JP2020106152A - Refrigerating storage - Google Patents
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- 230000005684 electric field Effects 0.000 claims 1
- 230000003068 static effect Effects 0.000 claims 1
- 235000013305 food Nutrition 0.000 abstract description 18
- 230000005686 electrostatic field Effects 0.000 abstract description 11
- 238000007710 freezing Methods 0.000 abstract description 5
- 230000008014 freezing Effects 0.000 abstract description 5
- 238000010586 diagram Methods 0.000 description 4
- 238000004519 manufacturing process Methods 0.000 description 2
- 241001465754 Metazoa Species 0.000 description 1
- 239000008280 blood Substances 0.000 description 1
- 210000004369 blood Anatomy 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 244000005700 microbiome Species 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 210000000056 organ Anatomy 0.000 description 1
- 238000004321 preservation Methods 0.000 description 1
- 235000013311 vegetables Nutrition 0.000 description 1
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Abstract
Description
本発明は、冷蔵保存庫に関し、詳しくは、例えば食品などの鮮度を長期間維持することができる冷蔵保存庫に関する。 The present invention relates to a refrigerating storage cabinet, and more particularly to a refrigerating storage cabinet capable of maintaining the freshness of foods for a long period of time.
野菜などの食品を長期間保存するために、食品を冷凍することが行われている。しかしながら、冷凍すると、食品の細胞が破壊され、解凍した際には、鮮度が著しく低下する。そこで、従来より、庫内に高電圧を付加して電圧振動により静電場雰囲気を形成し、該庫内の食品などを静電場雰囲気の中で冷蔵することにより、冷蔵室内の温度を氷点下数度程度にまで下げても当該冷蔵室内の食品が凍ることを防止できる。これにより、食品の鮮度を長期間に渡って維持することが行われている。 BACKGROUND OF THE INVENTION Food products such as vegetables are frozen for long-term storage. However, when frozen, the cells of the food are destroyed and, when thawed, the freshness is significantly reduced. Therefore, conventionally, a high voltage is applied to the refrigerator to form an electrostatic field atmosphere by voltage vibration, and the food in the refrigerator is refrigerated in the electrostatic field atmosphere so that the temperature in the refrigerating room is several degrees below the freezing point. Even if it is lowered to a certain degree, it is possible to prevent the food in the refrigerating room from freezing. As a result, the freshness of food is maintained for a long period of time.
このような食品の冷蔵保存庫としては、例えば、特許文献1および2に記載のようなものがある。特許文献1および2に記載の冷蔵保存庫は、比較的小型であり、庫内に高電圧を付加して静電場雰囲気を形成する1台の電圧印加装置と、この電圧印加装置に電圧を供給する1つの電圧発生装置とを備えた構成となっている。 Examples of such refrigerated storage of foods include those described in Patent Documents 1 and 2. The refrigerating storage cabinets described in Patent Documents 1 and 2 are relatively small in size, and a single voltage applying device that applies a high voltage to the interior of the refrigerator to form an electrostatic field atmosphere, and a voltage is supplied to the voltage applying device. And a single voltage generator that operates.
ところで、比較的大型の冷蔵保存庫の場合は、その容積が大きいため、複数の電圧印加装置を備える必要があった。このため、従来は、電圧印加装置に安定的に高電圧の交流電圧を供給するために、これら複数の電圧印加装置に対応して複数の電圧発生装置を備えるようにしていた。 By the way, in the case of a relatively large refrigerated storage, since its volume is large, it is necessary to provide a plurality of voltage applying devices. Therefore, conventionally, in order to stably supply a high-voltage AC voltage to the voltage applying device, a plurality of voltage generating devices have been provided corresponding to the plurality of voltage applying devices.
しかしながら、複数の電圧印加装置に対応して複数の電圧発生装置を備える構成にした場合、消費電力が極めて大きくなる欠点があった。 However, when a plurality of voltage generators are provided corresponding to a plurality of voltage application devices, there is a drawback that the power consumption becomes extremely large.
本発明は上述の点に鑑みてなされたものであり、その目的は、比較的大型の冷蔵保存庫の場合でも、消費電力を抑えることができる冷蔵保存庫を提供することにある。 The present invention has been made in view of the above points, and an object of the present invention is to provide a refrigerating storage cabinet capable of suppressing power consumption even in the case of a relatively large refrigerating storage cabinet.
