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    • 1. 发明授权
    • Method for controlling the power of a sorption refrigeration system and device therefor
    • 用于控制吸附制冷系统的功率的方法及其装置
    • US08539782B2
    • 2013-09-24
    • US12735159
    • 2008-11-19
    • Thomas BüttnerWalter Mittelbach
    • Thomas BüttnerWalter Mittelbach
    • F25B15/00F25B17/00B01D46/46
    • F25B17/083F25B49/046Y02A30/276Y02A30/278Y02B30/64
    • The invention relates to a method for controlling the power of a sorption refrigeration system, comprising an adsorber unit, a condenser (C), and an evaporator (E) through which a cooling carrier fluid (KT) flows, with alternating application of the adsorber unit by a valve unit (HV_IN, HV_OUT) operated via a controller, having a circuit process of at least one sorption phase and at least one heat recovery phase, wherein a measurement of a current cooling carrier outlet temperature (Takt) is carried out in the return of the evaporator, a calculation of an averaged cooling carrier outlet temperature (Tgem) is carried out during the first and second sorption phases with a comparison to the current cooling carrier outlet temperature (Takt), and a control signal is trigger upon completion of the sorption phase as a function of the difference between the averaged cooling carrier outlet temperature (Tgem) and the current cooling carrier outlet temperature (Tgem). The invention provides a corresponding device.
    • 本发明涉及一种用于控制吸附式制冷系统的功率的方法,包括吸附器单元,冷凝器(C)和蒸发器(E),冷却载体流体(KT)通过该蒸发器(E)流动,同时交替施加吸附器 通过经由控制器操作的阀单元(HV_IN,HV_OUT),具有至少一个吸附阶段和至少一个热回收阶段的电路过程,其中当前冷却载体出口温度(Takt)的测量在 蒸发器的返回,平均冷却载体出口温度(Tgem)的计算在第一和第二吸附阶段期间与当前的冷却载体出口温度(Takt)进行比较,并且控制信号在完成时触发 作为平均冷却载体出口温度(Tgem)和当前冷却载体出口温度(Tgem)之间的差异的函数的吸附相。 本发明提供了一种相应的装置。
    • 2. 发明授权
    • Compact sorption cooling unit
    • 紧凑型吸附冷却单元
    • US08578732B2
    • 2013-11-12
    • US12450103
    • 2008-01-15
    • Thomas BüttnerWalter Mittelbach
    • Thomas BüttnerWalter Mittelbach
    • F25B17/02
    • F25B17/083F25B35/04Y02A30/276Y02A30/278Y02B30/64
    • The invention relates to a compact sorption cooling unit, comprising at least one adsorber/desorber unit (1) having a heat exchanger and sorption material, at least one condenser heat exchanger (5), and at least one evaporator heat exchanger (6), wherein these building blocks are located in a common, vacuum-tight metal outer housing, and having connection and coupling elements and pipe ducts for the hydraulic interconnection and operation of the unit. The invention provides a sandwich structure, wherein the at least one adsorber/desorber unit (1) is located in an inner or partial inner housing. The condenser heat exchanger (5) and the evaporator heat exchanger (6) are disposed at a distance from each other, and the inner housing having the adsorber/desorber unit (1) is provided in the intermediate space thereof. The separating surfaces (2) of the inner housing directed toward the condenser heat exchanger (5) and toward the evaporator heat exchanger (6) receive steam valves (8, 9). Further, a heat insulating layer (7), or a heat insulating plate, is disposed in the region between the inner housing and the evaporator heat exchanger (6).
    • 本发明涉及紧凑型吸附冷却单元,其包括至少一个具有热交换器和吸附材料的吸附器/解吸器单元(1),至少一个冷凝器热交换器(5)和至少一个蒸发器热交换器(6) 其中这些结构块位于公共的真空密封的金属外壳中,并且具有用于液压互连和操作该单元的连接和联接元件和管道。 本发明提供一种夹层结构,其中至少一个吸附器/解吸器单元(1)位于内部或部分内部壳体中。 冷凝器热交换器(5)和蒸发器热交换器(6)彼此间隔一定距离设置,并且具有吸附器/解吸器单元(1)的内壳体设置在其中间空间中。 指向冷凝器热交换器(5)并朝向蒸发器热交换器(6)的内壳体的分离表面(2)接收蒸汽阀(8,9)。 此外,在内壳体和蒸发器热交换器(6)之间的区域中设置绝热层(7)或隔热板。
    • 3. 发明申请
    • METHOD FOR CONTROLLING THE POWER OF A SORPTION REFRIGERATION SYSTEM AND DEVICE THEREFOR
    • 控制制冷系统功率的方法及其装置
    • US20110005246A1
    • 2011-01-13
    • US12735159
    • 2008-11-19
    • Thomas BüttnerWalter Mittelbach
    • Thomas BüttnerWalter Mittelbach
    • F25B15/00
    • F25B17/083F25B49/046Y02A30/276Y02A30/278Y02B30/64
    • The invention relates to a method for controlling the power of a sorption refrigeration system, comprising an adsorber unit, a condenser (C), and an evaporator (E) through which a cooling carrier fluid (KT) flows, with alternating application of the adsorber unit by a valve unit (HV_IN, HV_OUT) operated via a controller, having a circuit process of at least one sorption phase and at least one heat recovery phase, wherein a measurement of a current cooling carrier outlet temperature (Takt) is carried out in the return of the evaporator, a calculation of an averaged cooling carrier outlet temperature (Tgem) is carried out during the first and second sorption phases with a comparison to the current cooling carrier outlet temperature (Takt), and a control signal is trigger upon completion of the sorption phase as a function of the difference between the averaged cooling carrier outlet temperature (Tgem) and the current cooling carrier outlet temperature (Tgem). The invention provides a corresponding device.
    • 本发明涉及一种用于控制吸附式制冷系统的功率的方法,包括吸附器单元,冷凝器(C)和蒸发器(E),冷却载体流体(KT)通过该蒸发器(E)流动,同时交替施加吸附器 通过经由控制器操作的阀单元(HV_IN,HV_OUT),具有至少一个吸附阶段和至少一个热回收阶段的电路过程,其中当前冷却载体出口温度(Takt)的测量在 蒸发器的返回,平均冷却载体出口温度(Tgem)的计算在第一和第二吸附阶段期间与当前的冷却载体出口温度(Takt)进行比较,并且控制信号在完成时触发 作为平均冷却载体出口温度(Tgem)和当前冷却载体出口温度(Tgem)之间的差异的函数的吸附相。 本发明提供了一种相应的装置。