[0001] The present invention relates to combined hot water and heating systems.
[0002] Combined hot water and heating systems are commonly provided in homes. Such systems
allow provision of hot water for use in radiators, to heat the home, and for heating
water for use in other domestic applications, for example washing, from the same hot
water supply.
[0003] A conventional combined hot water and heating system has a boiler, which takes in
cold water via an inlet and supplies hot water via an outlet, and a pump for pumping
hot water from the boiler around the combined hot water and heating system.
[0004] A combined hot water and heating system may have several water circuits. A typical
system has two circuits. The first, a heating circuit, allows water from the boiler
to circulate through a series of radiators. Control of the supply of hot water passing
through the heating circuit allows controlled heating of the house.
[0005] The second circuit is a hot water circuit. A portion of the hot water circuit passes
through a hot water tank. This portion of the hot water circuit is usually coiled
to provide a better thermal coupling between water in the hot water circuit and water
to be heated in the hot water tank. By controlling the flow of hot water through the
hot water circuit it is possible to control the temperature of water in the hot water
tank.
[0006] A combined hot water and heating system according to the preamble of claim 1 is known
from the document
GB2320108. According to this document, a boiler is shut down when a thermostat supplies a shut
down signal. Once the boiler is shut down, a certain time interval must then elapse
between the turning off and the refiring of the boiler.
[0007] DE3538934 (and related document
DE3539328) relates to a central heating system with a variable thermostat threshold setting.
A boiler and pump are operated independently in dependence on the measured temperature
relative to the thermostat threshold, and in dependence on anticipated changes in
the thermostat threshold.
[0008] FR2465164 relates to a heating installation having a three ways valve between a radiator circuit,
heat exchanger, and a boiler.
[0009] US 4,671,457 discloses a thermostat which is arranged to control the timing and intensity of operation
of a burner in order to regulate temperature of a heated space. The system selects
the duration and intensity of heating of by the burner to provide a roughly constant
temperature. This system has a disadvantage in that directly pulsing the burner may
cause increased wear of the burner components.
[0010] It is an object of the present invention to provide an alternative combined hot water
and heating system.
[0011] According to a first aspect of the present invention there is provided a combined
hot water and heating system comprising a hot water supply means and a pump for pumping
water from the hot water supply means to a first water circuit and a second water
circuit, wherein supply of hot water from the hot water supply means to the first
and second water circuits is regulated by at least one valve means (H, HW), the system
comprising control means, which comprises a timer operable to set predetermined heating
periods and predetermined heat dissipation periods,
characterized in that said control means cause the at least one valve means to prevent supply of hot water
from the hot water supply means to at least one of said first and second water circuits
when the hot water supply means is in operation and during the heat dissipation periods.
[0012] Hot water may only be supplied to the water circuits during the predetermined heating
periods. This results in a pulsing of the supply of hot water to the water circuits
when hot water is needed. The applicant has found that pulsed supply of hot water
to water circuits of a combined hot water and heating system results in greater energy
efficiency.
[0013] The at least one valve means may comprise a valve for each water circuit.
[0014] Each water circuit may have an associated thermostat and supply of hot water to each
water circuit by the at least one valve means may be controlled in dependence on the
output of the thermostat associated with that water circuit.
[0015] The combined hot water and heating system may be a domestic hot water and heating
system, the first circuit being associated with provision of hot water for domestic
use and the second water circuit being associated with space heating and wherein the
thermostat associated with the first water circuit is a hot water thermostat and the
thermostat associated with the second water circuit is a room thermostat.
[0016] The duration of the predetermined heating periods and the duration of the predetermined
cooling periods may be user selectable.
[0017] The duration of the predetermined periods may be user selectable between 2 minutes
and 30 minutes. Preferably, the predetermined periods may be user selectable between
5 minutes and 10 minutes.
[0018] The combined hot water and heating system may be arranged to allow user selection
of a continuous heating mode. When operating in the continuous heating mode the combined
hot water and heating system would act as a conventional combined hot water and heating
system, providing hot water to the water circuits continuously.
