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    • 2. 发明公开
    • PROCEDE DE MISE EN TEMPERATURE ET DE MAINTIEN EN TEMPERATURE DE L'INTERIEUR D'UNE ENCEINTE THERMIQUEMENT ISOLEE SANS APPORT D'ENERGIE CONTINU- DISPOSITIF ASSOCIE
    • PROCEDE DE MISE EN TEMPERATURE ET DE MAINTIEN EN TEMPERATURE DE L'INTERIEUR D'UNE ENCEINTE THERMIQUEMENT ISOLEE SANS APPORT D'ENERGIE CONTINU-DISPOSITIF ASSOCIE
    • EP3201538A1
    • 2017-08-09
    • EP15781130.8
    • 2015-09-29
    • Coldway
    • RIGAUD, LaurentKINDBEITER, FrancisTADIOTTO, David
    • F25B17/08
    • F25B17/00F25B17/083F25B2315/005F25B2315/007F25B2400/01F25B2600/2515F25B2700/04
    • The present invention relates to a method for getting the interior volume of a thermally insulated space (5) up to temperature and maintaining it at temperature using two thermochemical systems (TCU1; TCU2). According to the invention, a suitable device is supplied and - steps are taken to ensure that all the fluid of each of said systems (TCU1; TCU2) is contained in the reservoir (1; 2) of each of said systems (TCU1; TCU2); - at least one of said systems (TCU; TCU2) is used to bring said space to a setpoint temperature, a) the reactor (15; 25) of one of said systems (TCU1; TCU2) is heated until fully regenerated, while the other system (TCU1; TCU2) keeps the temperature at said setpoint temperature; b) when the reactor (15; 25) is fully regenerated, said system comprising the reactor that has just been regenerated is used to maintain the temperature and the reactor (15; 25) of the other system (TCU1; TCU2) is heated - as long as said connection means are connected to said external energy source, the aforementioned steps a) and b) are repeated; - when said heating means (19; 29) are disconnected from said external energy source, each of said systems (TCU1; TCU2) is used in turn to keep the temperature of the space (5) at said setpoint temperature.
    • 本发明涉及一种使用两个热化学系统(TCU1; TCU2)使绝热空间(5)的内部容积达到温度并将其保持在温度的方法。 根据本发明,提供合适的装置并采取步骤以确保每个所述系统(TCU1; TCU2)的所有流体都容纳在每个所述系统(TCU1; TCU2)的储存器(1; 2) ); - 至少一个所述系统(TCU; TCU2)用于使所述空间达到设定点温度,a)所述系统(TCU1; TCU2)中的一个的反应器(15; 25)被加热直到完全再生,而 其他系统(TCU1; TCU2)将温度保持在所述设定点温度; b)当反应器(15; 25)完全再生时,所述包含刚刚再生的反应器的系统用于维持温度,并且另一个系统(TCU1; TCU2)的反应器(15; 25) 只要所述连接装置连接到所述外部能量源,重复上述步骤a)和b); - 当所述加热装置(19; 29)与所述外部能量源断开时,依次使用每个所述系统(TCU1; TCU2)以将所述空间(5)的温度保持在所述设定点温度。
    • 9. 发明公开
    • KLIMASYSTEM FÜR EIN GEBÄUDE
    • KLIMASYSTEMFÜREINGEBÄUDE
    • EP2352956A2
    • 2011-08-10
    • EP09737429.2
    • 2009-10-21
    • Behr GmbH & Co. KG
    • BURK, Roland
    • F25B17/08
    • F25B17/083F25B2315/007Y02A30/272Y02A30/278Y02B10/20Y02B10/24Y02B30/64
    • The invention relates to an air conditioning system for a building, comprising a heat sink (3), a heat source (1) and a heat pump (2), the heat pump (2) having a plurality of hollow elements especially comprising an adsorption agent. A heat-transporting fluid for heat exchange with the heat source (1) and/or the heat sink (3) can be distributed in a variable manner between a plurality of flow paths associated with the hollow elements, by means of a rotary valve (2a, 2b, 100), whereby the hollow elements are brought into thermal contact with the fluid at a variable temperature. Air in the building can be conditioned by means of the hollow elements by a temperature difference between the heat source (1) and the heat sink (3). The heat pump is designed as a decentrally arranged structural unit spatially separated from at least either the heat source (1) or heat sink (3).
    • 用于建筑物的空调系统技术领域本发明涉及一种用于建筑物的空调系统,其包括散热器(3),热源(1)和热泵(2),热泵(2)具有多个中空元件, 剂。 用于与热源(1)和/或散热器(3)进行热交换的传热流体可以借助于旋转阀(例如,旋转阀)以可变方式分配在与中空元件相关联的多个流动路径之间 2a,2b,100),由此中空元件在可变温度下与流体热接触。 建筑物内的空气可通过热源(1)和散热器(3)之间的温差通过空心元件进行调节。 热泵设计为与至少热源(1)或散热器(3)空间分离的分散布置的结构单元。