EP3708719B1 - Robinetterie sanitaire pour un réseau d'eau potable de bâtiment - Google Patents

Robinetterie sanitaire pour un réseau d'eau potable de bâtiment Download PDF

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Publication number
EP3708719B1
EP3708719B1 EP19219504.8A EP19219504A EP3708719B1 EP 3708719 B1 EP3708719 B1 EP 3708719B1 EP 19219504 A EP19219504 A EP 19219504A EP 3708719 B1 EP3708719 B1 EP 3708719B1
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EP
European Patent Office
Prior art keywords
fitting
controller
mobile radio
sanitary
sanitary fitting
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Active
Application number
EP19219504.8A
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German (de)
English (en)
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EP3708719A1 (fr
Inventor
Norbert Hof
Guido Wurm
Andreas Ueberschär
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Schell GmbH and Co KG
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Schell GmbH and Co KG
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Publication of EP3708719A1 publication Critical patent/EP3708719A1/fr
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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03BINSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
    • E03B7/00Water main or service pipe systems
    • E03B7/07Arrangement of devices, e.g. filters, flow controls, measuring devices, siphons or valves, in the pipe systems
    • E03B7/08Arrangement of draining devices, e.g. manual shut-off valves
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/05Arrangements of devices on wash-basins, baths, sinks, or the like for remote control of taps
    • E03C1/055Electrical control devices, e.g. with push buttons, control panels or the like
    • E03C1/057Electrical control devices, e.g. with push buttons, control panels or the like touchless, i.e. using sensors