[0019] Throughout this specification the word "comprise", or variations such as "comprises"
or "comprising", will be understood to imply the inclusion of a stated element, integer
or step, or group of elements, integers or steps, but not the exclusion of any other
element, integer or step, or group of elements, integers or steps.
[0020] A combined hot water and heating system which embodies this invention is described
now, by way of example only, with reference to the accompanying drawings of which:
Figure 1 is a diagram which shows schematically the structure of a combined hot water
and heating system;
Figure 2 is a flow diagram illustrating the operation of the boiler of the hot water
and heating system shown in Figure 1;
Figure 3 is a flow diagram illustrating the operation of the pump of the hot water
and heating system shown in Figure 1;
Figure 4 is a flow diagram illustrating the operation of the hot water zone valve
of the hot water and heating system of Figure 1;
Figure 5 is a flow diagram illustrating the operation of the heating zone valve of
the hot water and heating system shown in Figure 1; and
Figure 6 is a diagram which schematically shows the structure of an electronic control
system connected to a pre-existing combined hot water and heating system.
[0021] Figure 1 shows a combined hot water and heating system 1 in a house comprising a
hot water supply means in the form of a boiler 10 and a pump 11. The pump 11 is connected
to the boiler 10 and arranged to pump hot water from the boiler 10 around the system
1.
[0022] The system 1 comprises a heating circuit 2 and a hot water circuit 3. The circuits
2 and 3 form a common portion passing through the boiler 10 and the pump 11.
[0023] Supply of water from the boiler 10 to the circuits 2 and 3 is controlled by a pair
of zone valves H and HW located at one end of the common portion of the two water
circuits 2 and 3. Zone valve H controls supply of hot water to the heating circuit
2. Zone valve HW controls hot water supply to the hot water circuit 3.
[0024] The heating comprises three radiators 21 arranged in the heating circuit. Each radiator
21 is provided with an inlet attached to a first half of the heating circuit 2 and
with an outlet attached to a second half of the heating circuit 2. When hot water
from the boiler 10 is pumped around the heating circuit 2 it has to pass through an
inlet and an outlet of a radiator 21. This ensures that all the hot water pumped around
the heating circuit 2 passes through a radiator 21 and is used to heat the house.
[0025] The hot water circuit 3 comprises a coiled portion of pipe 31. This coiled portion
of pipe is arranged inside a hot water tank 4 which is arranged to supply hot water
to the house. The hot water tank 4 is supplied at its lower end with cold water from
a cold water tank 5. Hot water may be extracted from the hot water tank to supply
taps 6.
[0026] The combined hot water and heating system 1 also has a expansion tank 7 which is
arranged to supply water to the heating and hot water circuits 2 and 3 as necessary.
The expansion tank compensates for any loss of water from the water circuits 2 and
3 due to leaks and reduces the accumulation of air in the circuits. An expansion pipe
(not shown) runs from the hot water tank to above the expansion tank, allowing water
to be discharged into the expansion tank 7. The expansion pipe allows for expansion
of water in the hot water tank. A second expansion pipe (not shown) runs from the
water circuits 2 and 3 to above the expansion tank, allowing water to be discharged
into the expansion tank 7. The second expansion pipe allows for expansion of water
in the water circuits 2 and 3.
[0027] The cold water tank 5 and expansion tank 7 are shown schematically in Figure 6. Both
of these tanks are usually located above the remainder of the combined hot water and
heating system 1.
[0028] The system 1 also comprises three thermostats which are used in controlling the operation
of the system. A hot water thermostat A is provided in the hot water tank 4 to monitor
the temperature of the water in the hot water tank. A boiler thermostat B is provided
in the boiler 10 to monitor the temperature of water in the boiler. A room thermostat
C is provided in an appropriate room of the house to monitor the temperature of the
house.
[0029] The Zone valves H and HW, the boiler 10 and the pump 11 are controlled by an electronic
control system 8. The electronic control system 8 comprises a timer which sets heating
on periods and heating off periods.
[0030] Operation of the system 1 will now be explained with reference to Figures 2 to 5.
[0031] Control of operation of the boiler 10 is illustrated in Figure 2. When the system
1 is operational the temperature of water in the boiler 10 is monitored by the boiler
thermostat B. It is important that the water in the boiler 10 is not overheated as
boiling of water in the boiler may cause damage to the system 1.
