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    • 2. 发明专利
    • Cooling device and its calibration method
    • 冷却装置及其校准方法
    • JP2008215807A
    • 2008-09-18
    • JP2008052249
    • 2008-03-03
    • Stiebel Eltron Gmbh & Co Kgシユテイーベル・エルトロン・ゲゼルシヤフト・ミツト・ベシユレンクテル・ハフツング・ウント・コンパニー・コマンデイトゲゼルシヤフトStiebel Eltron GmbH & Co. KG
    • HERRS MARTIN
    • F25B1/00
    • F25B49/005F25B2700/195F25B2700/197F25B2700/21163F25B2700/21175
    • PROBLEM TO BE SOLVED: To provide a calibration method for a cooling (air-conditioning) device that can impede damage to a component of the cooling device by detecting error action included in a measured value or calculated value for control or adjustment, and making its correction, and to provide the corresponding cooling device. SOLUTION: The calibration method for the cooling device having a refrigerant, an evaporating device 31, a compression device 32, a liquefying device 33, a throttle device 13 and a control device 40 for controlling the throttle device, includes processes for switching a normal operation mode to a calibrating operation mode, starting a special operation state causing known physical dependence between (a plurality of) process values of a cooling cycle, detecting individual process values when the special operation state is started, generating a calibration value for indicating error action to a part of the cooling device based on the detected process value, generating at least one correction value based on the calibration value, and returning to the normal operation mode. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供一种用于通过检测包括在测量值中的误​​差动作或用于控制或调整的计算值来提供可以阻止冷却装置的部件损坏的冷却(空调)装置的校准方法, 并进行修正,并提供相应的冷却装置。 解决方案:用于具有制冷剂的冷却装置,蒸发装置31,压缩装置32,液化装置33,节流装置13和用于控制节流装置的控制装置40的校准方法包括用于切换 正常操作模式,以校准操作模式,启动特殊操作状态,导致在冷却循环的(多个)过程值之间的已知物理依赖性,当特殊操作状态开始时检测各个过程值,生成用于指示的校准值 基于检测到的过程值对冷却装置的一部分产生误差动作,基于校准值生成至少一个校正值,并返回到正常操作模式。 版权所有(C)2008,JPO&INPIT
    • 7. 发明专利
    • Regenerative heater
    • 再生加热器
    • JP2005249352A
    • 2005-09-15
    • JP2004063051
    • 2004-03-05
    • Stiebel Eltron Gmbh & Co Kgスティーベル・エルトロン・ゲゼルシャフト・ミツト・ベシュレンクテル・ハフツング・ウント・コンパニー・コマンデイトゲゼルシャフト
    • MATSUMOTO KIMIYUKI
    • F24H7/02F24D15/02
    • Y02B30/12
    • PROBLEM TO BE SOLVED: To provide a regenerative heater capable of lowering the temperature of the outer surface of a body in a stationary operation and suppressing the amount of radiation from the body of a heater without impairing basic performances. SOLUTION: This regenerative heater comprises a heat storing body stored in an insulator, an electric heater heating the heat storing body, a power supply supplying power to the electric heater, an exterior panel covering the outside of the body of the heater, and an insulator installed between the exterior panel and the heat storing body. The regenerative heater also comprises a space formed between the exterior panel and the insulator, an air inlet allowed to communicate with the space, and an air outlet allowed to communicate with the space. Air is sucked from the air inlet, the sucked air is circulated to the space, and the air circulated into the space is discharged from the air outlet to the outside to suppress a heat amount radiated from the exterior panel. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供一种能够在静止操作中降低身体的外表面的温度并且抑制来自加热器的体的辐射量而不损害基本性能的再生加热器。 解决方案:该再生加热器包括存储在绝缘体中的储热体,加热蓄热体的电加热器,向电加热器供电的电源,覆盖加热器主体外部的外板, 以及安装在外部面板和蓄热体之间的绝缘体。 再生加热器还包括形成在外部面板和绝缘体之间的空间,允许与空间连通的空气入口和允许与空间连通的空气出口。 空气从进气口吸入,吸入的空气循环到空间,并且循环到空间中的空气从空气出口排出到外部,以抑制从外部面板辐射的热量。 版权所有(C)2005,JPO&NCIPI
    • 8. 发明专利
    • Regenerative heater
    • 再生加热器
    • JP2005249351A
    • 2005-09-15
    • JP2004063050
    • 2004-03-05
    • Stiebel Eltron Gmbh & Co Kgスティーベル・エルトロン・ゲゼルシャフト・ミツト・ベシュレンクテル・ハフツング・ウント・コンパニー・コマンデイトゲゼルシャフト
    • MATSUMOTO KIMIYUKI
    • F24H7/02F24D15/02
    • Y02B30/12
    • PROBLEM TO BE SOLVED: To provide a regenerative heater capable of reducing a variation in heating capacity by maintaining constant a blowout temperature without relying on the temperature of a heat storing body. SOLUTION: This regenerative heater comprises the heat storing body 56, a heater 77, heat exchange flow passages 74a to 74d passed through the inside of the heat storing body, suction port 12 and a blowout port 11 communicating with the heat exchanger flow passages, a blowing mechanism 70, and a bypass flow passage communicating the suction port with the blowout port. The bypass flow passage comprises first dampers 35 and 36 having a first bypass flow passage 75a and a second bypass flow passage 75b vertically partitioned into two stages, driven by a bimetal 8, and opening/closing the first bypass flow passage and second dampers 33 and 34 linked in association with the first dampers and opening/closing the second bypass flow passage. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够不依赖于蓄热体的温度而通过保持喷出温度恒定而能够降低加热能力的变化的再生加热器。 解决方案:该再生加热器包括储热体56,加热器77,通过储热体内部的热交换流路74a〜74d,吸入口12和与热交换器流连通的吹出口11 通道,吹风机构70和将抽吸口与吹出口连通的旁通流路。 旁通流路包括第一阻尼器35和36,其具有由双金属片8驱动的垂直分隔成两级的第一旁通流路75a和第二旁通流路75b,并且打开/关闭第一旁通流路和第二阻尼器33和 34与第一阻尼器相关联并且打开/关闭第二旁通流动通道。 版权所有(C)2005,JPO&NCIPI