会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 21. 发明专利
    • Heat storage device and air conditioner using same
    • 热存储装置和空调器使用相同
    • JP2012078010A
    • 2012-04-19
    • JP2010223755
    • 2010-10-01
    • Panasonic Corpパナソニック株式会社
    • INOUE SHIGEYUKIKURISUYA KOUJIIMASAKA TOSHIYUKISHIMIZU AKIHIKOYAMAMOTO KENSHO
    • F28D20/00F24F5/00
    • F24F5/0017F25B13/00F25B2400/05F25B2400/24F28D1/06F28D20/0034F28D2020/0078Y02E60/142Y02E60/147
    • PROBLEM TO BE SOLVED: To provide a heat storage device that expands a capacity of a heat storage material and a heat exchanger in a region where heat of a heat source is easily transferred by natural convection, thereby effectively storing heat and using it, wherein the heat storage material which is at low cost and has a large heat capacity and whose main component is water is used and a heat storage tank abuts against the heat source, in the heat storage device.SOLUTION: The device includes: the heat storage material which is constituted of liquid and stores heat from the heat source; the heat storage tank 2 which holds the heat storage material therein; and a heat transfer part 4 which is a wall for forming an outer shell of the heat storage tank and which transfers heat between the heat source and the heat storage material. The heat storage tank 2 is configured so that an upper end of the heat storage tank 2 is higher than an upper end of the heat transfer part 4, and the configuration enables the capacity of the heat storage material to be increased and at the same time enables the temperature of even the heat storage material which is not in contact with the heat transfer part to be efficiently increased by convection heat transfer.
    • 要解决的问题:提供一种在通过自然对流容易地传递热源的区域中扩大蓄热材料和热交换器的容量的蓄热装置,从而有效地储存热量并使用它 其特征在于,在所述蓄热装置中使用成本低且热容量大且主要成分为水的蓄热材料,蓄热容器与所述热源抵接。 解决方案:该装置包括:蓄热材料,其由液体构成并储存来自热源的热量; 将蓄热材料保持在其内的储热箱2; 以及作为用于形成蓄热箱的外壳的壁并且在热源和蓄热材料之间传递热量的传热部4。 蓄热箱2构成为使得储热罐2的上端高于传热部4的上端,并且能够使蓄热材料的容量增加,同时, 能够通过对流传热有效地提高与传热部不接触的蓄热材料的温度。 版权所有(C)2012,JPO&INPIT
    • 22. 发明专利
    • Heat storage device and air conditioner with the same
    • 热存储装置和空调装置
    • JP2012063075A
    • 2012-03-29
    • JP2010207495
    • 2010-09-16
    • Panasonic Corpパナソニック株式会社
    • OKA KOJIKURISUYA KOUJITOKURA SATOSHIKAMOTA HIROKAZUBABA MASAHIROYAMAMOTO KENSHO
    • F25B13/00
    • F25B13/00F25B47/02F25B47/022F25B2313/02741F25B2400/0403F25B2400/24F28D20/0034F28F13/00F28F21/067F28F2013/006F28F2265/18Y02E60/142
    • PROBLEM TO BE SOLVED: To provide a heat storage device capable of storing heat while enhancing the efficiency of heat transfer, when transferring waste heat of a compressor to a heat storage material received in a heat storage tank via a heat transfer sheet or heat transfer unit, and to provide an air conditioner employing the heat storage device.SOLUTION: The heat storage device is configured by the heat storage tank 32 which receives the heat storage material for storing the heat generated in the compressor, and the heat transfer sheet disposed between the compressor and the heat storage tank 32 for efficiently transmitting the waste heat of the compressor to the heat storage tank 32. The heat storage tank 32 includes the heat transfer unit 45 in a portion in contact with the heat transfer sheet, and grooves 46 on the surface in contact with the heat transfer sheet of the heat transfer unit 45 in order to discharge the air accumulated between the heat transfer sheet and the heat transfer unit 45. By this arrangement, the air accumulated therebetween is discharged along the grooves 46 when the heat transfer sheet is brought into close contact with the heat transfer unit 45, thereby improving the efficiency of heat transfer without blockage of heat tranfer by the air having thermal insulation.
