1. Field of the Invention
The present invention relates to an apparatus and a method for maintaining the freshness of foods, and more particularly to an apparatus and a method for maintaining the freshness of foods, in which space where foods Ware positioned is regulated to a predetermined temperature using heat transfer means connected to electrodes, thereby maintaining the freshness of foods.
2. Description of the Prior Art
Foods storage devices such as a refrigerator need a technology for preserving foods for a long time while maintaining the freshness thereof. As an example of the technology, there is a method of lowering a temperature of foods through direct supply of cooled air to foods storage space. Also provided is another method in which a pipe having cooled air therein is put in foods storage space to regulate a temperature of foods indirectly, and a heater is used to regulate humidity of the space to thereby prevent foods from being dried.
Further, a recently available method is provided in which a thermoelectric module is operated so that a cooling plate thereof is cooled, and a heat pipe connected to the cooling plate is used to regulate a temperature of foods. Apart from the above and other methods using temperature regulation, there is also a method in which an electric field is applied to foods, making it possible to prevent the growth of microbes in the foods and oxidation of the foods and therefore maintaining the freshness of foods.
The present invention has been made to solve the problems occurring in the prior art, and an object of the present invention is to provide an apparatus and a method for maintaining the freshness of foods by applying, to foods, a voltage for maintaining the freshness of foods using electrodes, and regulating a temperature of foods using heat transfer means connected to the electrodes, thereby implementing the voltage application and the temperature regulation at the same time.
In accordance with an aspect of the present invention, there is provided an apparatus for maintaining the freshness of foods comprising: first and second electrodes spaced oppositely to a predetermined distance; a voltage generator unit applying voltage between the first electrode and the second electrode; heat transfer means connected to the first electrode or the second electrode to absorb heat from the space between the first electrode and the second electrode; and a temperature control unit controlling the heat transfer means such that the space between the first electrode and the second electrode is of predetermined temperature.
In accordance with another aspect of the present invention, there is provided a method of maintaining the freshness of foods comprising the steps of: applying voltage, between a first electrode and a second electrode; and controlling heat transfer means connected to the first or second electrode such that the space between the first electrode and the second electrode is of predetermined temperature.
The above and other objects, features and advantages of the present invention will be more apparent from the following detailed description taken in conjunction with the accompanying drawings, in which:
Hereinafter, exemplary embodiments of the present invention will be described with reference to the accompanying drawings.
The first and second electrodes 1 and 2 are electrodes for applying voltage to foods 100, and the voltage generator unit 3 is a device for applying certain voltage between the first and second electrodes 1 and 2 for maintaining the freshness of foods. The voltage applied may be direct current voltage, alternating current voltage with certain frequency, or combined voltage of direct current voltage and alternating current voltage. The foods 100 are positioned between the first electrode 1 and the second electrode 2, and receive therein the electric charges by the voltage applied between the electrodes so as to prevent the oxidation and the growth of microbes in the foods 100.
Apart from using voltage for maintaining the freshness of foods, the heat transfer means 4 is connected to one or two of the first electrode 1 and the second electrode 2 to thereby regulate the temperature of the space where the foods 100 are positioned. Although the embodiments of the present invention have described that the heat transfer means 4 is connected to the first electrode 1, the heat transfer means 4 may be connected to the second electrode 2 or both the electrodes 1 and 2.
Further, in an embodiment of the present invention, the heat transfer means 4 may be integrated with the first electrode 1 or the second electrode 2 through the insertion thereinto. The heat transfer means 4 absorbs heat from the space between the first electrode 1 and the second electrode 2 to thereby regulate the temperature between the two electrodes 1 and 2 to a predetermined temperature.
Meanwhile, the heat transfer means 4 for absorbing heat from the space between the first and second electrodes 1 and 2 is integrated with the first electrode 1 through the insertion thereinto. The heat transfer means 4 absorbs heat from the surface of the first electrode 1 to thereby regulate the temperature of the space where foods are positioned.
Although the embodiment of
In an embodiment, the heat transfer means 4 may comprise one or more heat pipes. The heat pipe is heat transfer means that transfers heat flowing upon condensation and evaporation of a coolant circulating through a pipe, thereby efficiently regulating the temperature of the space where foods are positioned. Further, in another embodiment, the heat transfer means 4 may be composed of an air pipe, into which a coolant such as cooled gas is injected, or others.
Further, in an embodiment, the first electrode 1 may be provided, on its surfaces with a plurality of projections to improve heat transfer efficiency by the first electrode 1, which will be described with reference to
In the embodiment of
Referring to
The temperature control unit 6 controls the heat exchange of the heat transfer means 4 according to the measured temperature from the temperature sensor 5 to thereby regulate the space between the first and second electrodes 1 and 2 to have predetermined temperature. For 1 instance, if the temperature of the space is low, control is carried out so as to increase the temperature of the heat transfer means 4, and if the temperature is high, control is done so as to lower the temperature of the heat transfer means 4, thereby regulating the space between the electrodes to have predetermined temperatures.
The temperature control unit 6 may be constructed to have diverse types of devices for discharging heat absorbed by the heat transfer means 4.
The cooler 62 cools a coolant, such as gas, to predetermined temperature and stores it. The cooler supplies the coolant to the heat transfer means 4 according to the regulation of the coolant regulator 63. The coolant regulator 63 regulates the amount of the coolant supplied from the cooler 62 according to the temperature of the space between the first and second electrodes 1 and 2, which is measured by the temperature sensor 5. For instance, the temperature can be regulated such that if the temperature of the space between the electrodes 1 and 2 is not less than the predetermined temperature, the coolant is supplied from the cooler 62, and if the temperature is not more than the predetermined temperature, the supply of coolant is blocked. Heat absorbed by the heat transfer means 4 is discharged by the coolant supplied from the cooler 62.
The temperature control unit 6 controls the process of discharging heat of the heat transfer means 4 absorbed from the space between the first and second electrodes 1 and 2, and it is accordingly possible to regulate the space where foods are positioned to have predetermined temperature.
Next, the temperature control unit 6 controls the heat transfer means 4 to regulate the space between the first and second electrodes 1 and 2 to have predetermined temperature (S2). The control of the heat transfer means 4 by the temperature control unit 6 may be carried out in such a way that according to the embodiments, the coolant is supplied to the heat transfer means 4, or otherwise the temperature of heat transfer means 4 is lowered using the thermoelectric module.
Depending upon the control of the temperature control unit 6, the heat transfer means 4 connected to the first electrode 1 or the second electrode 2 absorbs heat from the space between the electrodes. Further, in an embodiment, the heat transfer means 4 may be integrated with the electrode through the insertion thereinto, so that it is made into one electrode with the first or second electrode 1 or 2.
According to the apparatus and a method for maintaining the freshness of foods according to the embodiments of the present invention, the heat transfer means is connected to the electrode for voltage application, so that both the application of electric field and the temperature regulation are advantageously obtained using a single electrode without installing a separate device for temperature regulation. Further, the plurality of projections is formed on the electrode, so that the efficiencies of heat transfer and voltage application by the electrode are advantageously improved.
Although exemplary embodiments of the present invention have been described for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims.
Number | Date | Country | Kind |
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10-2007-0123493 | Nov 2007 | KR | national |