Further characteristics and advantages of the invention will become better apparent from the following detailed description of a preferred but not exclusive embodiment thereof, illustrated by way of non-limiting example in the accompanying drawings, wherein:
With reference to the figures, a conditioning apparatus for racks for electrical, electronic and telecommunications instruments and the like according to the invention is generally designated by the reference numeral 10 in its first exemplifying and non-limiting embodiment, which is shown in
The apparatus 10 comprises, in the embodiment of
Air passage gaps 18 and 19 respectively are formed between the door 12 and the rack chassis 16 and between the back 15 and the rack chassis 16.
The cabinet 11 is open in an upper region onto a first air conveyance element 20 and in a lower region onto a second air conveyance element 21.
The first and second elements 20, 21 are in turn connected respectively to a third conveyance element 22 and a fourth conveyance element 23, which are arranged above and below an associated first air-conditioning module 24 which is laterally adjacent to the cabinet 11; the conditioning module 24 is designed to draw warm air from the cabinet 11 and inject refrigerated air therein.
The apparatus 10 also comprises a second air-conditioning module 25, which is laterally adjacent to the cabinet 11 on the opposite side with respect to the first module 24.
The second module 25 has a fifth upper air conveyance element 26 and a sixth lower air conveyance element 27, which are connected to the adjacent conveyance elements 20 and 21 of the cabinet 11.
The lower conveyance elements 23 and 27 of the two conditioning modules 24 and 25 are each provided, in this first embodiment of the apparatus according to the invention, with a first shutter 28 and 29 respectively, which is adapted to allow, modulate or inhibit the circulation of air between said conveyance elements 23 or 27 and the lower conveyance element 21 of the cabinet 11.
The first shutters 28 and 29, of a per se known type, are made of plastic or metallic material, and their configuration, i.e., their degree of opening, is managed by electromechanical actuators, of a per se known type and not shown, which in turn are managed by a central unit for controlling the entire apparatus 10.
The first conveyance element 20 and the second conveyance element 21 associated with the cabinet 11 are each provided with at least one additional shutter for conditioning of the free-cooling type of the interposed cabinet 11, at least one of said first and second conveyance elements 20, 21 being provided with ventilation means for forced circulation of the ambient air within the cabinet 11.
In said first exemplifying and non-limiting embodiment of the invention, the first conveyance element 20 is provided with two second upper shutters 30, each of which is arranged at a part of the ventilation means arranged within the first conveyance element 20.
The ventilation means are constituted by two emergency fans 31, which are clearly visible in the partially exploded view of
The second upper shutters 30 can be made of metallic or plastic material and can be selectively motorized or gravity-operated.
In said first exemplifying and non-limiting embodiment of the invention, the second conveyance element 21 has a third lower and front shutter 32, also of the motorized or gravity-operated type, which is made of plastic or metallic material.
The conditioning module 24 or 25 contains internally, as exemplified for the module 25 in
The upper conveyance elements 20, 22 and 26 are each constituted by a plenum which is connected to the adjacent upper conveyance element, so as to form an air intake manifold on the inside of the cabinet 11 toward the conditioning module 24 or 25.
The lower conveyance elements 21, 23 and 27 are each constituted by a footing panel for resting on the ground, which is connected to an adjacent lower conveyance element by means of a first shutter, said footing panels forming an additional manifold for introducing conditioned air from the active conditioning module to the cabinet 11.
The second embodiment of the apparatus, shown in
The figures show schematically in broken lines the emergency fans 131a and 131b of the cabinets 111a and 111b and the fans 133 of the conditioning modules.
The apparatus 110 therefore comprises two cabinets 111a and 111b and two conditioning modules, plus one redundant one; this embodiment is to be considered merely an example, since in general the apparatus according to the invention is understood to be composed of N cabinets and (N+1) conditioning modules.
A footing panel 127 of the second external conditioning module 125 has a single first shutter 129, which in
A footing panel 123 of the first central conditioning module 124 is provided with two first shutters 128 and 137, each for adjusting the passage of air alternately toward one or the other of the adjacent footing panels 121a or 121b of the adjacent cabinets; in
A footing panel 138 of the third conditioning module 136 has a single first shutter 139, which is shown schematically open.
In said first operating mode of the apparatus 110, the first cabinet 111a is cooled by the first central conditioning module 124, the second cabin 111b is cooled by the third module 136, and the second module 125 is switched off or in standby.
In
Said second mode entails that the first shutters 129 and 139 respectively of the second module 125 and of the third module 136 are open, while the first shutters of the first central module 124 are both closed.
Said second mode therefore connects the first cabinet 111a to the second module 125 and the second cabinet 111b to the third module 136, while the first central module 124 is switched off or in standby.
The configuration of the apparatus according to the invention with N cabinets and N+1 modules allows to always have one conditioning module in standby available to be connected to a cabinet which is in critical conditions due to the malfunction of the conditioning module associated therewith at that time, and allows to reduce the workload of each conditioning module by alternately placing in standby, at regular intervals, one after the other, all the conditioning modules or at least some of them.
Said third emergency mode entails that the three conditioning modules 124, 125 and 136 are inoperative for any reason and the respective first shutters 128 and 137, 129 and 139 are all closed.
In this situation, the cooling of the cabinets 111a and 111b is ensured by the emergency fans 131, simultaneously with the activation of which the second shutters 130 and third shutters 132 are opened.
In this mode, the cabinets 111a and 111b, isolated from the nearby inactive conditioning modules, are crossed from the bottom upward by ambient air, which passes through them along the path shown schematically in
Said third operating mode can be started manually or automatically by the electronic control unit of the apparatus 110.
The emergency fans 131a and 131b are powered by uninterruptible power supplies (UPS), which are internal or external to the rack cabinet, so as to make the system independent of any electric power outages.
In practice it has been found that the invention thus described solves the problems noted in known types of conditioning apparatus for racks for electrical, electronic and telecommunications instruments and the like.
In particular, the present invention provides a conditioning apparatus for racks for electrical, electronic and telecommunications instruments and the like which is capable of ensuring the cooling of the electronic instruments contained therein even in case of malfunction of all the air-conditioning modules, thanks to the emergency fans 31 and 13a and 13b which are installed in the upper conveyance elements of the cabinets and to the corresponding associated shutters.
Further, the present invention provides an apparatus which, if it is provided with a plurality of rack cabinets, can condition them all even if any one of the conditioning modules that belong to the apparatus fails, thanks to the modification of the air passage paths allowed by the shutters with which the conditioning modules and the cabinets are provided.
Moreover, the present invention provides an apparatus which can be installed easily for a plurality of rack cabinets arranged in the vicinity of each other.
Further, the present invention provides an apparatus by way of which it is possible to modulate the air flow-rate and change its path for an always optimum cooling of the involved racks.
Moreover, the present invention provides an apparatus for conditioning racks for electrical, electronic and telecommunications instruments and the like which can be manufactured cheaply with known systems and technologies.
In practice, the materials employed, so long as they are compatible with the specific use, as well as the dimensions, may be any according to requirements and to the state of the art.
The disclosures in Italian Patent Application No. PD2006A000176 from which this application claims priority are incorporated herein by reference.
Number | Date | Country | Kind |
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PD2006A000176 | May 2006 | IT | national |