上記課題を解決するため、本発明に係る冷蔵保存庫は、冷蔵室(2)内に高電圧を付加して静電場雰囲気を形成する複数の電圧印加装置(3)と、前記複数の電圧印加装置(3)に電圧を供給する1つの電圧発生装置(4)と、前記電圧発生装置(4)と前記複数の電圧印加装置(3)それぞれとの間の電気的接続を順次に切り替える接続制御装置(5)とを備えた構成としている。 In order to solve the above problems, a refrigerating storage cabinet according to the present invention comprises a plurality of voltage applying devices (3) for applying a high voltage in a refrigerating room (2) to form an electrostatic field atmosphere, and the plurality of voltage applying devices. One voltage generator (4) for supplying a voltage to the device (3), and connection control for sequentially switching electrical connections between the voltage generator (4) and each of the plurality of voltage applying devices (3). And a device (5).
また、前記接続制御装置(5)は、前記電圧発生装置(4)で発生した電圧を加える前記電圧印加装置(3)を一定間隔で順次に切り替えるように構成してもよい。 Further, the connection control device (5) may be configured to sequentially switch the voltage application device (3) that applies the voltage generated by the voltage generation device (4) at regular intervals.
さらに、本発明では、前記電圧発生装置(4)を、2500V〜7000Vの交流電圧を発生する装置としてもよい。 Furthermore, in the present invention, the voltage generator (4) may be a device that generates an alternating voltage of 2500V to 7000V.
本発明にかかる冷蔵保存庫によれば、冷蔵室内に高電圧を付加して静電場雰囲気を形成する複数の電圧印加装置と、複数の電圧印加装置に電圧を供給する1つの電圧発生装置と、電圧発生装置と前記複数の電圧印加装置それぞれとの間の電気的接続を順次切り替える接続制御装置とを備えた構成としたことにより、1台の電圧発生装置を備えるだけで済み、消費電力も電圧発生装置1台分で済むので、消費電力の大幅な低減を図ることができる。 According to the refrigerating and storing cabinet according to the present invention, a plurality of voltage applying devices that apply a high voltage to the refrigerating chamber to form an electrostatic field atmosphere, and one voltage generating device that supplies a voltage to the plurality of voltage applying devices, With the configuration including the connection control device that sequentially switches the electrical connection between the voltage generation device and each of the plurality of voltage application devices, only one voltage generation device is required and the power consumption is reduced. Since one generator is sufficient, it is possible to significantly reduce power consumption.
以下、添付図面を参照して本発明の実施形態を詳細に説明する。
〔第1の実施形態〕
図1は、本発明の第1の実施形態に係る冷蔵保存庫を示す図である。同図に示す冷蔵保存庫1は、主に食品を保管するために用いられる業務用の比較的大型のものであり、冷蔵室2内に高電圧を付加して電圧振動により静電場雰囲気を形成し、冷蔵室2内の食品などを静電場雰囲気の中で冷蔵することにより、冷蔵室2内の温度を氷点下数度程度にまで下げても当該冷蔵室2内の食品が凍ることを防止できるものである。これにより、食品の鮮度を長期間に渡って維持することができる。
Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
[First Embodiment]
FIG. 1 is a diagram showing a refrigerated storage cabinet according to a first embodiment of the present invention. The refrigerating storage 1 shown in the figure is a relatively large-sized one for commercial use, which is mainly used for storing food, and a high voltage is applied to the refrigerating compartment 2 to form an electrostatic field atmosphere by voltage vibration. However, by refrigerating the food or the like in the refrigerating compartment 2 in an electrostatic field atmosphere, it is possible to prevent the food in the refrigerating compartment 2 from freezing even if the temperature in the refrigerating compartment 2 is lowered to about several degrees below the freezing point. It is a thing. Thereby, the freshness of the food can be maintained for a long period of time.
