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    • 93. 发明申请
    • COMPACT ULTRAVIOLET LIGHT ADSORPTION SENSING SYSTEM
    • 紧凑的紫外线吸收传感系统
    • WO2018072201A1
    • 2018-04-26
    • PCT/CN2016/102871
    • 2016-10-21
    • HONEYWELL INTERNATIONAL INC.REN, BoLV, YubinWANG, JunfengWANG, Li
    • REN, BoLV, YubinWANG, JunfengWANG, Li
    • G01N21/33
    • An ultraviolet (UV) light absorption sensing system (100) includes a UV light source (110) configured to provide a UV sample beam (115) of light toward a still or flowing fluid sample (117) along a central axis (118) of a test cell (120), wherein the central axis (118) is substantially orthogonal to a direction of fluid flow. A reference light source (130) is configured to provide a reference beam (133) along the central axis (118) of the test cell (120). A first detector (140) is positioned to detect a first portion (128) of the UV sample beam (115) and a first portion (138) of the reference beam (133) that traverse the test cell (120). A second detector (142) is positioned to detect a second portion (146) of the UV sample beam (115) and a second portion (148) of the reference beam (133) directly from the UV light source (110) and reference light source (130).
    • 紫外(UV)光吸收感测系统(100)包括UV光源(110),UV光源配置成向静止或流动的流体样本(117)提供UV样本光束(115) 沿着测试单元(120)的中心轴线(118)移动,其中中心轴线(118)基本上与流体流动的方向正交。 参考光源(130)被配置为提供沿着测试单元(120)的中心轴(118)的参考光束(133)。 定位第一检测器(140)以检测UV样本光束(115)的第一部分(128)和穿过测试单元(120)的参考光束(133)的第一部分(138)。 第二检测器(142)被定位成直接从UV光源(110)和参考光(110)检测UV样本光束(115)的第二部分(146)和参考光束(133)的第二部分(148) 来源(130)。
    • 96. 发明申请
    • WATER PURIFICATION SYSTEM
    • 水净化系统
    • WO2017206135A1
    • 2017-12-07
    • PCT/CN2016/084474
    • 2016-06-02
    • HONEYWELL INTERNATIONAL INC.LIU, AnnaZHOU, ShunWANG, Li
    • LIU, AnnaZHOU, ShunWANG, Li
    • C02F1/44B01D36/02
    • A water purification system (100) including an inlet (110) configured to accept a flow of water (105) is provided. The system (100) includes a KDF filtration stage (120) fluidly connected to the inlet (110) and including a metal alloy including elemental copper and elemental zinc. The system (100) includes a reverse osmosis stage (140) fluidly connected to the KDF stage (120). The system (100) also includes an outlet (150) fluidly connected to the reverse osmosis stage (140) and configured to output a flow of purified water (155). The reverse osmosis stage (140) is downstream of the KDF stage (120). A method of purifying water is also provided.
    • 提供了一种水净化系统(100),其包括构造成接收水流(105)的入口(110)。 系统(100)包括流体连接到入口(110)并且包括包含元素铜和元素锌的金属合金的KDF过滤台(120)。 系统(100)包括流体地连接到KDF台(120)的反渗透级(140)。 系统(100)还包括流体连接到反渗透级(140)并构造成输出净化水流(155)的出口(150)。 反渗透级(140)在KDF级(120)的下游。 还提供了净化水的方法。
    • 97. 发明申请
    • HEAT EXCHANGE DEVICE SUITABLE FOR LOW PRESSURE REFRIGERANT
    • 适用于低压制冷剂的换热装置
    • WO2017151626A1
    • 2017-09-08
    • PCT/US2017/019965
    • 2017-02-28
    • JOHNSON CONTROLS TECHNOLOGY COMPANYSU, XiupingWANG, Li
    • SU, XiupingWANG, Li
    • F28D7/16
    • Embodiments of the present disclosure are directed to a heat exchange device (200) that includes a condenser (201) configured to receive a refrigerant, an evaporator (203) having an evaporation tube bundle (215,216), a throttling device (208) configured to receive a first portion of the refrigerant from the condenser and to expand the first portion of the refrigerant before directing the first portion to the evaporator, and an ejector (202) having a high pressure conduit (211), a low pressure conduit (219), and an outlet conduit (217), the ejector is configured to receive the first portion from the throttling device or a second portion of the refrigerant from the condenser via the high pressure conduit, receive a third portion of the refrigerant from the evaporator via the low pressure conduit, mix the first portion or the second portion with the third portion to form a mixed refrigerant, and direct the mixed refrigerant to the evaporator via the outlet conduit.
    • 本公开的实施例涉及一种热交换设备(200),该热交换设备(200)包括被配置为接收制冷剂的冷凝器(201),具有蒸发管束(215,216)的蒸发器(203), 节流装置(208),配置成接收来自冷凝器的制冷剂的第一部分并且在将第一部分导向蒸发器之前使制冷剂的第一部分膨胀;以及具有高压导管(211)的喷射器(202) ,低压导管(219)和出口导管(217),喷射器构造成接收来自节流装置的第一部分或来自冷凝器的第二部分制冷剂经由高压导管,接收第三部分 来自蒸发器的制冷剂通过低压管道,将第一部分或第二部分与第三部分混合以形成混合制冷剂,并且将混合制冷剂经由出口管道引导至蒸发器。