    • 要解决的问题:提供一种能够在提高传热效率的同时存储热量的蓄热装置,当通过传热片将压缩机的废热转移到容纳在蓄热箱中的蓄热材料时, 传热单元,并且提供使用该蓄热装置的空调。 解热方案:蓄热装置由储存储存材料的储热箱32构成,储存材料用于储存在压缩机中产生的热量,以及设置在压缩机和储热箱32之间的传热片,用于有效地传输 压缩机的废热到蓄热箱32.储热箱32包括与传热片接触的部分的传热单元45,以及与传热片的传热片接触的表面上的槽46 传热单元45,以排出积聚在传热片和传热单元45之间的空气。通过这种布置,当传热片与热量接近时,积聚在其间的空气沿凹槽46排出 转移单元45,从而提高热传递的效率,而不会由具有绝热的空气阻止热传递。 版权所有(C)2012,JPO&INPIT
    • 23. 发明专利
    • Air conditioner
    • 冷气机
    • JP2012057866A
    • 2012-03-22
    • JP2010201997
    • 2010-09-09
    • Panasonic Corpパナソニック株式会社
    • KURISUYA KOUJISHIMIZU AKIHIKOKAMOTA HIROKAZUYAMAMOTO KENSHOMITSUYANAGI YUKITAKABABA MASAHIROFUJITA NAOTOIMASAKA TOSHIYUKI
    • F24F1/30F25B1/00F25B13/00F25B43/00
    • Y02B30/52
    • PROBLEM TO BE SOLVED: To provide an air conditioner that suppresses deformation of a heat storage tank storing a heat storage material for storing heat generated in a compressor.SOLUTION: In the air conditioner having the compressor 6 for compressing the refrigerant and the heat storage tank 32 for storing the heat storage material for storing the heat generated in the compressor 6, the heat storage tank 32 including one end 46a and the other end 46b is configured to partially cover an outer circumferential surface 6a of the compressor 6 in the circumferential direction thereof by the part between the one end 46a and the other end 46b. The air conditioner further has a strut member 56 disposed between the one end 46a and the other end 46b of the heat storage tank 32 so as to suppress approach of the one end 46a and the other end 46b. The deformation of the heat storage tank 32 to the compressor 6 side is suppressed by the strut member 56.
    • 解决的问题:提供一种空调,其抑制存储用于储存在压缩机中产生的热量的储热材料的储热箱的变形。 解决方案:在具有用于压缩制冷剂的压缩机6的空气调节器和用于储存在压缩机6中产生的热量的储热材料的储热箱32中,包括一端46a和 另一端部46b被构造成通过一端部46a和另一端部46b之间的部分,在压缩机6的周向部分上覆盖压缩机6的外周面6a。 空调机还具有设置在蓄热箱32的一端46a和另一端46b之间的支柱构件56,以抑制一端46a和另一端46b的接近。 储罐32向压缩机6侧的变形由支柱构件56抑制。(C)2012年,JPO&INPIT
    • 24. 发明专利
    • Heat storage device
    • 热存储设备
    • JP2012052681A
    • 2012-03-15
    • JP2010193431
    • 2010-08-31
    • Panasonic Corpパナソニック株式会社
    • INOUE SHIGEYUKIKURISUYA KOUJITOKURA SATOSHIKAMOTA HIROKAZUBABA MASAHIROKUBO TSUGIOYAMAMOTO KENSHO
    • F25B47/02F04C29/04
    • PROBLEM TO BE SOLVED: To provide a heat storage device capable of efficiently storing heat from a heat source to a heat storage material, and also having durability.SOLUTION: The device includes: the heat storage material; a heat storage tank 3 for internally holding the heat storage material and abutting against the heat source; and a heat transfer unit 4, which is arranged on a wall surface of the heat storage tank at the position abutting against the heat source, for transferring heat between the heat source and the heat storage material. The heat transfer unit 4 is configured to have uneven thickness by arranging irreguralities at the side of the heat storage material, thereby the strength of the heat transfer unit is secured and the efficiency of heat transfer are enhanced at other comparatively thin parts.