Definitions

  • the invention relates to a sanitary fitting for a building drinking water network according to claim 1 and a method for operating a sanitary fitting according to claim 16.
  • sanitary fittings designed as water outlet points for hygienic flushing.
  • the sanitary fittings must be designed to be electrically controllable, cf. DE 10 2014 104 393 A1 .
  • a well-known plumbing fixture ( DE 93 13 983 U1 ) is designed, for example, as a urinal.
  • the local building drinking water network is flushed by the automatic actuation of such controllable water outlet points.
  • the sanitary fittings are coupled via a data bus system to a controller arranged in the relevant building, so that a flushing plan stored in the controller can be processed automatically.
  • the bus system between the control and the sanitary fittings is structured via intermediate controls, which leads to a correspondingly complex control structure, particularly in the case of complex building drinking water networks. This also means that a building technology extension is always accompanied by a corresponding control technology challenge. However, there is no other way of doing this with the known sanitary fittings.
  • the invention is based on the problem of designing and developing the known sanitary fitting for a building drinking water network in such a way that the flexibility in hygienic flushing is optimized with little effort in terms of control technology.
  • a sanitary fitting can in principle be configured to be mobile radio-capable, so that the sanitary fitting as such can communicate via a mobile radio connection.
  • the entire building drinking water network can be designed flexibly without expecting any restrictions in terms of control technology. It goes back to the idea that each sanitary fitting organizes its assigned mobile phone connection independently. Retrofitting an existing building drinking water network is also unproblematic.
  • a sanitary fitting for a building's drinking water network is proposed with a fitting housing, with an electrically controllable water outlet valve and with a mobile radio-capable fitting control.
  • the faucet control is set up to receive communication objects in the form of hygiene flushing instructions via a mobile phone connection and to implement them by activating the water outlet valve.
  • the hygienic flushing in a building drinking water network is improved with the proposed sanitary fitting, since every sanitary fitting can now be controlled for hygienic flushing, provided that there is a corresponding mobile phone reception.
  • the hygienic flushing is additionally improved by the fact that the availability of the sanitary fittings for a higher-level controller, which here and preferably is a cloud server system, is extremely high. As mentioned above, this is due to the fact that each sanitary fitting is assigned its own mobile phone connection.
  • the faucet control is set up to establish a mobile phone connection to a public mobile phone access point and the hygiene flushing instructions via the mobile phone connection received from an above internet-based cloud server system.
  • Such a cloud server system is a server system that is spatially independent of the building's drinking water network to be operated, since it communicates with the building's drinking water network via the Internet.
  • the cloud server system preferably makes available the computing power that is currently required by the building's drinking water network.
  • the cloud server system has access to information from external data sources via the Internet, on the basis of which hygienic flushing can be optimized according to various criteria.
  • An example of this is weather information, which provides information on whether nucleation in the building drinking water network is weather-supported, which should result in increased hygienic flushing.
  • a mobile radio connection is provided between a public mobile radio access point and the fitting control.
  • the cellular access point is a gateway between the cellular network and the Internet.
  • a decentralized control approach was chosen according to the proposal, in which the proposed sanitary fitting, taken by itself, establishes a mobile phone connection to the relevant public mobile phone access point.
  • the term "public" merely means that the mobile radio access point is also accessible to mobile radio subscribers who do not belong to the building's drinking water network.
  • the preferred refinements according to claims 3 and 4 relate to the possibility of bidirectional data transmission via the cellular connection, in that the faucet controller is set up to generate faucet communication objects and to transmit them via the cellular connection, here and preferably to a cloud server system.
  • the dashboard communication objects represent status information and/or dashboard sensor information and/or user inputs.
  • Other types of valve communication objects are conceivable.
  • a feedback from the valve controls can be set up, which ranges from a simple confirmation of the implementation of a hygiene flushing instruction to a control-technical feedback.
  • the fitting control has a central control unit, which can be constructed, for example, in the manner of a single-board computer.
  • the central control unit is used, among other things, to implement the received hygiene instructions by activating the water outlet valve accordingly.