[0032] If the temperature of water in the boiler 10 is below a predetermined desired temperature,
the control system 8 causes the boiler 10 to heat the water. If the water in the boiler
10 is above the predetermined desired temperature, the control system 8 switches the
boiler 10 off and allows the water in the boiler to cool.
[0033] Figure 3 illustrates control of the operation of the pump 11. Passage of water around
the water circuits 2 and 3 is determined by the zone valves H and HW. If both of these
valves are closed then there is no where for water to go beyond the pump 11. Accordingly,
the pump 11 operates to pump water around the system 1 whilst one of the two zone
valves H and HW is open. If both zone valves H and HW are closed the control system
8 switches the pump 11 off.
[0034] Figure 4 illustrates control of zone valve HW. When the system 1 is operational the
hot water thermostat A monitors temperature of water in the hot water tank 4. At the
same time the control system 8 is measuring heating on and heating off periods each
of a predetermined duration. If the temperature of water in the hot water tank 4 is
below a predetermined desired temperature and the control system 8 is measuring a
heating on period, the zone valve HW is opened and hot water passes around the hot
water circuit 3. If either the temperature in the hot water tank 4 is above the predetermined
desired temperature or the control system 8 is measuring a heating off period the
zone valve HW is closed.
[0035] In this manner, when the water in the hot water tank 4 needs heating the control
system 8 provides hot water to the hot water circuit 3 in a pulsed manner.
[0036] Figure 5 illustrates control of the zone valve H. When the system 1 is operational
the room thermostat C monitors the temperature of an appropriate room in the house.
If the temperature of room is below a predetermined desired temperature and the control
system 8 is measuring a heating on period, the zone valve H is opened and hot water
passes around the heating circuit 2. If either the temperature in the room is above
the predetermined desired temperature or the control system 8 is measuring a heating
off period the zone valve H is closed. In this manner, when the room is below the
predetermined desired temperature and needs heating, the control system 8 supplies
hot water to the radiators 21 in a pulsed manner in order to heat the room.
[0037] Figure 6 is a diagram schematically shows the structure of an electronic control
system 8 connected to a heating system 40 incorporating the present invention.
[0038] The pre-existing heating system 40 is of the same type described with reference to
Figure 1. Corresponding features shown in the two figures are indicated with corresponding
reference numerals. Description of these features is omitted for the sake of brevity.
[0039] The Pump 11 and zone valves H and HW are arranged as previously described. However,
a connector block 41 (not shown in Figure 1) is provided to supply 240 V electricity
to the pump 11 and the zone valves H and HW.
[0040] The electronic control system 8, indicated in a box, is supplied with power from
a 240 V AC supply 90. Electricity from the power supply 90 is converted to 120 V and
rectified in the electronic control system 8 to supply an electronics control unit
81. The electronics control unit 81 has two inputs 82 and 83 for receiving information
from a user. The input 82 allows a user to set the heating on period for use in the
operation of the system as described above with reference to Figures 2 to 5. The input
83 allows a user to set the heating off period.
[0041] The electronics control unit 81 is connected to a relay 84, which controls a pair
of switches 85 and 86. The switches 85 and 86 are connected between the pre-existing
heating system between the power supply from the connector block 41 and the zone valves
H and HW. The switches 85 and 86 may be opened and closed to control power supply
from the connector block 41 to the zone valves H and HW. Over-ride switches 87 and
88 are provided to allow power supplied from the connector block 41 to by-pass switches
85 and 86 respectively to reach zone valves H and HW.
[0042] Although not shown in Figure 6, inputs from the hot water thermostat A and Room thermostat
C are connected to the electronic control system 8.
[0043] In operation, the control unit 81 sends signals to the relay 84 causing the relay
84 to open and close the switches 85 and 86 thereby controlling operation of zone
valves H and HW. The control unit 81 causes the switches 85 and 86 to open and close
supplying power to the zone valves H and HW so that the pre-existing central heating
system operates as described with reference to Figures 4 and 5.
