply column 12 may provide a plurality of air inlet orifices 14, in particular arranged on different faces or portions of faces of the air supply column 12. These inlet orifices 14 may for example be arranged at one or more of a rear face 18, a lower end face 20, the front face 22 or the upper end face 16.

[0041] The heating boxes 30 are in fluid communication with the air supply column at supply ports 26 visible in [Fig. 2]. Each heating box 30 is mounted on the supply column opposite a supply port 26. Air flows through the supply port 26 into the heating box 30 in an inlet direction B.

[0042] The air supply column 12 comprises a fan 24 for generating air circulation from the inlet orifice 14 to the supply orifices 26, and therefore to the heating boxes 30. The action of the fan 24 thus allows the heating boxes 30 to be supplied with air.

[0043] According to a variant, the air supply column 12 may comprise a plurality of fans 24 arranged along the supply axis A. Thus, each fan 24 may be arranged so as to supply one or more predetermined heating boxes 30.

[0044] Each heating box 30 comprises a plurality of outlet orifices 46 communicating with the interior box space 37. Thus, air circulation can occur from the inlet orifices 14 to the outlet orifices 46 by passing through the supply orifices 26.

[0045] The heater 44 is positioned in the interior box space 37 such that air from the supply port 26 contacts the heater 44 before reaching an outlet port 46. The temperature of the air can therefore be increased via the heater 44 when the latter is in operation.

[0046] Figures 2 and 3 show the towel radiator 10 in a vertical configuration and a horizontal configuration respectively. By vertical configuration is meant a configuration in which the supply axis A is oriented vertically. In the same way, by horizontal configuration is meant a configuration in which the supply axis A is oriented horizontally. The radiator towel radiator 10 is configured to be installed in a vertical or horizontal configuration. In addition, the towel radiator 10 is configured so that its orientation can be changed during the life of the product. It is thus possible to use the same towel radiator 10 in a vertical and then horizontal configuration, and vice versa.

[0047] Referring to Figures 3 and 4, each heating box 30 defines a first 50, a second 52, a third 54 and a fourth 56 end portions. Each of the first 50, second 52, third 54 and fourth 56 end portions corresponds to a portion of the heating box 30 disposed near an edge of the heating box 30.

[0048] The first end portion 50 is disposed at an upper area of ​​the heating box 30 when the air supply column 12 is oriented horizontally. The first end portion 50 is disposed near or along one of the box side faces 42.

[0049] The second end portion 52 is disposed at an upper area of ​​the heating box 30 when the air supply column 12 is oriented vertically. The second end portion 52 is disposed near or along the upper face of the box 38.

[0050] The third end portion 54 is disposed at a lower area of ​​the heating box 30 when the air supply column 12 is oriented horizontally. The third end portion 54 is disposed near or along one of the box side faces 42. The third end portion 54 is disposed opposite the first end portion 50 relative to a central box area 60.

[0051] The fourth end portion 56 is disposed at a lower area of ​​the heating box 30 when the air supply column 12 is oriented vertically. The fourth end portion 56 is disposed near or along the lower box face 40. The fourth end portion 56 is disposed opposite the second end portion 52 relative to the central box area 60.

[0052] The first 50, second 52, third 54 and fourth 56 end portions may be of any shape and, depending on compatibility with the configurations described below, non-contiguous. Preferably, each of the first 50, second 52, third 54 and fourth 56 end portions corresponds to a parallelepiped volume starting from an edge of the heating box 30 and extending towards the central zone 60.

[0053] Each heating box 30 defines a maximum longitudinal dimension and a maximum transverse dimension.

[0054] The maximum longitudinal dimension is taken along the feed axis A between a longitudinal upper edge and a longitudinal lower edge. The maximum transverse dimension is taken transversely to the feed axis A between a transverse upper edge and a transverse lower edge.

[0055] The first end portion 50 is defined as being a portion of the heating box 30 extending, from the upper transverse edge and towards the lower transverse edge, over a distance less than or equal to 30% of the maximum transverse dimension

[0056] The second end portion 52 is defined as being a portion of the heating box 30 extending, from the longitudinal upper edge and towards the transverse lower edge, over a distance less than or equal to 30% of the maximum longitudinal dimension.