この冷蔵保管庫1は、冷蔵室2内を冷蔵するための冷蔵ユニット10と当該冷蔵ユニット10を制御する制御手段20を備える。これら冷蔵ユニット10及び制御手段20は公知の構成のものであってよい。さらにこの冷蔵保管庫1は、冷蔵室2内に高電圧を付加して静電場雰囲気を形成する電圧印加装置3を3台と、これらの電圧印加装置3に電圧を供給する1つの電圧発生装置4と、該電圧発生装置4と3台の電圧印加装置3それぞれとの間の電気的接続を順次に切り替える接続制御装置5とを備えた構成となっている。 The refrigerating storage 1 includes a refrigerating unit 10 for refrigerating the inside of the refrigerating chamber 2 and a control means 20 for controlling the refrigerating unit 10. The refrigerating unit 10 and the control means 20 may have known configurations. Further, this refrigerating storage 1 includes three voltage applying devices 3 for applying a high voltage to the refrigerating chamber 2 to form an electrostatic field atmosphere, and one voltage generating device for supplying voltage to these voltage applying devices 3. 4 and a connection control device 5 that sequentially switches the electrical connection between the voltage generator 4 and each of the three voltage applying devices 3.
本実施形態では、電圧印加装置3はそれぞれ一対の電極3a,3bからなり、これら一対の電極3a,3bは冷蔵室2の内壁に沿う位置に設置されて互いが対峙するように配設されている。電圧発生装置4は、本実施形態では、例えば5000V程度の交流電圧を発生する装置である。電圧発生装置4と3台の電圧印加装置3は、接続制御装置5が備える切替スイッチ6を介して電気的に接続されている。接続制御装置5は、切替スイッチ6と、該切替スイッチ6を例えば数秒間隔で順次切替制御する制御手段7とから成る。制御手段7は、従来より周知の技術、例えばタイマー手段等を用いて切替制御するように簡単に構成できるので、その詳細な構成の説明は省略する。制御手段7は、一例として、一定間隔(例えば数秒間隔)で電圧を加える電圧印加装置3(一対の電極3a,3b)を切り替えるように構成することができる。これにより、3台の電圧印加装置3(3組の電極3a,3b)それぞれが数秒間隔で順次に作動するようになる。 In the present embodiment, the voltage applying device 3 is composed of a pair of electrodes 3a and 3b, respectively, and the pair of electrodes 3a and 3b are installed at positions along the inner wall of the refrigerating chamber 2 so as to face each other. There is. In the present embodiment, the voltage generator 4 is a device that generates an AC voltage of, for example, about 5000V. The voltage generator 4 and the three voltage applying devices 3 are electrically connected via a changeover switch 6 included in the connection control device 5. The connection control device 5 is composed of a changeover switch 6 and a control means 7 for sequentially changing over the changeover switch 6 at intervals of, for example, several seconds. The control means 7 can be easily configured to perform switching control using a conventionally well-known technique, for example, a timer means or the like, and therefore a detailed description of the configuration will be omitted. As an example, the control unit 7 can be configured to switch the voltage application device 3 (a pair of electrodes 3a and 3b) that applies a voltage at regular intervals (for example, every several seconds). As a result, each of the three voltage applying devices 3 (three sets of electrodes 3a and 3b) sequentially operates at intervals of several seconds.
本実施形態では、3台の電圧印加装置3を1台の電圧発生装置4で作動させるようにしているので、従来の3台の電圧印加装置を3台の電圧発生装置でそれぞれ作動させた場合に比べて、消費電力は1/3で済む。また、1台の電圧発生装置4だけ設置すればよいので、構成も簡単になり、組み立ても容易になり、製造コストを低減させることも可能になる。 In the present embodiment, since the three voltage applying devices 3 are operated by the single voltage generating device 4, when the conventional three voltage applying devices are respectively operated by the three voltage generating devices. Power consumption is 1/3 compared to. Moreover, since only one voltage generator 4 needs to be installed, the configuration is simple, the assembly is easy, and the manufacturing cost can be reduced.
〔第2の実施形態〕
次に、本発明の第2の実施形態について説明する。なお、第2の実施形態の説明及び対応する図面においては、第1の実施形態と同一又は相当する構成部分には同一の符号を付し、以下ではその部分の詳細な説明は省略する。また、以下で説明する事項以外の事項、及び図示する以外の事項については、第1の実施形態と同じである。この点は、下記の他の実施形態についても同様である。
[Second Embodiment]
Next, a second embodiment of the present invention will be described. In the description of the second embodiment and the corresponding drawings, the same reference numerals will be given to the same or corresponding components as those of the first embodiment, and detailed description thereof will be omitted below. Further, matters other than those described below and matters other than those illustrated are the same as those in the first embodiment. This also applies to the other embodiments described below.
