EP1590607B1 - Einrichtung zur regelung einer heizungsanlage - Google Patents

Einrichtung zur regelung einer heizungsanlage Download PDF

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EP1590607B1
EP1590607B1 EP03815723.6A EP03815723A EP1590607B1 EP 1590607 B1 EP1590607 B1 EP 1590607B1 EP 03815723 A EP03815723 A EP 03815723A EP 1590607 B1 EP1590607 B1 EP 1590607B1
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Prior art keywords
path
outlet
inlet
fluid
temperature
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EP03815723.6A
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English (en)
French (fr)
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EP1590607A1 (de
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Umberto Bertolotti
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IVAR SpA
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IVAR SpA
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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
    • F24D3/00Hot-water central heating systems
    • F24D3/10Feed-line arrangements, e.g. providing for heat-accumulator tanks, expansion tanks ; Hydraulic components of a central heating system
    • F24D3/1058Feed-line arrangements, e.g. providing for heat-accumulator tanks, expansion tanks ; Hydraulic components of a central heating system disposition of pipes and pipe connections
    • F24D3/1066Distributors for heating liquids
    • 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
    • F24D19/1015Arrangement or mounting of control or safety devices for water heating systems for central heating using a valve or valves

Definitions

  • the present invention relates to a regulating device for heating systems.
  • the invention relates to a device for regulating the flow of a fluid, usually hot water, in systems for heating rooms in houses, commercial or other buildings.
  • High-temperature systems substantially consist of a boiler, a series of heating elements, typically referred to as radiators, arranged in the various rooms of the building, and of a plurality of manifolds and ducts connecting the boiler to the heating elements.
  • low-temperature systems consist of, beyond a boiler, a plurality of heating elements in the form of ducts generally placed under the room floor and of at least a pair of manifolds connecting the heating elements to the boiler.
  • systems of the first type operate with water at a temperature of around eighty degrees centigrade
  • systems of the second type must necessarily operate with temperatures of around forty degrees, since higher temperatures might damage floorings.
  • mixed heating systems comprising a high-temperature circuit and a low-temperature circuit, which are suitably connected one to the other.
  • Regulating devices generally comprise an inlet for high-temperature water (for instance from the boiler), an intake for hot water in the low-temperature circuit, a return for water from the low-temperature circuit and an outlet for water towards the boiler.
  • Said devices can comprise a thermostatic valve controlling the inlet for high-temperature water, a pump for circulating water, one or more outlet taps for water arranged in the lower portions of the ducts so as to empty the system when the latter is shut off for maintenance, and one or more relief valves arranged in the upper portions of the ducts so as to automatically expel air bubbles.
  • known regulating devices generally allow to mix a given amount of return water from the low-temperature circuit with hot water from the boiler, so as to suitably determine the temperature of water getting into the low-temperature circuit.
  • Document FR-A-2740863 discloses a device for supplying by the same boiler two hot water circuits having different temperatures.
  • Such device for supplying comprises a pipe connected to the boiler hot water outlet. This pipe discharges into a conduit supplying high and low temperature circuits.
  • a pipe connected to the water return to the boiler discharges from a return water conduit from the high and low temperature circuits.
  • a pipe recycling water from the low temperature circuit connects the two preceding conduits.
  • the conduit supplying hot water to the high temperature circuit is equipped, downstream of the recycling pipe, with a pump which circulates water to the low temperature circuit.
  • the return pipe from the low temperature circuit is equipped, downstream of the recycling pipe, with a motorised three-way valve allowing or disallowing water flow to the boiler return pipe; another pipe connecting the low temperature circuit supply and return conduits discharges into the water supply conduit upstream of the recycling pipe, and into the return conduit at the valve.
  • FR-A-2740863 discloses a regulating device for heating systems comprising: a first path for a fluid, which extends from a first inlet to a first outlet, and a second path for the fluid extending from a second inlet to a second outlet, said first path being operatively connected to said second path by means of a re-circulation opening so as to mix a pre-established amount of the fluid flowing in the second path with the fluid flowing in the first path; a pump for circulating fluid; and means for varying the amount of fluid flowing from the second path to the first path.