[0057] Similarly, the third end portion 54 is defined as being a portion of the heating box 30 extending, from the transverse lower edge and towards the transverse upper edge, over a distance less than or equal to 30% of the maximum transverse dimension.

[0058] The fourth end portion 56 is defined as being a portion of the heating box extending, from the longitudinal lower edge and towards the transverse upper edge, over a distance less than or equal to 30% of the maximum longitudinal dimension.

[0059] The towel radiator 10 further comprises at least one thermal limiter 62 arranged in each heating box 30 to control that the temperature in each of the heating boxes 30 does not exceed a predetermined threshold. In particular, each thermal limiter 62 is configured to transmit a safety signal to the controller when the temperature in the heating box 30 reaches a temperature threshold representative of overheating. This overheating can for example be determined when the temperature inside the heating box 30 is greater than or equal to 50°C.

[0060] The towel radiator 10 is configured such that said at least one thermal limiter 62 is always arranged at an upper zone of the heating box, whether the air supply column 12 is horizontal or vertical. For this, said at least one thermal limiter 62 is arranged jointly in the first 50 and second 52 end portions.

[0061] According to a first configuration, each heating box 30 comprises two thermal limiters 62 arranged respectively in the first end portion 50 and the second end portion 52. Thus, each heating box 30 comprises a thermal limiter 62 arranged in an upper zone of the heating box 30 whether the air supply column is oriented horizontally or vertically. tically.

[0062] In this first configuration, said at least one thermal limiter comprises for each heating box a horizontal thermal limiter and a vertical thermal limiter.

[0063] The horizontal thermal limiter is arranged in the first end portion 50 and configured to transmit to the controller a first safety signal when the temperature in the heating box 30 reaches said temperature threshold representative of overheating.

[0064] The vertical thermal limiter is arranged in the second end portion 52 and configured to transmit a second safety signal to the controller when the temperature in the heating box 30 reaches said temperature threshold representative of overheating.

[0065] The towel radiator 10 also preferably comprises a member for determining the horizontal or vertical orientation of said at least one supply column 12. Determining the orientation of the supply column 12 makes it possible to inhibit one of the horizontal or vertical thermal limiters or to know the signal coming from which thermal limiter to consider. This determining member may be a sensor, such as a gyroscope, or information transmitted by the installer himself, in particular by means of a human-machine interface. In the latter case, it may be provided that the orientation of the towel radiator 10 must be entered when it is started. The sensor may also be one of a ball switch associated with a moving part and a resistive angle sensor or encoder associated with a moving part.The moving part in these last two types of sensor being configured to actuate the sensor when the towel dryer is in a predetermined orientation.

[0066] This orientation determining member is configured to transmit to the controller a first orientation signal when said at least one feed column 12 is determined to be horizontally oriented. The orientation determining member is also configured to transmit to the controller a second orientation signal when said at least one feed column 12 is determined to be vertically oriented.

[0067] Thus, the controller can be configured to stop the operation of a heating member 44 when the controller receives either the first orientation signal and the first safety signal, representative of overheating in this heating box 30 when the towel radiator 10 is horizontal, or the second orientation signal and the second safety signal, representative of overheating in this heating box 30 when the towel radiator 10 is vertical.

[0068] According to a second configuration, each heating box 30 comprises a single thermal limiter 62 disposed jointly in the first 50 and the second 52 end portions. In other words, the thermal limiter 62 is disposed in an area which belongs to both the first 50 and the second 52 end portions. This implies that the first 50 and second 52 end portions of each heating box 30 overlap at a common upper portion 51 of said heating box 30. The thermal limiter 62 is disposed in said common upper portion 51 of each heating box 30. Thus, the thermal limiter 62 is disposed in an upper area of ​​the heating box 30 whether the air supply column 12 is oriented horizontally or vertically.

[0069] In this second configuration, the towel radiator can dispense with the orientation determining member because the controller can stop the operation of a heating member 44 upon receipt of a safety signal from the thermal limiter, regardless of the orientation. The orientation determining member is, however, compatible with this second configuration.

[0070] The towel radiator 10 may further comprise at least one thermal regulation sensor 64. The thermal regulation sensor 64 has the function of enabling the regulation of the heating provided by the towel radiator 10 according to a set temperature. For the comfort of the user, it is preferable for this regulation sensor 64 to be arranged at a lower zone of the towel radiator 10 to ensure that the set temperature is reached.