  • the fitting control preferably has a mobile radio unit according to claim 6, which is designed in a particularly preferred embodiment according to claim 7 as a narrowband LTE unit (Long Term Evolution mobile radio standard).
  • LTE unit Long Term Evolution mobile radio standard
  • the fitting control according to claim 8 can have a near-field communication module that works according to protocols such as Bluetooth, Bluetooth Low Energy, NFC or the like.
  • the further preferred embodiments according to claims 9 to 11 relate to the communication objects to be transmitted in connection with a hygiene flushing instruction.
  • the faucet control is set up to receive hygiene flushing parameters of a hygiene flushing instruction and to implement them as mentioned above.
  • the hygiene flushing parameters are a predetermined flushing time and a predetermined flushing duration according to claim 10.
  • Hygienic rinsing can be implemented in different ways.
  • the implementation of a hygiene flushing instruction is based on the actuation of a water outlet valve to open the water outlet valve.
  • the water outlet valve is used twice, namely on the one hand for the intended use of the sanitary fitting and on the other hand for the implementation of the hygiene flushing instructions.
  • the further preferred embodiments according to claims 12 to 15 relate to the equipment of the faucet control with a sequence control, so that the hygiene flushing instruction does not only have to include a switching command, but can trigger entire control sequences, ie control programs.
  • the proposed sanitary fittings 1-5 shown in the drawing are two building drinking water networks also shown in the drawing 6, 7 assigned.
  • the sanitary fittings 1-4 are assigned to the building drinking water network 6 and the sanitary fitting 5 to the building drinking water network 7 .
  • the sanitary fittings 1-5 can be any sanitary fitting that has a water outlet valve for letting out drinking water. This includes, for example, washbasin fittings, shower facilities, toilets, urinals, or the like. Correspondingly, this does not include all types of shut-off valves that do not allow water to escape.
  • FIG 1 shows that an internet-based cloud server system 8 is provided.
  • internet-based in connection with the cloud server system 8 means that the cloud server system 8 is set up to communicate via an internet connection, as will be explained below.
  • the proposed sanitary fittings 1-5 each have a fitting housing 1a-5a, as can be seen from the drawing.
  • the proposed sanitary fittings 1-5 are also equipped with an electrically controllable water outlet valve 1b-5b and a mobile phone-capable fitting control 1c-5c.
  • Electrically controllable means here in general that the sanitary fittings 1-5 designed as water outlet points are set up to be opened and closed electrically by a corresponding control by the fitting control 1c-5c in order to allow or block the discharge of drinking water.
  • the faucet controls 1-5 are each set up to receive communication objects in the form of hygiene flushing instructions via a mobile phone connection 1d-5d and to implement them by activating the water outlet valve 1b-5b.
  • the respective fitting control 1c-5c is set up to set up a mobile phone connection 1d-5d to a public mobile phone access point 9 and to send the hygiene flushing instructions via the mobile phone connection 1d-5d from an above, Internet-based cloud server system 8 receive.
  • Such operating modes can be, for example, a comfort mode, an energy-saving mode, a water-saving mode or the like.
  • the configuration data record can comprise only a single configuration parameter or else a plurality of configuration parameters.
  • a communication object can represent an emergency stop instruction, upon receipt of which the proposed fitting controls 1c-5c close the respective water outlet valve 1b-5b.
  • bidirectional communication is provided between the cloud server system 8 and the fitting controls 1c-5c. It is preferably the case that the fitting controls 1c-5c are set up to generate fitting communication objects and to transmit them to the cloud server system 8 via the respective mobile radio connection 1d-5d.
  • Such dashboard communication objects can represent, for example, status information and/or dashboard sensor information and/or user inputs.
  • the status information can concern, for example, a connection status to the mobile radio access point 9, the battery status of a supply battery of the fitting control 1c-5c or the confirmation of the completion of a rinsing action.
  • the sanitary fitting 1-5 has at least one sensor 10, which is shown on the sanitary fitting 3 by way of example.
  • the sensor 10 generates fitting sensor information, which is transmitted to the cloud server system 8 as a fitting communication object via the cellular connection 1d-5d.
  • the sensor 10 is a temperature sensor. The use of other types of sensors is conceivable.
  • the control engineering structure of the in 1 Valve control 3 shown results from the representation according to 2 .
  • the fitting control 3c there has a central control unit 11, by means of which the received hygiene instructions can be implemented by activating the water outlet valve 3b. It has already been pointed out that the central control unit 11 can be implemented in different ways, in particular as a single-board computer.
  • FIG. 1 further shows that the fitting control 3c has a mobile radio unit 12, by means of which the mobile radio connection 3d can be established in order to communicate with the cloud server system 8.