[0044] The control system 8 allows retro-fitting of existing combined hot water and heating
systems. In the embodiment described above the control system takes advantage of existing
electronics in the heating system to control the pump 11. When zone valves H and HW
are both closed, the existing electronics shut off the pump 11. Otherwise, when at
least one zone valve is open, the pump 11 is operational. The control unit 8 may be
adapted to take advantage of the electronics pre-existing in a particular combined
hot water and heating system to which it is to be fitted.
1. A combined hot water and heating system comprising a hot water supply means (10) and
a pump (11) for pumping water from the hot water supply means to a first water circuit
(2) and a second water circuit (3), and at least one valve means (H, HW) wherein supply
of hot water from the hot water supply means to the first and second water circuits
is regulated by the at least one valve means (H,HW), the system comprising control
means (8), which comprises a timer operable to set predetermined heating periods and
predetermined heat dissipation periods, characterized in that
said control means (8) cause the at least one valve means to prevent supply of hot
water from the hot water supply means (10) to at least one of said first (2) and second
(3) water circuits when the hot water supply means (10) is in operation in order to
heat water and during the heat dissipation periods.
2. A combined hot water and heating system according to claim 1 wherein the at least
one valve means comprises a valve for each water circuit of the system.
3. A combined hot water and heating system according to claim 1 or claim 2 wherein each
water circuit has an associated thermostat that controls the supply of hot water to
each water circuit by operating the at least one valve means in dependence on the
output of the thermostat associated with that water circuit during the heating periods.
4. A combined hot water and heating system according to claim 3 wherein the hot water
and heating system is a domestic hot water and heating system, the first water circuit
provides hot water for domestic use and the second water circuit provides space heating
and wherein the thermostat associated with the first water circuit is a hot water
thermostat and the thermostat associated with the second water circuit is a room thermostat.
5. A combined hot water and heating system according to any preceding claim wherein the
duration of the predetermined heating periods and the duration of the predetermined
cooling periods is user selectable.
6. A combined hot water and heating system according to claim 5 wherein the duration
of the predetermined periods may be selected to be between 2 minutes and 30 minutes.
7. A combined hot water and heating system according to claim 5 wherein the duration
of the predetermined periods may be selected to be between 5 minutes and 10 minutes.
1. Ein kombiniertes Warmwasser- und Heizsystem, umfassend ein Warmwasserversorgungsmittel
(10) und eine Pumpe (11) zum Pumpen von Wasser von dem Warmwasserversorgungsmittel
zu einem ersten Wasserkreislauf (2) und einem zweiten Wasserkreislauf (3) sowie mindestens
ein Ventilmittel (H, HW), während eine Warmwasserversorgung von dem Warmwasserversorgungsmittel
zu dem ersten und dem zweiten Wasserkreislauf durch das mindestens eine Ventilmittel
(H, HW) gesteuert ist, wobei das System ein Steuermittel (8) umfasst, das eine Zeitschaltuhr
aufweist, die betriebsfähig ist, um vorbestimmte FTeizperioden und vorbestimmte Wärmeabfuhrperioden
zu setzen, dadurch gekennzeichnet, dass
das Steuermittel (8) es bewirkt, dass das mindestens eine Ventilmittel eine Warmwasserversorgung
von dem Warmwasserversorgungsmittel (10) zu mindestens einem von dem ersten (2) und
dem zweiten (3) Wasserkreislauf verhindert, wenn das Warmwasservarsorgungsmittel (10)
in Betrieb ist, um Wasser zu erwärmen, sowie während den Wärmeabfuhrperioden.
2. Ein kombiniertes Warmwasser- und Heizsystem gemäß Anspruch 1, während das mindestens
eine Ventilmittel ein Ventil für jeden Wasserkreislauf des Systems umfasst.
3. Ein kombiniertes Warmwasser- und Heizsystem gemäß Anspruch 1 oder Anspruch 2, während
jeder Wasserkreislauf ein zugehöriges Thermostat aufweist, das die Warmwasserversorgung
zu jedem Wasserkreislauf mittels Betreiben des mindestens einen Ventilmittels in Abhängigkeit
von der Ausgabe des zu dem Wasserkreislauf zugehörigen Thermostats während der Heizperiode
regelt.