[0071] Said at least one regulation sensor is configured to transmit a regulation signal to the controller when the temperature in the heating box 30 reaches a regulation temperature threshold. This regulation temperature threshold is for example greater than or equal to 40°C. The regulation temperature threshold depends on the setpoint temperature but may be different from it. This setpoint temperature may be modified by the user.

[0072] The towel radiator 10 may comprise one or two thermal regulation sensors 64 for all of the heating boxes 30.

[0073] The towel radiator 10 is configured such that said at least one thermal regulation sensor 64 is always arranged at a lower zone of the heating box, whether the air supply column 12 is horizontal or vertical. For this, said at least one thermal regulation sensor 64 is jointly arranged in the third end portion 54 of one of the heating boxes 30 and / or the fourth end portion 56 of one of the heating boxes 30.

[0074] Said at least one thermal regulation sensor 64 is configured to measure a temperature and transmit a setpoint signal to the controller when the temperature in the heating box 30 reaches a regulation temperature threshold.

[0075] According to a third configuration, compatible with the first and second configurations, the towel radiator 10 comprises at least two thermal regulation sensors 64 arranged respectively in the third end portion 54 of one of the heating boxes 30 and the fourth end portion 56 of a heating box arranged at a lower end of the air supply column 12.

[0076] In this third configuration, the towel radiator 10 comprises a horizontal thermal regulation sensor and a vertical thermal regulation sensor.

[0077] The horizontal thermal regulation sensor is arranged in the third end portion 54 of one of the heating boxes and configured to transmit to the controller a first setpoint signal when the temperature in the heating box 30 reaches said regulation temperature threshold.

[0078] The vertical thermal regulation sensor is arranged in the fourth end portion 56 and configured to transmit a second setpoint signal to the controller when the temperature in the heating box 30 reaches said regulation temperature threshold.

[0079] According to a fourth configuration, compatible with the first and second configurations, the towel radiator 10 comprises a single thermal regulation sensor arranged jointly in the third 54 and the fourth 56 end portions of the same heating box 30 arranged at a lower end of the air supply column 12. This thermal regulation sensor 64 is therefore arranged at a lower box of the towel radiator. The thermal regulation sensor 64 is arranged both in the third 54 and the fourth 56 end portions of the lower box.

[0080] The third 54 and fourth 56 end portions of said lower box 30 overlap at a common lower portion 55 of said lower box. The thermal regulation sensor is arranged in said common lower portion 55.

Claims

Claims

1. Towel radiator (10) orientable horizontally or vertically, comprising: - at least one air supply column (12) extending along a supply axis (A), and - a plurality of heating boxes (30) mounted on said at least one supply column (12), transversely to the supply axis (A), each heating box (30) being in fluid communication with said at least one air supply column (12), each heating box (30) defining a first (50) and a second (52) end portion arranged at an upper zone of the heating box respectively when the air supply column (12) is oriented horizontally and vertically, - at least one heating member (44) arranged in each heating box, - a controller for controlling the heating members (44),and - at least one thermal limiter (62) arranged in each heating box for transmitting a safety signal when the temperature in the heating box reaches a temperature threshold representative of overheating, characterized in that said at least one thermal limiter (62) is arranged jointly in the first (50) and the second (52) end portions of each heating box (30) so as to be able to be arranged in the upper zone of the heating box when said at least one air supply column (12) is oriented vertically or horizontally.,

2. A towel radiator (10) according to claim 1, said controller is configured to stop the operation of the heating member (44) when the controller receives said safety signal.

3. Towel radiator (10) according to claim 1 or 2, comprising, for each heating box: - either a thermal limiter (62) arranged jointly in the first (50) and the second (52) end portions, - or two thermal limiters (62) arranged respectively in the first end portion (50) and the second end portion (52).

4. Towel radiator (10) according to one of claims 1 to 3, wherein the first (50) and second (52) end portions of each heating box (30) overlap at a common upper portion (51) of said heating box (30), said at least one thermal limiter (62) being arranged in said common upper portion (51) of each heating box.