  • a particularly compact configuration results from the fact that the mobile radio unit 12, here and preferably together with the entire fitting control 3c, is arranged in the fitting housing 3a. Alternatively or additionally, provision can be made for the water outlet valve 1b-5b to be arranged in the fitting housing 3a.
  • the mobile radio unit 12 is designed as an LTE unit (Long Term Evolution Mobile Radio Standard), here and preferably as a narrowband LTE unit, is particularly advantageous with regard to a secure mobile radio connection.
  • LTE unit Long Term Evolution Mobile Radio Standard
  • An above mobile radio unit 12 in particular a mobile radio unit 12 designed as an LTE unit, can be arranged in the fittings housing 3a, with an antenna unit assigned to the mobile radio unit 12 also being arranged in the fittings housing 3a, in a section of the fittings housing 3a or outside of the fittings housing 3a, depending on the design can.
  • the mobile radio unit 12 can be arranged, for example, together with a power pack or the like arranged separately from the sanitary fitting 1-5.
  • the representation according to 1 shows that the communication between the cloud server system 8 and the sanitary fittings 1-5 takes place without intermediate data processing between the cloud server system 8 and the sanitary fittings 1-5.
  • the Internet connection 13 between the cloud server system 8 and the cellular access point 9 in the cellular connections 1d-5d and in the mobile access point 9 itself, which is merely a gateway, no data processing takes place that goes beyond measures for data transport.
  • the proposed sanitary fitting 3 preferably has a near-field communication module 14, with the near-field communication module 14 being able to transmit communication objects between the fitting controller 3c and a peripheral device, here preferably a programming device.
  • the fitting control 3c can be assigned a communication unit 15 which can be plugged from the outside onto the sanitary fitting 3 and thus onto the fitting control 3c, in particular via an electrical plug connection.
  • the communication unit 15 can also be a mobile radio unit as mentioned above.
  • the proposed fitting control 3c shown additionally has a number of user interfaces in the form of an infrared sensor 16, a capacitive sensor 17 or another sensor 18 that can be attached to the sanitary fitting 3 from the outside for determining user inputs.
  • the representation according to 2 finally shows that the faucet control 3c has a number of driver units, for example a driver unit 19 assigned to the water outlet valve 1c or a driver unit 20 assigned to a mixing unit.
  • the faucet controller 1c-5c is preferably set up to receive hygiene flushing parameters of a hygiene flushing instruction via the relevant mobile phone connection 1d-5d and to implement them by actuating the water outlet valve 1b-5b.
  • Such hygienic rinsing parameters can be, for example, the rinsing time or the rinsing duration when a hygiene rinsing instruction for the opening of the water outlet valve 1b-5b to a should be directed at such a predetermined flushing time and/or over such a predetermined flushing duration.
  • a hygiene flushing instruction corresponds to the actuation of the water outlet valve 1b-5b to open this water outlet valve 1b-5b.
  • the hygiene flushing instruction is preferably a simple switching instruction to the water outlet valve 1b-5b.
  • the faucet controller 1c-5c here and preferably the central control unit 11 of the faucet controller 1c-5c, has a sequence controller that is set up, upon receipt of a hygienic flushing instruction, to execute a control sequence assigned to the hygienic flushing instruction from at least one control action , preferably from at least two control actions to implement.
  • a control action can be, for example, the above-mentioned opening of the water outlet valve 1b-5b.
  • the sequence control is set up to implement a control sequence assigned to the hygienic flushing instruction in a time-controlled manner upon receipt of a hygienic flushing instruction.
  • the implementation of the control sequence can be repeated cyclically upon receipt of the associated hygiene flushing instruction.
  • the sequence control is preferably equipped with a time module which, in a particularly preferred embodiment, provides a time sequence or a time.
  • the above-described equipment of the central control unit 11 with a sequence control transfers part of the control over the hygiene flushing to the proposed sanitary fitting, so that the hygiene flushing instruction is limited to a simple trigger command for the control sequence in question, possibly with the transmission of corresponding hygienic flushing parameters. This means that the amount of data required for the hygienic flushing of the in 1 shown building drinking water networks 6, 7 is required extremely low.
  • the valve control 1c-5c can be equipped with a number of different, additional control functions. This includes, for example, a module for self-diagnosis, for example to check the function of the water outlet valve 1b-5b.
  • a mobile phone connection 1d-5d to a public mobile phone access point 9 is set up by the valve controller 1c-5c, with the hygiene flushing instructions being received from an internet-based cloud server system 8 via the mobile phone connection 1d-5d.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Selective Calling Equipment (AREA)
  • Telephonic Communication Services (AREA)

