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    • 1. 发明申请
    • A PLANT FOR PRODUCING WATER FROM ATMOSPHERIC AIR
    • 一个从大气生产水的工厂
    • WO2016185238A1
    • 2016-11-24
    • PCT/IB2015/000711
    • 2015-05-15
    • SEAS SOCIÉTÉ DE L'EAU AERIENNE SUISSE SA
    • BRAVO, RinaldoDAL CANTO, Luca
    • C02F1/04F25B5/02E03B3/28
    • F25B5/02B01D5/0039E03B3/28Y02A20/109
    • The present description illustrates a plant (10) for obtaining water from atmospheric air, comprising: a heat exchanger (24), means (239) for generating an atmospheric air flow from an inlet (241) towards an outlet (242) of the heat exchanger (24), and a refrigerating unit (30), wherein the refrigerating unit (30) comprises at least: a compressor (310) able to compress a refrigerating fluid in a gaseous state, a condenser (312) able to condense the refrigerating fluid coming from the compressor, an expansion valve (319) able to lower the pressure of the refrigerating fluid coming from the condenser (312), a first evaporator (244) able to cause evaporation of the refrigerating fluid coming from the expansion valve (319) so as to cool the atmospheric air flow internally of the heat exchanger (24), and a second evaporator (315) able to cause evaporation of the refrigerating fluid coming from the condenser (310) for cooling a secondary vector fluid, separate and distinct from the flow of atmospheric air which crosses the heat exchanger (24), wherein the second evaporator (315) is hydraulically connected to the condenser (312) and with the compressor (310) so as to be hydraulically connected in parallel with the first evaporator (244).
    • 本说明书示出了用于从大气中获得水的设备(10),其包括:热交换器(24),用于从入口(241)朝向热量出口(242)产生大气空气流的装置(239) 交换器(24)和制冷单元(30),其中制冷单元(30)至少包括:能够压缩处于气态的制冷流体的压缩机(310),能够冷凝冷凝器 来自压缩机的流体,能够降低来自冷凝器(312)的冷冻流体的压力的膨胀阀(319),能够使来自膨胀阀(319)的冷冻流体蒸发的第一蒸发器(244) )以便冷却热交换器(24)内部的大气空气流;以及第二蒸发器(315),其能够使来自冷凝器(310)的冷冻流体的蒸发用于冷却次级矢量流体,分离且不同 从流的一个 穿过热交换器(24)的大气空气,其中第二蒸发器(315)液压地连接到冷凝器(312)和压缩机(310),以便与第一蒸发器(244)并联地液压连接。
    • 2. 发明申请
    • WATER PRODUCTION APPARATUS
    • 水生产设备
    • WO2016185237A1
    • 2016-11-24
    • PCT/IB2015/000710
    • 2015-05-15
    • SEAS SOCIÉTÉ DE L'EAU AERIENNE SUISSE SA
    • BRAVO, RinaldoDAL CANTO, Luca
    • B01D5/00E03B3/28F24F3/14
    • B01D5/0039E03B3/28F24F3/1405Y02A20/109
    • An apparatus (10) for production of water from atmospheric air comprises a condensation unit (20) comprising: and inlet opening (21) of the moist air, an outlet opening (22) of the dehumidified air, at least a ventilator (23) configured so as to force an air flow to enter through the inlet opening (21) and exit from the outlet opening (22), a heat exchange plate (24), interposed between the inlet opening (21) and the outlet opening (22) so as to intercept the air flow and able to be crossed by the air flow, and a pair of heat exchangers (25,26), able to be crossed in series by the air flow, of which a first heat exchanger (25) and a second heat exchanger (26), respectively located upstream and downstream of the heat exchange plate (24) in the crossing direction thereof by the air flow, the pair of heat exchangers (25,26) being connected by means of a hydraulic circuit (255) comprising a recycling pump (256) of a heat exchange liquid contained in the hydraulic circuit (255).