    • 要解决的问题:提供一种能够有效地将来自热源的热量存储到蓄热材料并且还具有耐久性的蓄热装置。

      解决方案:该装置包括:储热材料; 用于内部保持蓄热材料并抵靠热源的储热箱3; 以及传热单元4,其设置在与所述热源抵接的位置处的所述蓄热体的壁面上,用于在所述热源与所述蓄热材料之间传递热量。 传热单元4通过在蓄热材料侧设置不均匀性而具有不均匀的厚度,从而确保传热单元的强度,并且在其它相对较薄的部分提高传热效率。 版权所有(C)2012,JPO&INPIT

    • 25. 发明专利
    • Refrigeration cycle device
    • 制冷循环装置
    • JP2012037130A
    • 2012-02-23
    • JP2010177212
    • 2010-08-06
    • Panasonic Corpパナソニック株式会社
    • OKA KOJIYAMAMOTO KENSHOTOKURA SATOSHIKAMOTA HIROKAZUBABA MASAHIROSHIMIZU AKIHIKO
    • F25B47/02
    • PROBLEM TO BE SOLVED: To provide a refrigeration cycle device that can further improve the defrost performance during a defrosting operation while minimizing the return of a liquid phase refrigerant to a compressor so that the reliability of the compressor is ensured.SOLUTION: The refrigeration cycle device includes a defrosting bypass circuit and a heat storage bypass circuit. The refrigeration cycle device is configured to open a second electromagnetic valve 42 during a defrosting operation in a predetermined period after the opening of a first electromagnetic valve 30. This configuration can prevent a large amount of refrigerant accumulated in an indoor heat exchanger and an outdoor heat exchanger during the defrosting operation from returning to the compressor at once, and the reliability of the compressor from losing.
    • 解决问题的方案:提供一种能够进一步提高除霜运转时的除霜性能,同时最小化液相制冷剂返回到压缩机的冷冻循环装置,从而确保压缩机的可靠性。 解决方案:制冷循环装置包括除霜旁路回路和储热旁路回路。 制冷循环装置构成为在第一电磁阀30打开之后的规定时间内除霜运转期间打开第二电磁阀42.这种结构可以防止积存在室内热交换器和室外热量中的大量制冷剂 交换器在除霜操作期间立即返回压缩机,并且压缩机的可靠性降低。 版权所有(C)2012,JPO&INPIT
    • 26. 发明专利
    • Refrigeration cycle device
    • 制冷循环装置
    • JP2011202938A
    • 2011-10-13
    • JP2010224474
    • 2010-10-04
    • Panasonic Corpパナソニック株式会社
    • YAMAMOTO KENSHOKAMOTA HIROKAZUTOKURA SATOSHISUGIO TAKASHITAKAHASHI MASATOSHI
    • F25B13/00F25B1/00
    • F25B13/00F25B47/025F25B2400/05F25B2400/24F25B2700/2111
    • PROBLEM TO BE SOLVED: To provide a refrigeration cycle device preventing deterioration of a heat storage material for storing heat generated by a compressor.SOLUTION: The refrigeration cycle device having a compressor 6, an indoor heat exchanger 16, an expansion valve 12 and an outdoor heat exchanger 14, which are connected through refrigerant piping, includes a heat storage device for storing heat generated by the compressor 6. The refrigeration cycle device also includes a controller which switches the operation of the device from a first air conditioning operation to a second air conditioning operation, the first air conditioning operation being operation which, when the temperature of the heat storage material 36 contained within a heat storage tank 32 exceeds a predetermined temperature which is lower than or equal to the boiling point of water contained in the heat storage material 36 and which is determined considering the boiling point, causes the refrigerant discharged from the compressor 6 to pass through the indoor heat exchanger 16, the expansion valve 12 and the outdoor heat exchanger 14, and the second heating operation being operation which, when the temperature of the heat storage material 36 exceeds the predetermined temperature, causes the refrigerant discharged from the compressor 6 to pass through a heat storage heat exchanger 34.