Claims (16)

  1. Élément de robinetterie sanitaire pour un réseau d'eau potable de bâtiment (6, 7), comprenant un boîtier d'élément de robinetterie (1a-5a), comprenant une vanne de sortie d'eau (1b-5b) commandable électriquement et comprenant une commande d'élément de robinetterie (1c-5c) apte à la radiocommunication mobile, la commande d'élément de robinetterie (1c-5c) étant conçue pour recevoir des objets de communication sous la forme d'instructions de rinçage d'hygiène par le biais d'une liaison de radiocommunication mobile (1d-5d) et les mettre en œuvre par une commande de la vanne de sortie d'eau (1b-5b).
  2. Élément de robinetterie sanitaire selon la revendication 1, caractérisé en ce que la commande d'élément de robinetterie (1c-5c) est conçue pour établir une liaison de radiocommunication mobile (1d-5d) avec un point d'accès de radiocommunication mobile (9) public et recevoir les instructions de rinçage hygiénique par le biais de la liaison de radiocommunication mobile (1d-5d), de préférence en provenance d'un système serveur en nuage (8) basé sur l'Internet.
  3. Élément de robinetterie sanitaire selon la revendication 1 ou 2, caractérisé en ce que la commande d'élément de robinetterie (1c-5c) est conçue pour générer des objets de communication d'élément de robinetterie et les communiquer par le biais de la liaison de radiocommunication mobile (1d-5d), de préférence en ce que les objets de communication d'élément de robinetterie représentent des informations d'état d'élément de robinetterie et/ou des informations de capteur d'élément de robinetterie et/ou des saisies d'utilisateur.
  4. Élément de robinetterie sanitaire selon l'une des revendications précédentes, caractérisé en ce que l'élément de robinetterie (1-5) possède au moins un capteur (10) qui génère une information d'état d'élément de robinetterie, et en ce que la commande d'élément de robinetterie (1c-5c) est conçue pour communiquer l'information d'état d'élément de robinetterie en tant qu'objet de communication d'élément de robinetterie par le biais de la liaison de radiocommunication mobile (1d-5d) .
  5. Élément de robinetterie sanitaire selon l'une des revendications précédentes, caractérisé en ce que la commande d'élément de robinetterie (3c) possède une unité de commande centrale (11) au moyen de laquelle les instructions d'hygiène reçues peuvent être mises en œuvre par une commande de la vanne de sortie d'eau (3b).
  6. Élément de robinetterie sanitaire selon l'une des revendications précédentes, caractérisé en ce que la commande d'élément de robinetterie (3c) possède une unité de radiocommunication mobile (12) au moyen de laquelle peut être établie la liaison de radiocommunication mobile (3d), de préférence en ce que l'unité de radiocommunication mobile (12) est disposée dans le boîtier d'élément de robinetterie (3a).
  7. Élément de robinetterie sanitaire selon la revendication 6, caractérisé en ce que l'unité de radiocommunication mobile (12) est réalisée sous la forme d'une unité LTE, notamment sous la forme d'une unité LTE à bande étroite.
  8. Élément de robinetterie sanitaire selon l'une des revendications précédentes, caractérisé en ce que la commande d'élément de robinetterie (1c-5c) possède un module de communication en champ proche (14) et en ce que des objets de communication peuvent être communiqués au moyen du module de communication en champ proche (14) entre la commande d'élément de robinetterie (1c-5c) et un appareil périphérique, notamment un appareil de programmation.
  9. Élément de robinetterie sanitaire selon l'une des revendications précédentes, caractérisé en ce que la commande d'élément de robinetterie (1c-5c) est conçue pour recevoir des paramètres de rinçage d'hygiène d'une instruction de rinçage d'hygiène et les mettre en œuvre par une commande de la vanne de sortie d'eau (1b-5b).
  10. Élément de robinetterie sanitaire selon l'une des revendications précédentes, caractérisé en ce qu'une instruction de rinçage d'hygiène est dirigée sur l'ouverture de la vanne de sortie d'eau (1b-5b) à un instant de rinçage prédéterminé et/ou sur une durée de rinçage prédéterminée.
  11. Élément de robinetterie sanitaire selon l'une des revendications précédentes, caractérisé en ce que la mise en œuvre d'une instruction de rinçage d'hygiène correspond à la commande de la vanne de sortie d'eau (1b-5b) en vue de l'ouverture de la vanne de sortie d'eau (1b-5b).
  12. Élément de robinetterie sanitaire selon l'une des revendications précédentes, caractérisé en ce que la commande d'élément de robinetterie (1c-5c), notamment l'unité de commande centrale (11) de la commande d'élément de robinetterie (3c), possède une commande séquentielle qui est conçue pour, sur réception d'une instruction de rinçage d'hygiène, mettre en œuvre une séquence de commande, constituée d'au moins une action de commande, de préférence d'au moins deux actions de commande, associée à l'instruction de rinçage d'hygiène.
  13. Élément de robinetterie sanitaire selon la revendication 12, caractérisé en ce que la commande séquentielle est conçue pour, sur réception d'une instruction de rinçage d'hygiène, mettre en œuvre de manière commandée dans le temps une séquence de commande associée à l'instruction de rinçage d'hygiène.
  14. Élément de robinetterie sanitaire selon la revendication 12 ou 13, caractérisé en ce que la commande séquentielle est conçue pour, sur réception de l'instruction de rinçage d'hygiène associée, mettre en œuvre la séquence de commande avec répétition cyclique.
  15. Élément de robinetterie sanitaire selon la revendication 12 et éventuellement selon la revendication 13 ou 14, caractérisé en ce que la commande séquentielle possède, pour la mise en œuvre commandée dans le temps de la séquence de commande, un module de temps, de préférence en ce que le module de temps fournit un écoulement de temps ou une heure.
  16. Procédé pour faire fonctionner un élément de robinetterie sanitaire (1-5) selon l'une des revendications précédentes, caractérisé en ce que des objets de communication sous la forme d'instructions de rinçage d'hygiène sont reçus par la commande d'élément de robinetterie (1c-5c) par le biais d'une liaison de radiocommunication mobile (1d-5d) et sont mis en œuvre par une commande de la vanne de sortie d'eau (1b-5b).
EP19219504.8A 2019-03-11 2019-12-23 Robinetterie sanitaire pour un réseau d'eau potable de bâtiment Active EP3708719B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102019106174.1A DE102019106174A1 (de) 2019-03-11 2019-03-11 Sanitärarmatur für ein Gebäude-Trinkwassernetzwerk