    • 一种用于从大气中产生水的设备(10)包括冷凝单元(20),包括:和所述潮湿空气的入口开口(21),所述除湿空气的出口(22),至少一个通风机(23) 被配置为迫使空气流通过入口开口(21)进入并从出口开口(22)排出;插入入口(21)和出口(22)之间的热交换板(24) 以拦截空气流并能够被空气流交叉;以及一对热交换器(25,26),能够通过空气流串联交叉,第一热交换器(25)和 第二热交换器(26),其分别位于热交换板(24)的上游和下游,在空气流的交叉方向上,所述一对热交换器(25,26)通过液压回路( 255)包括包含在液压回路(255)中的热交换液体的再循环泵(256)。
    • 3. 发明申请
    • A METHOD AND A SYSTEM FOR CONTROLLING A PLANT FOR PRODUCING WATER FROM ATMOSPHERIC AIR
    • 一种用于控制从大气中生产水的设备的方法和系统
    • WO2016185240A1
    • 2016-11-24
    • PCT/IB2015/000713
    • 2015-05-15
    • SEAS SOCIÉTÉ DE L'EAU AERIENNE SUISSE SA
    • BRAVO, RinaldoDAL CANTO, Luca
    • E03B3/28
    • E03B3/28Y02A20/109
    • The present description illustrates a method and a system for controlling functioning of a plant (10) for producing water from atmospheric air, wherein the plant comprises: a heat exchanger (24), means (23) for generating an atmospheric air flow from an inlet (241 ) towards an outlet (242) of the heat exchanger (24), and a refrigerating unit (30) provided with an evaporator (244) in which a refrigerating fluid evaporates for cooling the atmospheric air flow internally of the heat exchanger (24); and wherein the method includes steps of: monitoring a characteristic temperature of the air flow at the inlet (241) of the heat exchanger (24), regulating the air flow in the heat exchanger (24) as a function of the characteristic temperature.
    • 本说明书示出了用于控制用于从大气中产生水的设备(10)的功能的方法和系统,其中所述设备包括:热交换器(24),用于从入口产生大气空气流的装置(23) (241)朝向所述热交换器(24)的出口(242),以及冷冻单元(30),其设置有蒸发器(244),在所述制冷单元中冷藏液体被蒸发以冷却所述热交换器(24)内部的大气气流 ); 并且其中所述方法包括以下步骤:监测所述热交换器(24)入口(241)处的空气流的特征温度,根据所述特征温度来调节所述热交换器(24)中的空气流。
    • 5. 发明申请
    • A MODULAR APPARATUS FOR WATER PRODUCTION
    • 水生产的模块化设备
    • WO2016185236A1
    • 2016-11-24
    • PCT/IB2015/000709
    • 2015-05-15
    • SEAS SOCIÉTÉ DE L'EAU AERIENNE SUISSE SA
    • BRAVO, RinaldoDAL CANTO, Luca
    • E03B3/28B01D5/00
    • E03B3/28B01D5/0039Y02A20/109
    • A modular apparatus (10) for water production from atmospheric air comprises: a first parallelepiped module (200) provided with an inlet opening (21) for moist air, an outlet opening (22) of the dehumidified air, a ventilator (23), configured such as to force an air flow to cross an internal volume of the first module (200) from the inlet opening (21) to the outlet opening (22), a condensation unit (20), located internally of the first module (200) so as to intercept the air flow, and a collecting tub (291, 292, 293) located inferiorly of the condensation unit (20) for collecting the condensation water that is separating from the air flow; and a second parallelepiped module (300) in which a refrigerating unit (30) is contained provided with at least a portion of a refrigerating circuit (31) in which a refrigerating fluid circulates and an evaporator in which the refrigerating liquid evaporates so as to cool the air flow internally of the condensation unit (20); where the first module (200) and the second module (300) are fixed to one another at a respective interconnecting fact and where the second module (300) exhibits a side of the interconnecting face having a width (W) equal to twice a width (W/2) of a side of the interconnecting face of the first module (200).
    • 用于从大气中产生水的模块化装置(10)包括:第一平行六面体模块(200),其设置有用于湿空气的入口开口(21),除湿空气的出口(22),通风机(23) 被配置为迫使空气流从所述入口开口(21)到所述出口(22)与所述第一模块(200)的内部空间交叉;冷凝单元(20),位于所述第一模块(200)内部 )以拦截空气流;以及收集桶(291,292,293),其位于所述冷凝单元(20)的下方,用于收集与所述空气流分离的冷凝水; 以及第二平行六面体模块(300),其中容纳冷冻单元(30),所述第二平行六面体模块(300)设置有冷却液循环的制冷回路(31)的至少一部分和冷藏液体蒸发以冷却的蒸发器 冷凝单元(20)内部的气流; 其中第一模块(200)和第二模块(300)在相应的互连事实下彼此固定,并且其中第二模块(300)呈现互连面的一侧,宽度(W)等于宽度的两倍 (200)的互连面的一侧的宽度(W / 2)。