    • 要解决的问题:提供一种制冷循环装置,其防止用于储存由压缩机产生的热量的储热材料的劣化。解决方案:具有压缩机6,室内热交换器16,膨胀阀12和室外的制冷循环装置 通过制冷剂配管连接的热交换器14包括用于存储由压缩机6产生的热量的蓄热装置。制冷循环装置还包括将装置的操作从第一空调操作切换到第二空气的控制器 在第一空调运转中,当储热箱32内的蓄热材料36的温度超过蓄热材料中所含的水的沸点以下的规定温度以上时, 并且考虑到沸点来确定,导致从第36位排出的制冷剂 e压缩机6通过室内热交换器16,膨胀阀12和室外热交换器14,并且第二加热操作是当蓄热材料36的温度超过预定温度时使制冷剂排出 从压缩机6通过蓄热热交换器34。
    • 27. 发明专利
    • Heat storage device and air conditioner with the same
    • 热存储装置和空调装置
    • JP2011163664A
    • 2011-08-25
    • JP2010027193
    • 2010-02-10
    • Panasonic Corpパナソニック株式会社
    • YAMAMOTO KENSHOKAMOTA HIROKAZUKAWAZOE DAISUKEKUBO TSUGIOAKAMINE IKUO
    • F25B1/00F24F1/10F25B13/00F25B47/02
    • PROBLEM TO BE SOLVED: To provide a heat storage device in which heat can be efficiently exchanged among heat storage materials that accumulate heat generated by a compressor, and to provide an air conditioner using the heat storage device.
      SOLUTION: The heat storage device, which is arranged to enclose the compressor and accumulates the heat generated by the compressor, is composed of a heat storage tank 32 that accommodates the heat storage materials that accumulate the heat generated by the compressor, and a heat storage type heat exchanger 34 accommodated by the heat storage tank 32, wherein the barycentric position of the heat storage type heat exchanger 34 in its height direction is set higher than the center position of the heat storage tank 32 in its height direction.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 解决的问题:提供一种蓄热装置,其能够积聚由压缩机产生的热量的蓄热材料之间的热量进行热交换,并提供使用该蓄热装置的空调机。 解决方案:设置成封闭压缩机并累积由压缩机产生的热量的蓄热装置由储存储存材料的蓄热箱32组成,蓄热材料积聚由压缩机产生的热量, 由储热箱32容纳的蓄热型热交换器34,其中储热式热交换器34的高度方向的重心位置设定为高于蓄热箱32的高度方向的中心位置。 版权所有(C)2011,JPO&INPIT
    • 28. 发明专利
    • Heat storage device and air conditioner including the same
    • 热存储装置和空调包括它们
    • JP2011144947A
    • 2011-07-28
    • JP2010003771
    • 2010-01-12
    • Panasonic Corpパナソニック株式会社
    • KAWAZOE DAISUKEYAMAMOTO KENSHOKAMOTA HIROKAZUTANIMOTO KAZUYA
    • F25B1/00F04B39/06F25B13/00
    • PROBLEM TO BE SOLVED: To provide a heat storage device capable of being easily mounted, suppressed in variation at manufacturing, and achieved in high adhesion.
      SOLUTION: In the heat storage device 2, at least a face kept into contact with a compressor of a cylindrical container 21 having a shape fitted to an outer peripheral surface of the compressor 1 is composed of a material 23 shrinkable by heat. When the compressor is operated in a state that the heat storage device is mounted to the compressor, the heat shrinkable material of the heat storage device receives heat radiation caused by a temperature rise of the compressor and shrinks, and the face kept into contact with the compressor of the heat storage device is closely kept into contact with the compressor to be tightly adhered. The heat storage device can be easily mounted to the compressor, the variation of the quality at manufacturing is small, and high adhesion can be obtained.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够容易地安装,在制造中的变化中被抑制并且实现高粘合性的蓄热装置。 解决方案:在蓄热装置2中,至少与保持与压缩机1的外周面配合的形状的圆筒形容器21的压缩机保持接触的面由热收缩的材料23构成。 当压缩机在将储热装置安装在压缩机上的状态下运转时,蓄热装置的热收缩材料接受由压缩机的温度升高引起的热辐射并且收缩,并且面部与 蓄热装置的压缩机紧密地与压缩机接触以紧密粘合。 蓄热装置可以容易地安装在压缩机上,制造质量的变化小,可以获得高粘合性。 版权所有(C)2011,JPO&INPIT