5. Towel radiator (10) according to one of claims 1 to 3, said at least one thermal limiter (62) comprises for each heating box: - a horizontal thermal limiter (62) arranged in the first end portion (50) and configured to transmit to the controller a first safety signal when the temperature in the heating box (30) reaches said temperature threshold representative of overheating, and - a vertical thermal limiter (62) arranged in the second end portion (52) and configured to transmit to the controller a second safety signal when the temperature in the heating box (30) reaches said temperature threshold representative of overheating.

6. Towel radiator (10) according to claim 5, further comprising a member for determining the horizontal or vertical orientation of said at least one air supply column (12), said member for determining the orientation being configured to transmit to the controller: - a first orientation signal when said at least one air supply column (12) is determined to be oriented horizontally, and - a second orientation signal when said at least one supply column is determined to be oriented vertically.

7. A towel radiator (10) according to claim 6, wherein the orientation determining member is one of a ball switch associated with a moving part, a resistive angle sensor or encoder associated with a moving part, a gyroscope and a human-machine interface allowing a user to declare the orientation of said at least one air supply column.

8. A towel radiator (10) according to claim 6 or 7, wherein the controller is configured to stop operation of the heating member when the controller receives: - the first orientation signal and the first safety signal, or - the second orientation signal and the second safety signal.

9. Towel radiator (10) according to one of the preceding claims, further comprising at least one thermal regulation sensor (64), each heating box (30) having a third (54) and a fourth (56) end portions arranged at a lower zone of the heating box respectively when the air supply column (12) is oriented horizontally and vertically, said at least one thermal regulation sensor (64) being arranged in the third end portion (54) of one of the heating boxes and / or the fourth end portion (56) of one of the heating boxes.

10. A towel radiator (10) according to claim 9, wherein said at least one thermal regulation sensor (64) is configured to measure a temperature in said at least one heating box and transmit a setpoint signal when the temperature in the heating box (30) reaches a regulation temperature threshold.

11. Towel radiator (10) according to claim 9 or 10, comprising: - either a thermal regulation sensor (64) arranged jointly in the third (54) and the fourth (56) end portions of the same heating box arranged at a lower end of the air supply column, - or two thermal regulation sensors (64) arranged respectively in the third end portion (54) of one of the heating boxes (30) and the fourth end portion (56) of said heating box arranged at the lower end of the air supply column (12).

12. A towel radiator (10) according to any one of claims 9 to 11, wherein the plurality of heating boxes define a lower box disposed at a lower end of the air supply column (12), the third (54) and fourth (56) end portions of said lower box overlapping at a common lower portion of said lower box, said thermal regulation sensor (64) being disposed in said common lower portion.

13. A towel radiator (10) according to any one of claims 9 to 11, wherein said at least one thermal regulation sensor (64) comprises: - a horizontal thermal regulation sensor (64) arranged in the third end portion (54) of one of the heating boxes and configured to transmit to the controller a first setpoint signal when the temperature in the heating box reaches said regulation temperature threshold, and - a vertical thermal regulation sensor (64) arranged in the fourth end portion (56) and configured to transmit to the controller a second setpoint signal when the temperature in the heating box reaches said regulation temperature threshold.

14. A towel radiator (10) according to any preceding claim, wherein each heating box defines: - a maximum longitudinal dimension along the supply axis (A) between a longitudinal upper edge and a longitudinal lower edge, and - a maximum transverse dimension taken transversely to the supply axis (A) between a transverse upper edge and a transverse lower edge, wherein: * the first end portion (50) is defined as being a portion of the heating box extending, from the transverse upper edge and towards the transverse lower edge, over a distance less than or equal to 30% of the maximum transverse dimension, * the second end portion (52) is defined as being a portion of the heating box extending, from the longitudinal upper edge and towards the transverse lower edge, over a distance less than or equal to 30% of the maximum longitudinal dimension.

15. A towel radiator (10) according to claim 14 in combination with claim 9, wherein: * the third end portion (54) is defined as being a portion of the heating box extending, from the lower transverse edge and towards the upper transverse edge, over a distance less than or equal to 30% of the maximum transverse dimension, * the fourth end portion (56) is defined as being a portion of the heating box extending, from the longitudinal lower edge and towards the transverse upper edge, over a distance less than or equal to 30% of the maximum longitudinal dimension.