  • Document EP-A-1033539 discloses a modular collector provided with a system of thermoregulation for heating plants with radiating panels or the like.
  • said regulating devices generally consist of an extremely large number of parts, with many fittings and connections crossing each other following quite winding paths.
  • the technical task underlying the present invention is to conceive a regulating device for heating systems that can substantially obviate the aforesaid drawbacks.
  • an important aim is to conceive a regulating device for heating systems that has a simple and rational structure.
  • Another aim of the present invention is to conceive a regulating device for heating systems that has a particularly small size and a compact structure.
  • a further aim of the present invention is to provide for a regulating device for heating systems that can be easily carried out.
  • Still another aim is to conceive a regulating device for heating systems that can be rapidly and easily installed.
  • Another aim of the present invention is to provide for a regulating device for heating systems that is reliable and efficient.
  • a further aim of the present invention is to conceive a regulating device for heating systems that has a high operating safety also in case of failure of some of its components.
  • a still further aim of the present invention is to conceive a regulating device for heating systems that enables an optimal temperature regulation in single domestic systems also in case of heating systems connected to a central or district heating. Further aims consist in carrying out a regulating device for heating systems that has particularly low manufacturing, installation and maintenance costs. The technical task and the aims referred to above are achieved by means of a regulating device for heating systems having the characteristics described in the enclosed claims.
  • low-temperature water means water for heating rooms that is at a temperature of about 30-50 degrees, and more precisely of about 35-42 degrees
  • high-temperature water means water supplied by a boiler or similar or circulating in a high-temperature system, which is at a temperature of about 80 degrees centigrade.
  • a regulating device for heating systems according to the invention is globally referred to with reference numeral 1.
  • the device 1 is associated to a system for heating rooms, and in particular the device 1 is arranged between a high-temperature circuit 2 and a low-temperature circuit 3.
  • the high-temperature circuit 2 comprises an intake manifold 4 and a return manifold 5 for hot water, to which a series of connecting ducts 6 are connected, connecting the manifolds 4, 5 to the single heating elements.
  • the manifolds 4, 5 are preferably arranged on two different levels.
  • Figure 1 shows some conventional elements for heating circuits, such as brackets 7 for fastening the manifolds 4, 5 to a wall, outlet taps 8 for emptying the circuit 2 when the latter is shut off for maintenance, automatic relief valves 9 for removing air bubbles built within the circuit 2, and a pair of fittings 10 provided with closing valves with corresponding manually operated taps.
  • the high-temperature circuit 2 is connected to a boiler or other source of hot water (not shown in the figures) by means of such fittings 10. It should be pointed out that the device 1 could alternatively be connected directly in a wholly similar way to the boiler or other source of hot water, in case no high-temperature circuit 2 is present.
  • the low-temperature circuit 3 comprises a water intake manifold 11 and a return manifold 12, operatively connected one to the other and to which corresponding heating elements are connected, typically pipes 13, which lead low-temperature water to the room to be heated and are typically arranged under the room floor.
  • the circuit 3 is provided with a water intake point and with an outlet point for low-temperature water, which are connected to the regulating device 1.
  • the low-temperature circuit 3 is generally provided with suitable regulating elements 13a for the water flow introduced into each duct, which can be for instance manual, electric or thermostatic heads.
  • the regulating device 1 is placed between the low-temperature circuit 3 and the high-temperature circuit 2, or the boiler, so as to suitably regulate the intake of high-temperature hot water into the low-temperature circuit 3.
  • the regulating device 1 further enables to pre-mix high-temperature water coming from the boiler with a pre-established amount of low-temperature water taken from the low-temperature circuit 3.
  • the regulating device 3 comprises a first body 14 defining a first path 15, for instance a duct, for a fluid, typically water, which extends from a first inlet 15a, connected to the intake manifold 4 of the circuit 2 for high-temperature water or to the boiler, to a first outlet 15b.