4. Ein kombiniertes Warmwasser- und Heizsystem gemäß Anspruch 3, während das Warmwasser-
und Heizsystem ein Hauswarmwasser- und -heizsystem ist, wobei der erste Wasserkreislauf
Warmwasser für den Hausgebrauch bereitstellt und der zweite Wasserkreislauf Raumwärme
bereitstellt, während das zu dem ersten Wasserkreislauf zugehörige Thermostat ein
Warmwasserthermostat ist und das zu dem zweiten Wasserkreislauf zugehörige Thermostat
ein Raumthermostat ist.
5. Ein kombiniertes Warmwasser- und Heizsystem gemäß einem der vorhergehenden Ansprüche,
während die Dauer der vorbestimmten Heizperioden und die Dauer der vorbestimmten Wärmeabfuhrperioden
von einem Nutzer wählbar sind.
6. Ein kombiniertes Warmwasser- und Heizsystem gemäß Anspruch 5, während die Dauer der
vorbestimmten Perioden ausgewählt werden kann zwischen zwei Minuten und 30 Minuten.
7. Ein kombiniertes Warmwasser- und Heizsystem gemäß Anspruch 5, während die Dauer der
vorbestimmten Perioden ausgewählt werden kann zwischen fünf Minuten und zehn Minuten,
1. Système de chauffage et d'eau chaude combiné comprenant des moyens d'alimentation
d'eau chaude (10) et une pompe (11) pour pomper l'eau des moyens d'alimentation d'eau
chaude jusqu'à un premier circuit d'eau (2) et un deuxième circuit d'eau (3) et au
moins un moyen de soupape (H, HW), dans lequel l'alimentation de l'eau chaude des
moyens d'alimentation d'eau chaude aux premier et deuxième circuits d'eau est régulée
par le au moins un moyen de soupape (H, HW), le système comprenant des moyens de commande
(8) qui comprennent une minuterie pouvant fonctionner pour déterminer des périodes
de chauffage prédéterminées et des périodes de dissipation de chaleur prédéterminées,
caractérisé en ce que :
lesdits moyens de commande (8) amènent le au moins un moyen de soupape à empêcher
l'alimentation d'eau chaude des moyens d'alimentation d'eau chaude (10) à au moins
l'un desdits premier (2) et deuxième (3) circuits d'eau lorsque les moyens d'alimentation
d'eau chaude (10) sont en fonctionnement afin de chauffer l'eau et pendant les périodes
de dissipation de chaleur.
2. Système de chauffage et d'eau chaude combiné selon la revendication 1, dans lequel
le au moins un moyen de soupape comprennent une soupape pour chaque circuit d'eau
du système.
3. Système de chauffage et d'eau chaude combiné selon la revendication 1 ou la revendication
2, dans lequel chaque circuit d'eau a un thermostat associé qui commande l'alimentation
de l'eau chaude vers chaque circuit d'eau en actionnant le au moins un moyen de soupape
en fonction de la sortie du thermostat associé à ce circuit d'eau pendant les périodes
de chauffage.
4. Système de chauffage et d'eau chaude combiné selon la revendication 3, dans lequel
le système de chauffage et d'eau chaude est un système de chauffage d'eau chaude domestique,
le premier circuit d'eau fournit l'eau chaude pour l'usage domestique et le deuxième
circuit d'eau fournit le chauffage de l'espace et dans lequel le thermostat associé
au premier circuit d'eau est un thermostat d'eau chaude et le thermostat associé au
deuxième circuit d'eau est un thermostat d'ambiance.
5. Système de chauffage et d'eau chaude combiné selon l'une quelconque des revendications
précédentes, dans lequel la durée des périodes de chauffage prédéterminées et la durée
des périodes de refroidissement prédéterminées peuvent être sélectionnées par l'utilisateur.
6. Système de chauffage et d'eau chaude combiné selon la revendication 5, dans lequel
la durée des périodes prédéterminées peut être sélectionnée pour être comprise entre
2 minutes et 30 minutes.
7. Système de chauffage et d'eau chaude combiné selon la revendication 5, dans lequel
la durée des périodes prédéterminées peut être sélectionnée pour être comprise entre
5 minutes et 10 minutes.