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    • 1. 发明申请
    • CONTROL OF A SYSTEM WITH A LARGE THERMAL CAPACITY
    • 控制一个具有较大热容量的系统
    • WO2007090405A3
    • 2007-10-18
    • PCT/DK2007000064
    • 2007-02-08
    • DANFOSS ASLARSEN LARS FINN SLOTHTHYBO HONGLIANTHYBO CLAUS
    • LARSEN LARS FINN SLOTHTHYBO HONGLIANTHYBO CLAUS
    • F24D3/12F24D19/10
    • F24D19/1009F24D3/12G05D23/1919
    • The invention provides a method and a system for controlling floor heating or climate regulating systems with long time constants. According to the invention, a flow of a fluid is provided through the floor or through a similar medium with large thermal inertia. An induced heat is determined by adding up a plurality of differences between an inlet temperature of the fluid when it enters the medium and an outlet temperature of the fluid when it leaves the medium. The temperatures are sampled with a fixed sampling time and within a fixed period of time, and a corresponding change in temperature of the medium over the fixed period of time is determined. In the future, the temperature of that medium is controlled by use of a ratio between the induced heat and the change in temperature.
    • 本发明提供了一种用于控制具有长时间常数的地板加热或气候调节系统的方法和系统。 根据本发明,通过地板或通过具有大的热惯性的类似介质提供流体流。 通过在流体进入介质时流体的入口温度与流体离开介质时的流体出口温度之间的多个差值相加来确定诱导热量。 在固定的采样时间内和在固定的时间段内对温度进行采样,并且确定介质在固定的时间段内的相应的温度变化。 将来,通过使用感应热与温度变化之间的比率来控制该介质的温度。
    • 2. 发明申请
    • A HEAT EXCHANGER WITH A SUCTION LINE HEAT EXCHANGER
    • 带有换热器换热器的换热器
    • WO2011023192A3
    • 2011-09-22
    • PCT/DK2010000101
    • 2010-06-30
    • DANFOSS ASTHYBO CLAUSLARSEN LARS FINN SLOTHMADER GUNDA
    • THYBO CLAUSLARSEN LARS FINN SLOTHMADER GUNDA
    • F28F9/02F25B39/02F25B39/04F25B40/00
    • F28F9/0234F25B40/00F25B2400/054F28F2260/02
    • A heat exchanger, such as an evaporator (1) or a condenser (17), for a vapour compression system (15) and a vapour compression system (15) with such a heat exchanger are disclosed. The heat exchanger comprises at least two flow tubes arranged fluidly in parallel, an inlet manifold (3) and an outlet manifold (7). Each flow tube fluidly connects the inlet manifold (3) and the outlet manifold (7), and fluid medium is distributed among the flow tubes by the inlet manifold (3). The outlet manifold (7) is provided with a suction line heat exchanger, preferably being fluidly connected in a refrigerant path of the vapour compression system (15) between a condenser (17) and an expansion device (18), in the case that the heat exchanger is an evaporator (1). The suction line heat exchanger is arranged in the outlet manifold (7) in such a manner that direct thermal contact is provided between the refrigerant delivered from the flow tubes and the suction line heat exchanger, the refrigerant, e.g., being sprayed directly onto the suction line heat exchanger. Refrigerant leaving the evaporator (1) is heated, thereby causing evaporation of possible liquid refrigerant. Thereby liquid refrigerant can be allowed to pass through some of the evaporator tubes (2) without risking damage to the compressor (16). Utilisation of the potential refrigeration capacity of the evaporator (1) is improved. Arranging the suction line heat exchanger in the outlet manifold (7) provides a compact design and eliminates the requirement for additional components.