  • Said body 14 further comprises a second path 16 for the fluid extending from a second inlet 16a, connected to the return manifold 12 of the low-temperature circuit 3, to a second outlet 16b.
  • the first path 15 is operatively connected to the second path 16 by means of a re-circulation opening 17, which allow to pre-mix a pre-established amount of low-temperature return water flowing within the second path 16 with the high-temperature inlet water flowing within the first path 15.
  • the second outlet 16b is placed between the second inlet 16a and the re-circulation opening 17.
  • the device 1 further comprises a second body 18 defining a third path 19 for the fluid, which extends from a third inlet 19a, operatively connected to the first outlet 15b, to a third outlet 19b, connected to the intake manifold 11 of the low-temperature heating circuit 3.
  • the second body 18 advantageously defines a fourth path 20 for the fluid, which path extends from a fourth inlet 20a, operatively connected to the second outlet 16b, to a fourth outlet 20b operatively connected to the return manifold 5 of the heating circuit 2 with high-temperature water or to the return line of the boiler.
  • the fourth inlet 20a is connected to the second outlet 16b by means of a connecting duct 21.
  • the second body 18 might comprise only the third path 19 and the second outlet 16b might be operatively connected directly to the high-temperature circuit 2 or to the boiler.
  • the first inlet 15a and the second inlet 16a are placed in an opposed position with respect to the first body 14 and are substantially lined up.
  • the first outlet 15b has a longitudinal axis substantially perpendicular with respect to the axes of the first inlet 15a and of the second inlet 16a.
  • the third outlet 19b and the fourth outlet 20b are advantageously placed in opposed position with respect to the second body 18 and are substantially lined up, and the third inlet 19a has a longitudinal axis substantially perpendicular with respect to the axes of the third 19b and of the fourth outlet 20b.
  • the second body 18 is preferably carried out as one piece, for instance as cast metal, but might also be carried out as several parts mounted together.
  • the device 1 further comprises a pump 22 for circulating water, which is operatively arranged between the first outlet 15b and the third inlet 19a.
  • the pump is schematically shown in sectioned view in Figures 6 , 9 and 10 as a whole body, since it is known per se. Obviously, the pump is provided with a connection for the fluid between the first outlet 15b and the third inlet 19a, and with known means for pushing the fluid in the desired direction.
  • the first body 14 and the second body 18 are suitably arranged on different levels, the first body 14 corresponding to the level of the intake manifold 4 of the high-temperature circuit 2 and of the return manifold 12 of the low-temperature circuit 3, and the second body 18 corresponding to the level of the return manifold 5 of the high-temperature circuit 2 and of the intake manifold 11 of the low-temperature circuit 3.
  • the first outlet 15b and the third inlet 19a are advantageously coplanar and therefore protrude from their respective bodies 14, 18, so as that the pump 22 can be easily mounted.
  • the device 1 further comprises means 23 for varying the amount of water flowing from the second path 16 to the first path 15, which are operatively associated to the first body 14 on the re-circulation opening 17.
  • Said means 23 are advantageously adjustable so as to vary the flow rate of the return low-temperature water to be mixed with the high-temperature water coming from the first inlet 15a, so as to send to the third path 19 of the second body 18 and to the intake manifold 11 of the low-temperature circuit 3 water suitably pre-mixed according to heating needs.
  • Said means 23 can for instance comprise a manually adjustable holder 23 so as to define the maximum potentiality of the low-temperature heating circuit 3.
  • the device 1 further comprises means 24 for regulating the water flow through the first inlet 15a, which are associated to the first body 14 within the first path 15.
  • Said flow-regulating means 24 comprise a thermostatic head 24a, operatively active so as to actuate a shutter 24b placed in the first path 15 so as to vary the flow of high-temperature water entering the device 1.
  • Said regulating means further comprise a sensor 24c placed within the third path 19 and operatively connected to the thermostatic head 14a, which can suitably regulate the amount of high-temperature hot water which is introduced into the device 1 and therefore into the low-temperature circuit 3 according to the temperature detected in the pre-mixed water entering the low-temperature circuit 3.
  • said flow-regulating means 24 can comprise an electric motor provided with suitable sensors and operatively active so as to actuate a holder arranged within the first path 15 so as to vary the flow of intake high-temperature water.
