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    • 4. 发明授权
    • Cooling system control apparatus
    • 冷却系统控制装置
    • US09535432B2
    • 2017-01-03
    • US14007249
    • 2011-12-15
    • Osamu Kanbara
    • Osamu Kanbara
    • G05D23/19F25D29/00A47F3/04
    • G05D23/19A47F3/0478F25B2500/19F25D29/00F25D2500/04F25D2700/12F25D2700/14
    • A control apparatus is configured for adjusting a control value for a refrigerating machine of a cooling system and performing control of the cooling system in conformity with an environmental condition. A controller has a data base having environmental condition cells in which control values for the refrigerating machine are respectively registered in association with respective environmental conditions. The control apparatus outputs a control value suitable for the present cooling state to the refrigerating machine, registers the control value in an environmental condition cell conformed with the present environmental condition and changes the control value to construct the data base when the environmental condition varies, the controller refers to an environmental condition cell conformed with the environmental condition, corrects a control value registered at the environmental condition cell in accordance with a tendency that the control value has been changed, and outputs the corrected control value to the refrigerating machine.
    • 控制装置被配置为调节冷却系统的冷冻机的控制值,并根据环境条件进行冷却系统的控制。 控制器具有具有环境条件单元的数据库,其中分别根据各个环境条件登记制冷机的控制值。 控制装置向制冷机输出适合于当前冷却状态的控制值,将控制值登记在与本环境条件相一致的环境条件单元中,并且在环境条件变化时改变控制值以构成数据库, 控制器是指符合环境条件的环境条件单元,根据控制值变化的趋势,校正在环境条件单元上登记的控制值,并将校正后的控制值输出给制冷机。
    • 6. 发明申请
    • Method and Apparatus for the Pre-Conditioning of Latent Heat Storage Elements
    • 潜热储存元件预处理方法和装置
    • US20150300752A1
    • 2015-10-22
    • US14442981
    • 2013-12-09
    • VA-Q-TEC AG
    • Joachim KuhnFabian EschenbachMartin Heinemann
    • F28D20/02
    • F28D20/02F25D3/00F25D3/02F25D29/003F25D2303/082F25D2400/02F25D2500/04F25D2600/04F28D20/028Y02E60/145
    • A process is for the pre-conditioning of one or more latent heat storage elements in the case of which the temperature or the narrow temperature range of the phase transition defines a target temperature and the latent heat storage elements are heated up to the target temperature. The latent heat, storage elements are cooled to an initial temperature below the target temperature and this initial temperature is determined. The latent heat storage elements at the initial temperature are introduced into a thermally insulated container and the container is then closed. The interior of the closed container is, or has been, connected to a heating device of which the thermal output which takes effect in the interior of the closed container is known. The initial temperature of the latent heat storage elements, the thermal capacity of the latent heat storage elements located in the container and also the target temperature of the latent heat storage elements are used to calculate the quantity of heat which has to be fed to the interior of the container in order for the latent heat storage elements to reach the target temperature (desired quantity of heat). The heating device is switched on and is operated continuously, or at intervals, until the desired quantity of heat has been fed to the interior of the dosed container.
    • 在一个或多个潜热储存元件的预调节过程中,相变的温度或者较窄的温度范围限定了目标温度并将潜热储存元件加热到目标温度。 将潜热存储元件冷却到低于目标温度的初始温度,并确定该初始温度。 将初始温度下的潜热储存元件引入绝热容器中,然后关闭容器。 密封容器的内部已经或已经连接到加热装置,其中在密闭容器的内部生效的热输出是已知的。 蓄热元件的初始温度,位于容器中的潜热蓄热元件的热​​容量以及潜热蓄热元件的目标温度用于计算必须供给到内部的热量 以使潜热储存元件达到目标温度(所需的热量)。 加热装置被打开并连续地或间歇地操作,直到所需的热量已经被送入给药容器的内部。