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    • 5. 发明公开
    • REGENERATIVE AIR CONDITIONER
    • 再生空调
    • EP3222934A1
    • 2017-09-27
    • EP15872282.7
    • 2015-12-24
    • Daikin Industries, Ltd.
    • YASUO, KouichiFUJIMOTO, ShuujiCHEN, KebiNAKAO, Takuya
    • F25B13/00F24F5/00F24F11/02F25B1/00
    • F24F5/001F24F5/00F24F5/0017F24F11/89F25B13/00F25B41/04F25B49/022F25B2313/006F25B2313/009F25B2313/0232F25B2313/0233F25B2313/02731F25B2400/13F25B2400/24F25B2600/0253Y02B30/741
    • To avoid decline in the efficiency of a compressor at a low load, a thermal storage air conditioner has a refrigerant circuit (11) which has a compressor (22), an outdoor heat exchanger (23), and an indoor heat exchanger (72) and performs a refrigeration cycle, and a thermal storage section (60) which has a thermal storage medium and exchanges heat between the thermal storage medium and a refrigerant of the refrigerant circuit (11). The thermal storage air conditioner performs a simple cooling operation in which in the refrigerant circuit (11), the refrigerant is condensed in the outdoor heat exchanger (23) and evaporates in the indoor heat exchanger (72), and a cooling and cold thermal energy storage operation in which in the refrigerant circuit (11), the refrigerant is condensed in the outdoor heat exchanger (23) and evaporates in the indoor heat exchanger (72), and in which the thermal storage medium in the thermal storage section (60) is cooled by the refrigerant. The thermal storage air conditioner has an operation control section (100) which, if a rotational speed of the compressor (22) is slowed down to a predetermined lower reference value in the simple cooling operation, switches an operation of the thermal storage air conditioner from the simple cooling operation to the cooling and cold thermal energy storage operation to increase the rotational speed of the compressor (22).
    • 为了避免在低负荷下压缩机的效率降低,蓄热空调机具有具有压缩机22,室外热交换器23和室内热交换器72的制冷剂回路11, 并执行制冷循环;以及蓄热部(60),其具有蓄热介质并且在蓄热介质与制冷剂回路(11)的制冷剂之间进行热交换。 在蓄热空调机中,制冷剂回路(11)中,制冷剂在室外热交换器(23)中冷凝,在室内热交换器(72)中蒸发,进行简单的制冷运转,冷却和冷热能 在制冷剂回路11中,制冷剂在室外热交换器23中冷凝并在室内热交换器72中蒸发,并且储热部60中的储热介质被储存在储热器中, 被制冷剂冷却。 该蓄热空调装置具有运转控制部(100),该运转控制部(100)在简易的制冷运转中使压缩机(22)的转速减速至规定的下限基准值时,将蓄热空调机的运转切换为 对冷却和冷热能存储操作进行简单的冷却操作以增加压缩机(22)的转速。
    • 8. 发明公开
    • VORRICHTUNG UND VERFAHREN ZUM HEIZEN ODER KÜHLEN VON RÄUMEN
    • VORRICHTUNG UND VERFAHREN ZUM HEIZEN ODERKÜHLENVONRÄUMEN
    • EP3123079A1
    • 2017-02-01
    • EP15720777.0
    • 2015-03-20
    • Zehnder Group International AG
    • SCHUMANN, Thomas
    • F24D19/00F24F5/00
    • F24D19/0087F24D19/1012F24D2220/04F24F3/06F24F5/00F24F11/83F24H2240/09F28D2021/0035Y02B30/745
    • The invention relates to a device (1) for heating or cooling a living room, having a body (2) through which a heat carrier fluid, preferably water, can flow, which body has a feed line (3) for the admission of heat carrier fluid into the body and has a return line (4) for the discharge of heat carrier fluid out of the body (2). The device (1) has a pump (5), which is arranged in the feed line (3) or in the return line (4) and which serves for delivering heat carrier fluid through the body (2), and at least one fan (6), which is arranged adjacent to the body and serves for moving air relative to an outer surface of the body (2). The invention also relates to a method for heating or cooling a living room, in particular using the device (1).
    • 本发明涉及一种用于加热或冷却起居室的装置(1),其具有主体(2),热载体流体(优选水)可以流过该主体,该主体具有用于承受热量的馈送线(3) 载体流体进入体内并且具有用于将热载体流体排出体外(2)的返回管线(4)。 装置(1)具有泵(5),其布置在进料管线(3)或返回管线(4)中,用于将热载体流体输送通过主体(2),并且至少一个风扇 (6),其布置成邻近所述主体并且用于相对于所述主体(2)的外表面移动空气。 本发明还涉及一种特别是使用装置(1)加热或冷却客厅的方法。
    • 10. 发明公开
    • AIR CONDITIONING CONTROL DEVICE, AIR CONDITIONING CONTROL METHOD AND PROGRAM
    • KLIMAANLAGENSTEUERVORRICHTUNG,KLIMAANLAGENSTEUERVERFAHREN UND PROGRAMDAFÜR
    • EP2607804A1
    • 2013-06-26
    • EP11817946.4
    • 2011-01-27
    • Mitsubishi Electric Corporation
    • ISHIZAKA Taichi
    • F24F11/02
    • F24F5/00F24F3/065F24F11/30F24F11/46F24F11/62F24F11/64F24F11/65
    • An air-conditioning control device (4) controls a plurality of air-conditioners (indoor devices) disposed at different locations within a predetermined living room space. A data manager (40) stores location information (82) for each air-conditioner (indoor device). A distance calculator (51) calculates a distance between respective air-conditioners (indoor devices) based on the location information (82). A control order setter (52) sets, based on the distance between respective air-conditioners (indoor devices) calculated by the distance calculator (51), a control order of each air-conditioner (indoor device) on which energy-saving control is to be performed in such a way that time spans for performing the energy-saving control that controls respective air-conditioners (indoor devices) for a predetermined time to suppress power consumption in respective sections of the living room space are balanced. The control executer (53) repeatedly executes the energy-saving control on each air-conditioner (indoor device) in accordance with the control order set by the control order setter (52).
    • 空调控制装置(4)控制设置在预定的客厅空间内的不同位置的多个空调机(室内机)。 数据管理器(40)存储每个空调(室内装置)的位置信息(82)。 距离计算器(51)基于位置信息(82)计算各个空调机(室内机)之间的距离。 控制顺序设定器(52)基于由距离计算器(51)计算出的各个空调(室内机)之间的距离,设定节能控制的各空调机(室内机)的控制顺序 以这样一种方式执行,即平衡用于执行控制各个空调(室内装置)预定时间的节能控制的时间以抑制起居室空间的各个部分的功率消耗。 控制执行器53根据由控制顺序设定器(52)设定的控制顺序重复执行各空调机(室内机)的节能控制。