図2は、本発明の第2の実施形態に係る食品の冷蔵保存庫を示す図である。同図に示す冷蔵保存庫1−2は、第1の実施形態と同様に比較的大型のものであり、これ故に、冷蔵室2内に高電圧を付加して静電場雰囲気を形成する電圧印加装置3を3台備えている。 FIG. 2 is a diagram showing a refrigerated storage cabinet for food according to a second embodiment of the present invention. The refrigerating storage cabinet 1-2 shown in the figure is relatively large as in the first embodiment, and therefore, a voltage is applied to the refrigerating compartment 2 to apply a high voltage to form an electrostatic field atmosphere. It is equipped with three devices 3.
本実施形態の冷蔵保存庫1−2では、3台の電圧印加装置3の一方の電極3a,3a,3aを冷蔵室2内に設置し、他方の電極については、これらを1つにまとめて、冷蔵室2を覆う内壁8を共通の他方の電極3bとしている。一方の電極3a,3a,3aは、冷蔵室2内に配設され、食品などを載せる棚を電極としたものであっても良い。 In the refrigerated storage 1-2 of the present embodiment, one of the electrodes 3a, 3a, 3a of the three voltage application devices 3 is installed in the refrigerating compartment 2, and the other of the electrodes is combined into one. The inner wall 8 covering the refrigerating chamber 2 is the other common electrode 3b. One of the electrodes 3a, 3a, 3a may be arranged in the refrigerating compartment 2 and may be a shelf on which food or the like is placed.
本実施形態では、第1の実施形態の場合と同様に、3台の電圧印加装置3それぞれは、順次切り替えられて、1台の電圧発生装置4で作動されるので、従来の3台の電圧印加装置を3台の電圧発生装置でそれぞれ作動させた場合に比べて、消費電力は1/3で済む。また、1台の電圧発生装置4だけ設置すればよいので、構成も簡単になり、組み立ても容易になり、製造コストを低減させることも可能になる。 In this embodiment, as in the case of the first embodiment, each of the three voltage application devices 3 is sequentially switched and is operated by the one voltage generation device 4, so that the three voltage application devices of the related art are used. The power consumption is 1/3 as compared with the case where the applying device is operated by each of the three voltage generating devices. Moreover, since only one voltage generator 4 needs to be installed, the configuration is simple, the assembly is easy, and the manufacturing cost can be reduced.
なお、前記した第1、第2の実施形態では、3台の電圧印加装置3を採用したが、勿論これに限らず、冷蔵室2の大きさに応じて、さらに、2台またはさらに多くの台数を設置するようにしても良い。なお、設置する電圧印加装置3の台数は、冷蔵室2の大きさと、1台の電圧発生装置4によって電圧供給を切り替える間隔による食品等の冷蔵保存への影響を考慮して適宜決定する必要がある。 Although the three voltage applying devices 3 are adopted in the above-described first and second embodiments, the number of the voltage applying devices 3 is not limited to this, and two or more may be added depending on the size of the refrigerating room 2. You may make it install a number. The number of the voltage applying devices 3 to be installed needs to be appropriately determined in consideration of the size of the refrigerating compartment 2 and the influence of the interval of switching the voltage supply by the single voltage generating device 4 on the cold storage of food or the like. is there.
また、電圧発生装置4が電圧印加装置3に供給する交流電圧も、5000Vには限らない。例えば、約2500V〜7000Vの範囲内で決定するのが好ましいが、勿論これに限らず、冷蔵保存するものの特性等を考慮して範囲で適宜な電圧を決定すれば良い。 The AC voltage supplied from the voltage generator 4 to the voltage applying device 3 is not limited to 5000V. For example, it is preferable to determine the voltage in the range of about 2500V to 7000V, but not limited to this, of course, an appropriate voltage may be determined in the range in consideration of the characteristics of the item to be refrigerated and stored.
さらに、本発明にかかる冷蔵保管庫は、食品用の冷蔵保管庫には限らず、食品以外にも、動物の血液や臓器、あるいは、微生物等、鮮度を長期間維持する必要があるものの保管庫であれば、どのようなものにも適用することができる。 Further, the refrigerated storage according to the present invention is not limited to the refrigerated storage for foods, but is also a storage for foods other than food, such as blood or organs of animals, or microorganisms, which need to maintain freshness for a long time. So long as it can be applied to anything.