    • 公开了一种用于蒸汽压缩系统(15)的蒸发器(1)或冷凝器(17)和具有这种热交换器的蒸汽压缩系统(15)的热交换器。 热交换器包括至少两个平行流体布置的流管,入口歧管(3)和出口歧管(7)。 每个流管流体地连接入口歧管(3)和出口歧管(7),并且流体介质通过入口歧管(3)分布在流管中。 出口歧管(7)设置有吸入管线热交换器,优选在冷凝器(17)和膨胀装置(18)之间的蒸气压缩系统(15)的制冷剂路径中流体连接,在这种情况下, 热交换器是蒸发器(1)。 吸入管路热交换器以这样的方式设置在出口歧管(7)中,使得在从流动管输送的制冷剂和吸入管线热交换器之间提供直接热接触,制冷剂例如直接喷射到吸力 线路换热器。 离开蒸发器(1)的制冷剂被加热,从而引起可能的液体制冷剂的蒸发。 因此,可以允许液体制冷剂通过一些蒸发器管(2),而不会对压缩机(16)造成危害。 提高了蒸发器(1)的潜在制冷量的利用率。 将排气歧管(7)中的吸入管路热交换器布置成紧凑的设计,并消除了对附加部件的要求。
    • 3. 发明申请
    • A METHOD FOR CONTROLLING A FLOW OF REFRIGERANT TO A MULTI- TUBE EVAPORATOR
    • 一种用于控制制冷剂流向多管蒸发器的方法
    • WO2011003416A2
    • 2011-01-13
    • PCT/DK2010000102
    • 2010-07-01
    • DANFOSS ASTHYBO CLAUSLARSEN LARS FINN SLOTHMADER GUNDA
    • THYBO CLAUSLARSEN LARS FINN SLOTHMADER GUNDA
    • F25B39/02
    • F25B41/062F25B39/028F25B2341/0652F28D1/05366F28F9/0282F28F27/02Y02B30/72
    • A method for controlling a flow of refrigerant to an evaporator arranged in a vapour compression system is disclosed. The vapour compression system comprises the evaporator, a compressor, a condenser, and an expansion device arranged in a refrigerant flow path. The evaporator comprises at least two evaporator tubes arranged fluidly in parallel, and a header being fluidIy connected between the expansion device and the evaporator tubes. The method comprises the steps of alternatingly allowing and preventing a flow of mixed phase refrigerant into the header. The step of allowing a flow of mixed phase refrigerant into the header is performed in such a manner that a pressure level in the header is increased significantly and abruptly. Thereby the liquid part and the gaseous part of the mixed phase refrigerant are distributed substantially homogeneously in the header. Thereby the liquid part of the refrigerant is distributed in a substantially uniform manner among the evaporator tubes, and the same filling degree is obtained in the tubes. The potential refrigeration capacity of the evaporator can be utilised to a greater extent without risking that liquid refrigerant passes the evaporator.
    • 公开了一种用于控制制冷剂流入蒸气压缩系统中的蒸发器的方法。 蒸汽压缩系统包括布置在制冷剂流动路径中的蒸发器,压缩机,冷凝器和膨胀装置。 蒸发器包括至少两个平行流体排列的蒸发器管,并且流体连接在膨胀装置和蒸发器管之间的集管。 该方法包括交替地允许和防止混合相制冷剂流入集管中的步骤。 以使得集流管中的压力水平显着和突然增加的方式进行允许混合相制冷剂流入集管的步骤。 因此,混合相制冷剂的液体部分和气体部分基本均匀地分布在集管中。 因此,制冷剂的液体部分在蒸发器管中以大致均匀的方式分布,并且在管中获得相同的填充度。 可以更大程度地利用蒸发器的潜在制冷能力,而不会使液体制冷剂通过蒸发器。
    • 4. 发明申请
    • A METHOD OF CONTROLLING OPERATION OF A VAPOUR COMPRESSION SYSTEM
    • 控制蒸汽压缩系统运行的方法
    • WO2010118745A2
    • 2010-10-21
    • PCT/DK2010000041
    • 2010-03-30
    • DANFOSS ASMADER GUNDATHYBO CLAUSLARSEN LARS FINN SLOTH
    • MADER GUNDATHYBO CLAUSLARSEN LARS FINN SLOTH
    • F25B49/02
    • F25B49/027F25B49/005F25B2600/19F25B2600/21F25B2700/04
    • A method for controlling operation of a vapour compression system (1) is disclosed. The vapour compression system (1) comprises a compressor (2), a condenser (3), an expansion device (4) and an evaporator (5) arranged in a refrigerant path. The method comprises the steps of obtaining values of an entity being indicative of a current distribution of liquid refrigerant of the vapour compression system (1) and comparing the obtained values to a predefined threshold value. In the case that the obtained values are below said threshold value, control parameter values being indicative of the amount of liquid refrigerant present in the condenser (3) are obtained, and operation of the vapour compression system (1) is controlled in accordance with the obtained control parameter values and in such a manner that the amount of liquid refrigerant in the condenser (3) is maintained at a substantially constant level. This prevents flash gas at the inlet of the expansion device of the vapour compression system (1).
    • 公开了一种用于控制蒸气压缩系统(1)的操作的方法。 蒸气压缩系统(1)包括布置在制冷剂路径中的压缩机(2),冷凝器(3),膨胀装置(4)和蒸发器(5)。 该方法包括以下步骤:获得指示蒸汽压缩系统(1)的液体制冷剂的当前分布的实体的值,并将获得的值与预定义的阈值进行比较。 在获得的值低于所述阈值的情况下,获得表示冷凝器(3)中存在的液体制冷剂的量的控制参数值,并且根据所述蒸气压缩系统(1)的操作来控制 获得的控制参数值,并且使得冷凝器(3)中的液体制冷剂的量保持在基本上恒定的水平。 这防止蒸汽压缩系统(1)的膨胀装置的入口处的闪蒸气体。