  • the device 1 can further comprise means for controlling the working of the device 1 (not shown in the figures because of their conventional shape), operatively connected to the means 24 for regulating the intake flow.
  • Such means can be conventional electromechanical or electronic control systems and can be connected to suitable means for controlling the working of the general heating system.
  • the device 1 further comprises a bypass duct 25, as can be seen in Figures 5 and 7 , connecting the second path 16 and the third path 19, which houses a bypass valve 26 allowing water to flow from the third to the second path 16 when water pressure in the device 1 is above a pre-established value.
  • a bypass duct 25 enables for instance to prevent the system and the pump from being damaged in case the circulation of water within the low-temperature circuit 3 should be prevented, for instance due to the temporary shutting of all regulating heads 13a for the various heating elements 13.
  • it can be provided for a stop of the pump 22 controlled by a global control system of the device 1.
  • the device 1 further comprises a safety thermostatic switch (not shown in the figures) operatively connected to said device 1 and in particular to the flow-regulating means 24 so as to stop the flow of high-temperature water in the first inlet 15a when the temperature within the third path 19 is above a pre-established threshold level, for instance 50 degrees centigrade.
  • a safety thermostatic switch is a further safety device against the damage of the low-temperature circuit 3 and of the structures in contact with the latter.
  • the device 1 is further provided with thermometers 27 placed in some water paths so as to indicate water temperature in the concerned path.
  • the device 1 further comprises an adjustable closing element 28, for instance a holder or a ball valve, so as to block the flow of fluid in the device 1, and an outlet tap 8 so as to empty the device 1.
  • stopping elements are provided on the first outlet 15b and on the third inlet 19a, so as to insulate the pump 22, and on the fourth outlet 20b.
  • the device 1 further comprises some automatic relief valves 9 expelling air bubbles that might form in
  • the heating system is further equipped with known means for controlling the working of said system, which comprise a system for regulating temperature in the room, either with manual or automatic control and controlling the intake of high-temperature water into the device 1 when room temperature detected in the room is bellow a pre-established value.
  • the working of a regulating device for heating system according to the present invention is the following.
  • the adjustable holder 23 on the re-circulation opening 17 is adjusted while installing the device 1, so as to obtain the maximum potentiality of the low-temperature heating circuit 3.
  • the thermostatic head 24a automatically regulates on the basis of the temperatures detected by the sensor 24c placed in the third path 19, the flow of high-temperature water, which is introduced into the device 1 and mixed with a given amount of low-temperature return water in the second path 16.
  • Such mixed water then goes out of the first outlet 15b and is pushed by the pump 22 through the third path 19 of the second body 18, and then into the intake manifold 11 of the low-temperature circuit 3.
  • the water coming back from the low-temperature circuit 3 gets into the second inlet 16a and is partly sent through the re-circulation opening 17 and partly gets out of the second outlet 16b and reaches the fourth path 20 of the second body 18, from where it is re-introduced into the high-temperature circuit 2 through the fourth outlet 20b.
  • these are closed circuits given a certain flow of high-temperature water entering the device 1, there is a corresponding flow of low-temperature water getting out of the second outlet 16b and then from the fourth outlet 20b.
  • the thermostatic head 24a wholly closes the first inlet 15a, all low-temperature water is recirculated in the low-temperature circuit 3.
  • Reference values for water operating temperatures in the various parts of the device 1 can be for instance the following: in the first inlet 15a water is at about 70-80°C, in the first outlet 15b, after pre-mixing, at about 40-42°C, as in the third outlet 19b and therefore in the low-temperature intake manifold 11, whereas in the second inlet 16a and in the low-temperature return manifold 12 water is at about 30-32°C.
  • a regulating device for heating systems according to the invention has a highly simple and rational structure. Moreover, it should be pointed out that such regulating device has a very small size and a global compact structure. Furthermore, the invention can be easily carried out and rapidly and easily installed. A device according to the invention is further reliable and efficient and ensures a high operating safety. Said device enables an optimal regulation of temperature both in single domestic systems and in central heating systems. Finally, it should be noted that a regulating device according to the present invention has extremely low manufacturing, installation and maintenance costs.

