EP2392867B1 - Système d'information basé sur un système de chauffage avec des pompes d'alimentation locale, et procédé d'utilisation du système d'information - Google Patents

Système d'information basé sur un système de chauffage avec des pompes d'alimentation locale, et procédé d'utilisation du système d'information Download PDF

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Publication number
EP2392867B1
EP2392867B1 EP11003877.5A EP11003877A EP2392867B1 EP 2392867 B1 EP2392867 B1 EP 2392867B1 EP 11003877 A EP11003877 A EP 11003877A EP 2392867 B1 EP2392867 B1 EP 2392867B1
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EP
European Patent Office
Prior art keywords
local supply
supply pumps
data
heating
information system
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Application number
EP11003877.5A
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German (de)
English (en)
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EP2392867A2 (fr
EP2392867A3 (fr
Inventor
Franz Dr. Schröder
Dieter Heckmann
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.)
Metrona Union GmbH
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Metrona Union GmbH
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00Details
    • F24D19/10Arrangement or mounting of control or safety devices
    • F24D19/1006Arrangement or mounting of control or safety devices for water heating systems
    • F24D19/1009Arrangement or mounting of control or safety devices for water heating systems for central heating
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00Details
    • F24D19/10Arrangement or mounting of control or safety devices
    • F24D19/1006Arrangement or mounting of control or safety devices for water heating systems
    • F24D19/1009Arrangement or mounting of control or safety devices for water heating systems for central heating
    • F24D19/1048Counting of energy consumption