Publications (2)

Publication Number Publication Date
EP3708719A1 EP3708719A1 (fr) 2020-09-16
EP3708719B1 true EP3708719B1 (fr) 2022-03-02

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EP19219504.8A Active EP3708719B1 (fr) 2019-03-11 2019-12-23 Robinetterie sanitaire pour un réseau d'eau potable de bâtiment

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EP (1) EP3708719B1 (fr)
DE (1) DE102019106174A1 (fr)
HU (1) HUE058776T2 (fr)
PL (1) PL3708719T3 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102022104764A1 (de) 2022-02-28 2023-08-31 Schell Gmbh & Co. Kg Sanitärarmatur

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE9313983U1 (de) 1993-09-15 1993-11-25 Aqua Butzke-Werke AG, 10969 Berlin Konfiguration zur komplexen Steuerung sanitärer Anlagen
DE102014104395A1 (de) * 2013-04-05 2014-10-09 Herbert Wimberger Sanitärarmatur
DE102017105449A1 (de) * 2017-03-14 2018-09-20 Schell Gmbh & Co. Kg Verfahren zur Steuerung eines Gebäudewasserversorgungssystems
DE102017116604A1 (de) * 2017-07-24 2019-01-24 Schell Gmbh & Co. Kg Verfahren zur Ansteuerung eines Gebäude-Trinkwassernetzwerks
DE102017215690A1 (de) * 2017-09-06 2019-03-07 Blanco Gmbh + Co Kg Betätigungseinrichtung zum Betätigen einer Verschlusseinrichtung zum Verschließen einer Ablauföffnung

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EP3708719A1 (fr) 2020-09-16
HUE058776T2 (hu) 2022-09-28
DE102019106174A1 (de) 2020-09-17
PL3708719T3 (pl) 2022-08-22

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