This application claims priority of Taiwanese Patent Application No. 099102086, filed on Jan. 26, 2010.
1. Field of the Invention
The invention relates to a water valve device, and more particularly to a water heating apparatus having a water valve device for a solar water heating system.
2. Description of the Related Art
In a conventional water heating system using solar energy and auxiliary electric energy, a solar collector is used to heat water in a reservoir. In addition, an auxiliary electric heater, such as an electrothermal bar, is disposed in the reservoir to heat the water in the reservoir if the solar heated water is not sufficiently hot.
In such a configuration, all water in the reservoir is heated by the electric heater when necessary. However, only a part of the water heated by the electric heater is used at a time, thereby resulting in waste of electric energy. Furthermore, heating using the electric heater easily results in generation of scales in the reservoir after a period of time.
Therefore, an object of the present invention is to provide a water valve device, and a water heating apparatus having the same that can overcome the aforesaid drawbacks of the prior art.
According to one aspect of the present invention, there is provided a water valve device adapted for use with a water heating system using solar energy and non-solar auxiliary energy. The water heating system includes a reservoir for solar heated water with a cold water inlet and a solar heated water outlet, and a water heating device operable to heat water using non-solar auxiliary energy whenever water flows through the water heating device, and having a cold water inlet and a hot water outlet. The water valve device comprises:
a valve unit having an input port adapted to be connected to the solar heated water outlet of the reservoir of the water heating system, a first output port adapted to be connected to the cold water inlet of the water heating device of the water heating system, and a second output port, the valve unit being operable in one of a first state, where the input port is in fluid communication with the first output port, and a second state, where the input port is in fluid communication with the second output port;
a temperature sensor for sensing temperature of water flowing through the input port of the valve unit to generate a temperature sensing signal corresponding to the temperature; and
a controller coupled to the temperature sensor and the valve unit, receiving the temperature sensing signal from the temperature sensor, and operable to control the valve unit based on the temperature sensing signal to operate in the first state upon detecting that the temperature is lower than a predetermined temperature or in the second state upon detecting that the temperature is not lower than the predetermined temperature.
According to another aspect of the present invention, there is provided a water heating apparatus adapted for use with a solar water heating system. The solar water heating system includes a reservoir for solar heated water with a cold water inlet and a solar heated water outlet. The water heating apparatus comprises:
a water heating device operable to heat water using non-solar energy whenever water flows through the water heating device, and having a cold water inlet and a hot water outlet; and
a water valve device including
a valve unit having an input port adapted to be connected to the solar heated water outlet of the reservoir of the solar water heating system, a first output port connected to the cold water inlet of the water heating device, and a second output port, the valve unit being operable in one of a first state, where the input port is in fluid communication with the first output port, and a second state, where the input port is in fluid communication with the second output port,
a temperature sensor for sensing temperature of water flowing through the input port of the valve unit to generate a temperature sensing signal corresponding to the temperature, and
a controller connected electrically to the temperature sensor and the valve unit, receiving the temperature sensing signal from the temperature sensor, and operable to control the valve unit based on the temperature sensing signal to operate in the first state upon detecting that the temperature is lower than a predetermined temperature or in the second state upon detecting that the temperature is not lower than the predetermined temperature.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiments with reference to the accompanying drawings, of which:
Referring to
In this embodiment, the water heating device 10 is a constant-temperature water heater. In other embodiments, the water heating device 10 can be an instantaneous water heater. The water heating device 10 is operable to heat water using non-solar energy, such as gas, whenever water flows through the water heating device 10. The water heating device 10 has a cold water inlet 11, and a hot water outlet 12 adapted to be connected to a hot water supplying port 700 using a water pipe (not show).
Referring further to
In this embodiment, as shown in
The controller 23 is connected electrically to the temperature sensor 22 and the three-way electromagnetic valve 211. The controller receives the temperature sensing signal from the temperature sensor 22, and is operable to control the valve unit 20 based on the temperature sensing signal to operate in the first state upon detecting that the temperature is lower than a predetermined temperature or in the second state upon detecting that the temperature is not lower than the predetermined temperature. In this embodiment, the controller 23 is a microprocessor.
The state selecting unit 24 is connected electrically to the controller 23. The state selecting unit 24 is operable to output to the controller 23 a state selecting signal corresponding to a desired one of the first and second states of the valve unit 21. Thus, the controller 23 is operable to control, based on the state selecting signal from the state selecting unit 24, the valve unit 21 to operate in the desired one of the first and second states upon receipt of the state selecting signal from the state selecting unit 24.
The indicating unit 25 is connected electrically to the controller 23 for generating various indicating outputs corresponding respectively to the first and second states of the valve unit 21. In this embodiment, the indicating unit 25 includes an LED unit capable of radiating light with different colors corresponding respectively to the first and second states of the valve unit 21.
In use, when water flowing through the input port of the valve unit 21 is not lower than the predetermined temperature, the valve unit 21 is operated in the second state. In this case, the solar heated water in the reservoir 90 flows to the hot water supplying port 700 through the valve unit 21. When water flowing through the input port of the valve unit 21 is lower than the predetermined temperature, the valve unit 21 is operated in the first state. In this case, the solar heated water in the reservoir 90 flows to the hot water supplying port 700 through the valve unit 21 and through the water heating device 10, and is heated by the water heating device 10 when flowing through the water heating device 10.
The three-way tube 212 has first, second and third open ends 2121, 2122, 2123. The first open end 2121 serves as the input port of the valve unit 21′.
The first electromagnetic valve 213 is connected electrically to and is controlled by the controller 23. The first electromagnetic valve 213 has an input port 2131 connected to the second open end 2122 of the three-way tube 212, and an output port 2132 that serves as the first output port of the valve unit 21′.
The second electromagnetic valve 214 is connected electrically to and is controlled by the controller 23. The second electromagnetic valve 214 has an input port 2141 connected to the third open end 2123, and an output port 2142 that serves as the second output port of the valve unit 21′.
The controller 23 controls the first and second electromagnetic valves 213, 214 so that the first and second electromagnetic valves 213, 214 remain open and closed, respectively, when the valve unit 21′ is in the first state, and that the first and second electromagnetic valves 213, 214 remain closed and open, respectively, when the valve unit 21′ is in the second state.
In sum, since the water heating device 10 heats water using gas, the problem of scaling in the aforesaid prior art does not occur. Furthermore, when the valve unit 21, 21′ is operated in the first state, only water flowing through the water heating device 10 is heated. Therefore, the water heating apparatus 100, 100′ of the present invention can minimize waste of gas.
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
---|---|---|---|
099102086 | Jan 2010 | TW | national |