Definitions

  • the invention relates to an information system with a heating system with several local supply pumps.
  • the invention further relates to a method for using such an information system.
  • LVP heating system small local supply pumps will be used in more and more heating systems instead of a central circulation pump, which regulate the heating medium flow individually for each radiator and can thus replace the common thermostatic valves.
  • LVP heating system the heat transfer within the heating system and the heat output of the radiators are hydraulically optimized by continuously recording and controlling the operating parameters of the local supply pumps via a network (wired or radio).
  • LVP heating systems also offer further advantages which are, however, insignificant for the invention. Further details of an LVP heating system can be found in the DE 10 2006 041 345 A1 be removed.
  • the EP 0 866 279 A2 discloses an information system according to the preamble of claim 1 and shows an early heating system with several local supply pumps, in which a separate pump is provided for each radiator, which is in the flow or return of the respective radiator.
  • the pump is controlled by an electronic control device that measures the room temperature and that of the radiator with sensors.
  • the pump can have a display that shows the state of the pump, the heat consumption, the flow and / or return temperature and / or error messages.
  • the electronic control device is with electronic control devices additional radiator and / or connected to a central computer.
  • a heating system with a boiler, several heating circuits and at least one thermostatically controlled circulation pump is from the DE 2 247 354 B1 known.
  • Each heating circuit is assigned a control device influenced by at least one thermostat with its own switch box, by means of which the respective heating circuit operation can be set and the associated heating energy consumption can be determined.
  • An actual temperature can be transmitted from a room sensor or a return sensor to the control unit. If there is a difference between a set target temperature and the sensed actual temperature, the control unit operates the heating circuit until the temperature difference is equalized.
  • the switching device for each heating circuit has a feed pump, which is switched on in a pipe run from a central flow line to a ring line of the heating circuit.
  • the object of the invention is to expand a heating system with several local supply pumps in terms of system technology in such a way that information about the consumption behavior and / or about the room climate, which goes beyond information relating purely to the operation or control of the LVP heating system, is made available ,
  • the invention makes it possible, based on the given structure of an LVP heating system, to create an information system with few additional means, which among other things can provide information about the total and instantaneous energy consumption in a single residential unit and / or an entire property.
  • a smart metering functionality can be created in a very efficient manner by using its infrastructure and an extended evaluation of the operating data of the LVP heating system in combination with the additionally available sensor data.
  • the central processing unit has means for evaluating the data transmitted by the sensor units in connection with the target / actual values of the operating parameters of the local supply pumps.
  • the invention also provides a method for using an information system according to the invention.
  • data transmitted by the sensor units are evaluated in connection with operating parameters of the local supply pumps.
  • FIG. 1 the basic structure of an existing LVP heating system is shown.
  • a heating system HA heats up a heating medium and is also used for hot water preparation (symbolized by WW).
  • a plurality of radiators 10 are supplied with the heated heating medium via a flow line 12 starting from the heating system HA. After passing through the Radiator 10, the heating medium is each discharged into a return line 14, which in turn opens into the heating system HA.
  • a local supply pump 16 is assigned to each radiator 10 and individually controls the flow of the heating medium through the respective radiator 10.
  • the local supply pumps 16 are equipped with a temperature sensor T R , which continuously measures the current return temperature of the heating medium.
  • the local supply pumps 16 are provided on the return of each radiator 10 (in principle, however, they could also be arranged elsewhere).
  • the local supply pumps 16 are connected to a central processing unit 18 via a bus system or in another suitable manner (wired or wireless).
  • the central processing unit 18 receives current actual values of operating parameters of the local supply pumps 16 at short intervals (for example in the order of magnitude of one minute) Radiator 10 flows.
  • the central processing unit 18 receives the current return temperatures of the heating medium measured by the temperature sensors T R at the locations of the individual pumps 16.
  • a control unit 20 controls the local supply pumps 16 based on calculated current setpoints of operating parameters. The setpoints are in turn based on specifications that the user of the residential unit can enter via a central operating and display unit 22.
  • Computing unit 18, control unit 20 and / or operating and display unit 22 can be implemented in a common device or in physically separate devices, which is fundamentally irrelevant for the functionality of the LVP heating system.
  • computing unit includes at least the functionalities of computing unit 18 and control unit 20.
  • the data determined by the sensor units 24 are transmitted indirectly to the central processing unit 18 via the existing network of the LVP heating system.
  • a data transmission interface 28 for receiving and / or sending data of the sensor units 24 is provided on one, on several or on all local supply pumps 16.
  • the data transmission interface 28 is arranged on the local supply pump 16 itself or on its local control device 26 (distribution socket), which usually represents an end point of an existing bus system which connects the local supply pumps 16 to the central processing unit 18 (see Figure 3 ).
  • the data sent by the sensor units 24 on demand or continuously at short time intervals are received by one or more data transmission interfaces 28 and then forwarded to the central processing unit 18 via the existing network of the LVP heating system.
  • the transmission of the data from the sensor units 24 is linked to the computing unit 18 the transmission of the operating parameters of the local supply pumps 16 to the computing unit 18, in particular with regard to the short time intervals of this data transmission.
  • a method based on RFID technology is provided for the transmission of the data from the sensor units 24 to the data transmission interface (s) 28, the sensor units 24 being equipped with RFID repeaters.
  • a local supply pump 16 functions as a master, a sensor unit 24 as a slave.
  • Classic high-frequency technology can also be used for data transmission.
  • an at least partially wired connection between the sensor units 24 and the data transmission interface (s) 28 is also possible.
  • the data from the sensor units 24 can also be communicated directly (wired or wireless) to the computing unit 18.
  • the data of the sensor units 24 can be called up by the user at any time on the display and operating device 22, which is located in the living unit, even in an evaluated form.
  • the central processing unit 18 has means for evaluating the data transmitted by the sensor units 24 in connection with the target / actual values of the operating parameters of the local supply pumps 16. The functionality of the system that can be achieved in this way is to be illustrated using the example of additionally provided electronic heat cost allocators with integrated, to which Radiator 10 coupled temperature sensors are briefly explained.
  • a joint evaluation of the data of these temperature sensors together with the operating parameters of the local supply pumps 16 enables the determination of the relative (with additional knowledge of the absolute amount of energy converted in the entire heating system, also the absolute) heat output of a radiator 10 - or any group of radiators 10 within a residential unit or property - within certain time intervals (weekly, monthly, yearly intervals).
  • simple temperature sensors 30 attached to the radiators 10 are also sufficient, as in FIG Figure 3 shown.
  • the DIN standards for electronic heat cost allocating systems can be directly met.
  • the determination of the heat quantity deliveries enables a complete heating billing to be carried out by a billing service provider.
  • RFID technology is particularly advantageous for the purpose of determining the amount of heat released, because it ensures easy identification of the temperature sensors and reliable and inexpensive communication between the sensors and the data transmission interfaces 28.
  • the display and operating device 22 can be used for the interactive display of the total and instantaneous energy consumption of the residential unit with correspondingly integrated sensor units 24.
  • the thus prompt and spontaneous access of the user to the essential data which reveals his current and long-term consumption behavior (possibly in an evaluated form), corresponds to a smart metering functionality using the existing infrastructure of the LVP heating system.
  • a service provider can also collect current and summed up consumption data on a larger scale, especially in relation to several residential units and properties.
  • users can get access to the consumption data of their residential unit, whereby the data can be transferred from the service provider to a mobile receiver (mobile phone, etc.) or made available via an internet portal or in the form of an individually pre-configured website.
  • a user can e.g. B. verify the heating bill of a billing service provider.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Arrangements For Transmission Of Measured Signals (AREA)
  • Steam Or Hot-Water Central Heating Systems (AREA)
  • Pipe Accessories (AREA)