以上、本発明の実施形態を説明したが、本発明は上記実施形態に限定されるものではなく、特許請求の範囲、及び明細書と図面に記載された技術的思想の範囲内において種々の変形が可能である。 Although the embodiments of the present invention have been described above, the present invention is not limited to the above embodiments, and various modifications are possible within the scope of the claims and the technical idea described in the specification and drawings. Is possible.
1,1−2 冷蔵保存庫
2 冷蔵室
3 電圧印加装置
3a,3b 電極
4 電圧発生装置
5 接続制御装置
6 切替スイッチ
7 制御手段
8 内壁
10 冷蔵ユニット
20 制御手段
1, 1-2 cold storage 2 cold storage 3 voltage application device 3a, 3b electrode 4 voltage generator 5 connection control device 6 changeover switch 7 control means 8 inner wall 10 cold storage unit 20 control means
Claims (3)
前記複数の電圧印加装置に電圧を供給する1つの電圧発生装置と、
前記電圧発生装置と前記複数の電圧印加装置それぞれとの間の電気的接続を順次に切り替える接続制御装置とを備えたことを特徴とする冷蔵保存庫。 A plurality of voltage applying devices that form a static electric field atmosphere by applying a high voltage to the refrigerating chamber,
One voltage generator for supplying a voltage to the plurality of voltage applying devices;
A refrigerated storage, comprising: a connection control device that sequentially switches electrical connections between the voltage generation device and each of the plurality of voltage application devices.
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CN114630796A (en) * | 2021-12-10 | 2022-06-14 | 奥姆乐科技(上海)有限公司 | Container, especially container for transporting goods |
JP7213605B1 (en) * | 2021-08-04 | 2023-01-27 | 株式会社スーリヤ | Refrigerator and its electric field forming method |
WO2023013729A1 (en) * | 2021-08-04 | 2023-02-09 | 株式会社スーリヤ | Refrigerated storage chamber and electric field formation method therefor |
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JP2012250773A (en) * | 2007-04-04 | 2012-12-20 | Mitsui O S K Lines Ltd | Electrostatic field generation container |
KR20080028404A (en) * | 2008-03-18 | 2008-03-31 | 엘지전자 주식회사 | Non-freezing chamber |
JP2013096675A (en) * | 2011-11-04 | 2013-05-20 | Unit Com Inc | Panel for forming electric field, storage vault equipped therewith for generating supercooling, and method for forming electric field for generating supercooling |
JP3218535U (en) * | 2017-08-30 | 2018-10-25 | 株式会社スーパークーリングラボ | Electric field forming panel used for prefab, and prefab |
JP3218533U (en) * | 2017-08-30 | 2018-10-25 | 株式会社スーパークーリングラボ | Electric field forming panel used for container and container |
JP3218534U (en) * | 2017-08-30 | 2018-10-25 | 株式会社スーパークーリングラボ | Electric field forming panels used for large refrigerated rooms and large refrigerated rooms |
JP3218538U (en) * | 2017-08-30 | 2018-10-25 | 株式会社スーパークーリングラボ | Electric field forming panel used for truck and truck |
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JP2022013221A (en) * | 2020-07-03 | 2022-01-18 | 株式会社O’s&Tec | container |
JP7340133B2 (en) | 2020-07-03 | 2023-09-07 | 株式会社O′s&Asset | container |
JP7213605B1 (en) * | 2021-08-04 | 2023-01-27 | 株式会社スーリヤ | Refrigerator and its electric field forming method |
WO2023013729A1 (en) * | 2021-08-04 | 2023-02-09 | 株式会社スーリヤ | Refrigerated storage chamber and electric field formation method therefor |
CN114630796A (en) * | 2021-12-10 | 2022-06-14 | 奥姆乐科技(上海)有限公司 | Container, especially container for transporting goods |
WO2023105752A1 (en) * | 2021-12-10 | 2023-06-15 | 株式会社O’s&Tec | Container |
CN114630796B (en) * | 2021-12-10 | 2023-10-10 | 奥姆乐科技(上海)有限公司 | container |
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