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    • 1. 发明申请
    • MOISTURE SENSING SYSTEM FOR HEATING, VENTILATION AND AIR CONDITIONING SYSTEMS
    • 用于加热,通风和空调系统的湿度传感系统
    • WO2017083613A1
    • 2017-05-18
    • PCT/US2016/061480
    • 2016-11-11
    • CARRIER CORPORATION
    • MA, Zidu
    • F24F11/00F25B41/00G01N21/81
    • G01N21/81F24F11/30F24F11/32F24F11/52F24F2110/00G01N21/85
    • A moisture sensing system for a refrigerant flow of a heating, ventilation and air conditioning (HVAC) system includes a moisture sensor including a color change material sample located in a refrigerant flow of the HVAC system. The color change material sample configured to change color as an indication of a moisture level of the refrigerant flow. A color sensor is in optical communication with the moisture sensor and is configured to sense a color of the color change material and communicate the sensed color to an HVAC system controller. A method of operating an HVAC system includes exposing a condensing a color change material sample to a flow of refrigerant and sensing a color of the color change material via a color sensor. The color is indicative of a moisture level of the flow of refrigerant. The sensed color is communicated to an HVAC system controller.
    • 用于加热,通风和空气调节(HVAC)系统的制冷剂流动的湿度感测系统包括湿度传感器,该湿度传感器包括位于HVAC系统的制冷剂流中的颜色变化材料样品。 变色材料样品被配置为改变颜色作为制冷剂流量的湿度水平的指示。 颜色传感器与湿度传感器进行光学通信,并被配置为感测颜色改变材料的颜色并将感测到的颜色传送到HVAC系统控制器。 操作HVAC系统的方法包括将冷凝的颜色变化材料样本暴露于冷冻剂流并且经由颜色传感器感测颜色变化材料的颜色。 颜色表示制冷剂流动的湿度水平。 感测到的颜色被传送到HVAC系统控制器。
    • 3. 发明申请
    • PURGE SYSTEM FOR CHILLER SYSTEM
    • 冷却系统的清洗系统
    • WO2017184663A1
    • 2017-10-26
    • PCT/US2017/028235
    • 2017-04-19
    • CARRIER CORPORATION
    • MA, ZiduRYDKIN, IvanCLOUGH, Warren
    • F25B43/04F25B45/00
    • A purge system for removing non-condensables from a chiller system includes a purge chamber, a plurality of carbon beds fluidly connected to the purge chamber into which a flow of refrigerant and non-condensables is selectably directed from the purge chamber to remove the non-condensables therefrom. A vent line is fluidly connected to the plurality of carbon beds to dispose of the collected non-condensables, and a heater is operably connected to the plurality of carbon beds to selectably heat one or more of the carbon beds of the plurality of carbon beds to release refrigerant therefrom and direct the released refrigerant to the purge chamber.
    • 用于从冷却器系统去除不可冷凝物的吹扫系统包括吹扫室,流体连接到吹扫室的多个碳床,制冷剂和不可冷凝物流从其中选择性地从其中导出 净化室从其去除不可冷凝物。 排气管线流体连接到多个碳床以处置收集的不可冷凝物,并且加热器可操作地连接到多个碳床以选择性地将多个碳床中的一个或多个碳床加热到 释放制冷剂并将释放的制冷剂导入净化室。
    • 6. 发明申请
    • COMBINED VAPOR ABSORPTION AND MECHANICAL COMPRESSION CYCLE DESIGN
    • 组合蒸汽吸收和机械压缩循环设计
    • WO2014168785A1
    • 2014-10-16
    • PCT/US2014/032501
    • 2014-04-01
    • CARRIER CORPORATION
    • MA, Zidu
    • F25B25/02
    • F25B25/02
    • A refrigeration system is provided including a vapor compression cycle (20) having a condenser (22), and expansion valve (24), and evaporator (26) and a compressor (28). A refrigerant is configured to circulate through the vapor compression cycle. The refrigeration system also includes an absorption refrigeration cycle (30) having an absorber (32) and a desorbed (34) arranged in a generally closed loop configuration. An absorption solution is configured to circulate through the absorption refrigeration cycle. The vapor compression cycle and the absorption refrigeration cycle are substantially integrated. The absorber is fluidly coupled to the compressor and is configured to generate a mixture of refrigerant and absorption solution. The desorber is fluidly coupled to the condenser and is configured to separate the refrigerant from the mixture and increase a pressure of the refrigerant vapor.
    • 提供一种制冷系统,其包括具有冷凝器(22)和膨胀阀(24)的蒸气压缩循环(20)和蒸发器(26)和压缩机(28)。 制冷剂构造成在蒸汽压缩循环中循环。 制冷系统还包括吸收制冷循环(30),吸收制冷循环(30)具有以通常闭环构造布置的吸收器(32)和解吸(34)。 吸收溶液被配置成在吸收制冷循环中循环。 蒸汽压缩循环和吸收制冷循环基本上是一体化的。 吸收器流体地联接到压缩机并且被配置为产生制冷剂和吸收溶液的混合物。 解吸器流体地联接到冷凝器,并且构造成将制冷剂与混合物分离并增加制冷剂蒸气的压力。