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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)
  • Steam Or Hot-Water Central Heating Systems (AREA)

Claims (23)

  1. Regelgerät für Heizsysteme, umfassend:
    einen ersten Körper (14), definierend einen ersten Pfad (15) für ein Fluid, der von einem ersten Einlass (15a) zu einem ersten Auslass (15b) verläuft, und einen zweiten Pfad (16) für das Fluid, der von einem zweiten Einlass (16a) zu einem zweiten Auslass (16b) verläuft;
    einen zweiten Körper (18), definierend einen dritten Pfad (19) für das Fluid, der von einem dritten Einlass (19a), wirkverbunden mit dem ersten Auslass (15b), zu einem dritten Auslass (19b) verläuft; und
    eine Pumpe (22) zum Zirkulieren des Fluids, die operativ zwischen dem ersten Auslass (15b) und dem dritten Einlass (19a) angeordnet ist;
    wobei der erste Körper (14) in einem Stück ausgeführt ist und der erste Pfad (15) über eine Rezirkulationsöffnung so mit dem zweiten Pfad (16) wirkverbunden ist, dass eine vorgegebene Menge des im zweiten Pfad (16) fließenden Fluids mit dem im ersten Pfad (15) fließenden Fluid vermischt wird;
    wobei das Gerät (1) weiter Mittel (23) zum Verändern der vom zweiten Pfad (16) zum ersten Pfad (15) fließenden Menge an Fluid, die dem ersten Körper (14) an der Rezirkulationsöffnung (17) wirksam zugeordnet sind, und Mittel (24) zum Regeln des Flusses des Fluids durch den ersten Einlass (15a), die dem ersten Körper (14) im ersten Pfad (15) zugeordnet sind, umfasst.
  2. Gerät nach Anspruch 1, dadurch gekennzeichnet, dass der zweite Auslass (16b) zwischen dem zweiten Einlass (16a) und der Rezirkulationsöffnung (17) angeordnet ist.
  3. Gerät nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass der erste Einlass (15a) und der zweite Auslas (16b) wirksam mit einem Boiler oder einem Heizkreis (2) mit Wasser von hoher Temperatur verbunden werden können und dadurch, dass der zweite Einlass (16a) und der dritte Auslass (19b) wirksam mit einem Heizkreis (3) mit Wasser von niedriger Temperatur verbunden werden können.
  4. Gerät nach Anspruch 3, dadurch gekennzeichnet, dass der zweite Körper (18) weiter einen vierten Pfad (20) für das Fluid definiert, der von einem vierten Einlass (20a), wirkverbunden mit dem zweiten Auslass (16b), zu einem vierten Auslass (20b) verläuft, der wirksam mit dem Boiler oder dem Heizkreis (2) mit Wasser von hoher Temperatur verbunden werden kann.
  5. Gerät nach Anspruch 4, dadurch gekennzeichnet, dass der vierte Einlass (20a) über eine Verbindungsleitung (21) mit dem zweiten Auslass (16b) verbunden ist.
  6. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der zweite Körper (18) in einem Stück ausgeführt ist.
  7. Gerät nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass der zweite Körper (18) aus mehreren aneinander montierten Teilen besteht.
  8. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die verändernden Mittel (23) eine einstellbare Halterung umfassen.
  9. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der erste Körper (14) und/oder der zweite Körper (18) in Gussmetall ausgeführt sind/ist.
  10. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der erste Auslass (15b) und der dritte Auslass (19a) koplanar sind und jeweils vom ersten und zweiten Körper vorstehen.
  11. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der erste Einlass (15a) und der zweite Einlass (16a) in dem ersten Körper (14) gegenüberliegenden Positionen angeordnet und im Wesentlichen aneinandergereiht sind.
  12. Gerät nach Anspruch 11, dadurch gekennzeichnet, dass der erste Auslass (15b) eine Längsachse aufweist, die im Wesentlichen senkrecht zu den Achsen des ersten Einlasses (15a) und des zweiten Einlasses (16a) verläuft.
  13. Gerät nach einem der Ansprüche 4 bis 12, dadurch gekennzeichnet, dass der dritte Auslass (19b) und der vierte Auslass (20b) in im Bezug auf den zweiten Körper (18) gegenüberliegenden Positionen angeordnet und im Wesentlichen aneinandergereiht sind.
  14. Gerät nach Anspruch 13, dadurch gekennzeichnet, dass der dritte Einlass (19a) eine Längsachse aufweist, die im Wesentlichen senkrecht zu den Achsen des dritten (19b) und vierten Auslasses (20b) verläuft.
  15. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Strömungsregelungsmittel (24) einen Thermostatkopf (24a) umfassen, der so wirkaktiv ist, dass ein im ersten Pfad (15) angeordneter Verschluss (24b) so ausgelöst wird, dass der Strom des Einlassfluids geändert wird, und einen im dritten Pfad (19) angeordneten Sensor (24c), der mit dem Thermostatkopf (24a) wirkverbunden ist.
  16. Gerät nach einem der Ansprüche 1 bis 14, dadurch gekennzeichnet, dass die Strömungsregelungsmittel (24) einen elektrischen Motor umfassen, der so wirkaktiv ist, dass eine im ersten Pfad (15) angeordnete Halterung so betätigt wird, dass der Strom des Einlassfluids geändert wird.
  17. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es Mittel zur Steuerung der Arbeitsweise des wirkaktiv mit den Strömungsregelungsmitteln (24) verbundenen Geräts (1) umfasst.
  18. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es weiter eine Bypassleitung (25) umfasst, die den zweiten Pfad (16) mit dem dritten Pfad (19) verbindet, außerdem ein Bypassventil (26), das so in der Bypassleitung angeordnet ist, dass es den Fluss von Fluid vom dritten (19) zum zweiten Pfad (16) ermöglicht, wenn der Druck des Fluids im Gerät (1) über einem vorgegebenen Wert liegt.
  19. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es weiter einen Sicherheits-Thermostatschalter umfasst, der so mit dem Gerät (1) wirkverbunden ist, dass er den Fluss von Fluid im ersten Einlass (15a) blockiert, wenn die Temperatur im dritten Pfad (19) über einem vorgegebenen Schwellenwert liegt.
  20. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es weiter ein Thermometer (27) umfasst, das so in einem der Fluidpfade angeordnet ist, dass es die Temperatur in seinem jeweiligen Pfad anzeigt.
  21. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es ein einstellbares Verschlusselement (28) zum Blockieren des Flusses des Fluids im Gerät und einen Auslasshahn (8) zum Entleeren des Geräts (1) umfasst.
  22. Gerät nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es weiter ein automatisches Entlüftungsventil (9) umfasst.
  23. Heizsystem für Räume, dadurch gekennzeichnet, dass es ein Gerät (1) nach einem der vorhergehenden Ansprüche umfasst.
EP03815723.6A 2003-02-04 2003-02-04 Einrichtung zur regelung einer heizungsanlage Expired - Lifetime EP1590607B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/IT2003/000054 WO2004070280A1 (en) 2003-02-04 2003-02-04 Heating plant control device