Claims (9)

  1. Système d'information, comprenant un système de chauffage présentant une unité de calcul centrale (18) qui comprend une unité de commande (20), et présentant plusieurs corps de chauffage (10) et plusieurs pompes d'alimentation locales (16), une pompe d'alimentation locale (16) étant associée à chaque corps de chauffage (10) pour régler individuellement une amenée de milieu de chauffage de manière décentralisée pour chaque corps de chauffage (10), les pompes d'alimentation locales (16) étant reliées en réseau avec l"unité de calcul centrale (18), les pompes d'alimentation locales (16) étant équipées d'un capteur de température (Tr) respectif pour la mesure en continu d'un milieu de chauffage s'écoulant à travers le système de chauffage, l'unité de calcul centrale (18) calculant des valeurs de consigne actuelles de paramètres de fonctionnement des pompes d'alimentation locales (16) et recevant des valeurs réelles actuelles de paramètres de fonctionnement des pompes d'alimentation locales (16) de manière à pouvoir déterminer, sur la base de ces valeurs, un flux volumique du milieu de chauffage, quel flux volumique s'écoule à travers la pompe d'alimentation locale (16) respective et à travers le corps de chauffage (10) respectif, l'unité de commande (20) pilotant les pompes d'alimentation locales (16) pendant le fonctionnement du système de chauffage sur la base de valeurs de consigne actuelles calculées de paramètres de fonctionnement,
    caractérisé en ce que le système d'information (16) comprend des unités de détection supplémentaires (24) qui ne sont pas directement en rapport avec le fonctionnement de base du système de chauffage tel que décrit ci-dessus, et en ce que les unités de détection supplémentaires (24) sont directement ou indirectement couplées à l'unité de calcul centrale (18) en plus des pompes d'alimentation locales (16), et en ce que l'unité de calcul centrale (18) dispose de moyens d'évaluation des données transmises par les unités de détection (24) ensemble avec les valeurs de consigne/les valeurs réelles des paramètres de fonctionnement des pompes d'alimentation locales (16).
  2. Système d'information selon la revendication 1, caractérisé en ce que les unités de détection (24) supplémentaires sont d'au moins l'un des types suivants : répartiteur de frais de chauffage électronique ; capteurs de température monté sur un corps de chauffage (10) ; compteur de consommation, en particulier compteur de quantité de chaleur, compteur d'eau, compteur de courant ou compteur à gaz ; capteur d'humidité ; capteur de CO2 ; indicateur d'état, en particulier capteur de position de fenêtre.
  3. Système d'information selon l'une des revendications précédentes, caractérisé en ce qu'une interface de transmission de données (28) est prévue sur une pompe d'alimentation locale (16), en particulier sur le moyen de commande local (26) de celle-ci, pour recevoir et/ou envoyer des données d'une unité de détection (24).
  4. Système d'information selon la revendication 3, caractérisé en ce que la transmission de données entre l'unité de détection (24) et l'interface de transmission de données (28) est basée sur la technologie RFID.
  5. Système d'information selon l'une des revendications précédentes, caractérisé en ce qu'un dispositif d'affichage et d'utilisation (22) du système de chauffage est aménagé pour l'affichage de données des unités de détection (24).
  6. Procédé d'emploi d'un système d'information selon l'une des revendications précédentes, caractérisé en ce que des données transmises par les unités de détection supplémentaires (24) sont évaluées ensemble avec des paramètres de fonctionnement des pompes d'alimentation locales (16).
  7. Procédé selon la revendication 6, caractérisé en ce que la quantité de chaleur dégagée des corps de chauffage (10), en particulier dans un intervalle de temps de facturation dans le cadre d'une facturation de frais de chauffage, est déterminée sur la base d'une évaluation commune des données de capteurs de température montés sur ou couplés à des corps de chauffage (10) du système de chauffage, ensemble avec les paramètres de fonctionnement des pompes d'alimentation locales (16).
  8. Procédé selon la revendication 6, caractérisé en ce que des données concernant la consommation d'énergie totale et/ou instantanée d'une unité d'habitation sont représentées sur un dispositif interactif d'affichage et d'utilisation (22) du système de chauffage.
  9. Procédé selon la revendication 6, caractérisé en ce qu'un utilisateur, après une authentification auprès d'un prestataire de services, a accès aux données de consommation de son unité d'habitation saisies au moyen du système d'information, les données de consommation étant en particulier transmises sur un récepteur mobile ou mises à disposition via un portail Internet ou sous forme de site Internet individuellement préconfiguré.
EP11003877.5A 2010-05-20 2011-05-11 Système d'information basé sur un système de chauffage avec des pompes d'alimentation locale, et procédé d'utilisation du système d'information Active EP2392867B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102010022213A DE102010022213A1 (de) 2010-05-20 2010-05-20 Informationssystem, basierend auf einem Heizsystem mit lokalen Versorgungspumpen, und Verfahren zur Nutzung des Informationssystems