Publications (2)

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EP1590607A1 EP1590607A1 (de) 2005-11-02
EP1590607B1 true EP1590607B1 (de) 2016-09-14

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EP (1) EP1590607B1 (de)
CN (1) CN100441961C (de)
AU (1) AU2003215889A1 (de)
ES (1) ES2606777T3 (de)
HU (1) HUE030743T2 (de)
PT (1) PT1590607T (de)
WO (1) WO2004070280A1 (de)

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CN102016739B (zh) * 2008-04-23 2013-04-24 I.V.A.R.股份公司 用于朝向使用者供给和控制水流的液压装置
IT1396314B1 (it) * 2009-09-29 2012-11-16 Trezeta Srl Struttura di modulo di distribuzione perfezionato, particolarmente per la distribuzione di acqua di riscaldamento o raffrescamento.
ITMI20100077U1 (it) * 2010-03-19 2011-09-20 Ivar Spa Dispositivo per la distribuzione di acqua di riscaldamento
DK2871420T3 (en) * 2013-11-07 2016-12-19 Grundfos Holding As Cirkulationspumpeaggregat to a heating and / or cooling system
ITBS20140015U1 (it) * 2014-09-23 2016-03-23 Ivar Spa Dispositivo di regolazione per impianti termici

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NL6708548A (de) * 1966-06-28 1967-12-29
FR2740863B3 (fr) * 1995-11-08 1998-02-20 Axterm Dispositif d'alimentation a partir d'une meme chaudiere de deux circuits d'eau chaude a des temperatures differentes
DE29820945U1 (de) * 1998-11-17 1999-04-22 Schöttler, Frank, 14089 Berlin Einrichtung zur Regelung der Vorlauftemperatur (bei Warmwasser-Fußbodenheizungen) für kombinierte Fußbodenheizungs- und Heizkörperanlagen
IT1309348B1 (it) * 1999-03-02 2002-01-22 Luigi Castelletti Collettore modulare provvisto di sistema di termoregolazione, perimpianti di riscaldamento a pannelli radianti o simili.

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ES2606777T3 (es) 2017-03-27
CN100441961C (zh) 2008-12-10
HUE030743T2 (en) 2017-05-29
AU2003215889A1 (en) 2004-08-30
CN1738994A (zh) 2006-02-22
PT1590607T (pt) 2016-12-14
EP1590607A1 (de) 2005-11-02
WO2004070280A1 (en) 2004-08-19

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