Publications (3)

Publication Number Publication Date
EP2392867A2 EP2392867A2 (fr) 2011-12-07
EP2392867A3 EP2392867A3 (fr) 2014-09-03
EP2392867B1 true EP2392867B1 (fr) 2020-01-01

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EP11003877.5A Active EP2392867B1 (fr) 2010-05-20 2011-05-11 Système d'information basé sur un système de chauffage avec des pompes d'alimentation locale, et procédé d'utilisation du système d'information

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EP (1) EP2392867B1 (fr)
DE (1) DE102010022213A1 (fr)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102013004106A1 (de) * 2013-03-11 2014-09-11 Wilo Se Heizungssystem und Nachrüstkit zur Verbesserung der Wärmeabgabe von hydraulisch unterversorgten Verbrauchern
DE102014103367A1 (de) * 2014-03-12 2015-09-17 Minebea Co., Ltd. Regelsystem
ITBS20150067A1 (it) * 2015-04-15 2016-10-15 Ivar Spa Dispositivo per la regolazione della temperatura e la ripartizione dei consumi di un elemento riscaldante

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Publication number Priority date Publication date Assignee Title
DE2247354B1 (de) * 1972-09-27 1974-01-24 Karlheinz Bienert Heizungssystem mit einem Heizkessel,mehreren Heizkreisen und wenigstens einer thermostatgesteuerten Umwaelzpumpe
DE19711178A1 (de) * 1997-03-18 1998-09-24 Wilo Gmbh Pumpe im Warmwasserkreislauf einer Zentralheizung
DE102006041345A1 (de) 2006-09-01 2008-03-13 Wilo Ag Verfahren zum Betrieb eines Rohrnetzes
EP2151578B1 (fr) * 2008-08-04 2019-09-18 Grundfos Management A/S Agrégat de pompe de recirculation
DE102008038441B3 (de) 2008-08-20 2010-02-25 Metrona Wärmemesser Union Gmbh Verfahren zur Bestimmung der Wärmemengenverteilung in einem Heizsystem mit Heizkörpern
DE102009055670A1 (de) * 2009-11-25 2011-05-26 Metrona Wärmemesser Union Gmbh Verfahren zur Analyse der Wärmemengenverteilung in einem Heizsystem und Vorrichtung zur Durchführung des Verfahrens

Non-Patent Citations (1)

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Title
WILO-GENIAX DAS ET AL: "Systemkomponenten und Zubehör Katalog Heizung", 20 February 2009 (2009-02-20), pages 1 - 108, XP055367994, Retrieved from the Internet <URL:http://www.majo.rs/page_files/page_97/A4-GENIAX 2009.pdf> [retrieved on 20170427] *

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EP2392867A2 (fr) 2011-12-07
EP2392867A3 (fr) 2014-09-03
DE102010022213A1 (de) 2011-11-24

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