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    • 62. 发明授权
    • Environmental control system
    • 环境控制体系
    • US06182454B2
    • 2001-02-06
    • US09334507
    • 1999-06-21
    • Michael McNeilan
    • Michael McNeilan
    • F25B4900
    • F24F5/0017F24F11/0008F24F2221/48G05D27/02Y02E60/147
    • An environmental control system for maintaining a predetermined air temperature and relative humidity level of the interior of an enclosure, such as a wine cellar. A liquid chiller is provided which is adapted to cool liquid being circulated therethrough. An air handler has a cabinet with a heat exchanging unit and a blower disposed therein. The heat exchanging unit is operatively connected to the liquid chiller to receive cooled liquid being discharged therefrom. The blower is adapted to direct air from the enclosure over the heat exchanging unit such that the enclosure air is cooled. A liquid cascade unit has at least one surface with an upper and lower portion and a liquid collection pan attached to that lower portion. The upper portion is operatively connected to the heat exchanging unit such that liquid flows down from the upper portion toward the lower portion and into the liquid collection pan. The liquid collection pan is connected to the liquid chiller to return the collected liquid back to the liquid chiller. As such, the air handler is operative to cool the air inside the enclosure to a predetermined temperature in a closed loop fashion. The liquid cascade unit is also operative to cool the air inside the enclosure and further operative to regulate the relative humidity within the enclosure in an open-loop fashion.
    • 一种环境控制系统,用于保持诸如酒窖的外壳内部的预定空气温度和相对湿度水平。 提供一种适于冷却循环通过的液体冷却器。 空气处理机具有设置有热交换单元和鼓风机的机壳。 热交换单元可操作地连接到液体冷却器以接收从其排出的冷却液体。 鼓风机适于将来自外壳的空气引导到热交换单元上,使得外壳空气被冷却。 液体级联单元具有至少一个具有上部和下部的表面,以及连接到该下部的液体收集盘。 上部可操作地连接到热交换单元,使得液体从上部向下流动并进入液体收集盘。 液体收集盘连接到液体冷却器,以将收集的液体返回到液体冷却器。 因此,空气处理器可操作以以闭环方式将外壳内的空气冷却至预定温度。 液体级联单元还可操作以冷却外壳内的空气,并进一步操作以开环方式调节外壳内的相对湿度。
    • 64. 发明授权
    • Humidifier for control of semi-conductor manufacturing environments
    • 用于控制半导体制造环境的加湿器
    • US5815637A
    • 1998-09-29
    • US645341
    • 1996-05-13
    • Stuart V. AllenRobert Bruce Eglinton
    • Stuart V. AllenRobert Bruce Eglinton
    • F22B1/28F24F6/00F24F11/00H01L21/677F24F3/14
    • F24F11/0008F22B1/284F24F6/00F24F11/001
    • The humidifier for controlling humidity in a semi-conductor manufacturing environment provides a trickle water refill level control system for maintaining an accurate flow of refill water into the humidifier water tank. A water supply provides a substantially constant rate of flow of water to a conduit connected between the humidifier tank inlet port and the water overflow tank inlet port, to allow the excess water supplied to the humidifier water tank to flow to the overflow tank. The overflow tank has a float level control allowing for operation of the steam generating humidifier at higher steam pressures, and increased stability of the steam generation rate. A pressure equalization line is also connected between an upper portion of the humidifier water tank and an upper air reservoir of the water overflow tank for equalizing pressure between the humidifier water tank and the water overflow tank.
    • 用于在半导体制造环境中控制湿度的加湿器提供了一种滴流补水液位控制系统,用于保持补充水准确地流入加湿器水箱。 供水装置向连接在加湿器箱入口和水溢流罐入口之间的导管提供基本恒定的水流量,以允许供应给加湿器水箱的多余水流向溢流箱。 溢流罐具有浮动液面控制,允许在较高蒸汽压力下运行蒸汽发生加湿器,并提高蒸汽产生速率的稳定性。 在加湿器水箱的上部和水溢流箱的上部空气容器之间还连接有均压管路,用于使加湿器水箱和水溢流罐之间的压力相等。
    • 65. 发明授权
    • Thermal comfort controller
    • 热舒适控制器
    • US5737934A
    • 1998-04-14
    • US664012
    • 1996-06-12
    • Dipak J. Shah
    • Dipak J. Shah
    • G05D23/00F24F11/00G05D23/19G05D27/02F25B49/00B01F3/02
    • F24F11/0008G05D27/02F24F11/0015
    • A controller for a climate control system has a relative humidity sensor as well as a dry-bulb temperature sensor within the enclosure. The humidity value is used in conjunction with the dry-bulb temperature to generate an apparent temperature error signal which is a function of both the dry-bulb temperature and the relative humidity values. This permits robust control of both enclosure temperature and enclosure moisture content without abnormal cycling of the climate control system. Instead of using a sensor which directly measures the apparent temperature, the apparent temperature can be synthesized from the relative humidity and dry-bulb temperature within the enclosure. Alternately, the sensed and set point apparent temperature values can be synthesized from any two thermodynamic properties of the moist air within the enclosure.
    • 用于气候控制系统的控制器具有相对湿度传感器以及外壳内的干球温度传感器。 湿度值与干球温度一起使用,以产生与干球温度和相对湿度值两者的函数的表观温度误差信号。 这样可以对气温控制系统的外壳温度和外壳水分含量进行强大的控制,而不会出现异常循环。 代替使用直接测量表观温度的传感器,可以从外壳内的相对湿度和干球温度来合成表观温度。 或者,感测和设定点的表观温度值可以从外壳内的潮湿空气的任何两个热力学特性合成。
    • 66. 发明授权
    • Air conditioning apparatus capable of performing a dehumidifying
operation
    • 能够进行除湿运转的空调装置
    • US5345776A
    • 1994-09-13
    • US135497
    • 1993-10-13
    • Megumi KomazakiHideaki SuzukiHideaki MotohashiKeiichi Morita
    • Megumi KomazakiHideaki SuzukiHideaki MotohashiKeiichi Morita
    • F24F11/02F24F3/14F24F11/00
    • F24F11/006F24F11/0008F24F3/14F24F11/0012F24F11/0015F25B2600/021Y02B30/741Y10S706/90
    • An air conditioner having a compressor, an outdoor fan, and two indoor heat exchangers which are connected by an electric expansion valve. During a dehumidifying operation, the opening of the electric expansion valve is decreased, thereby decompressing the refrigerant flowing from the first indoor heat exchange into the second indoor exchanger. The first and second heat exchangers thereby function as a reheater and an evaporator, respectively. The second indoor heat exchanger cools and dehumidifies the indoor air, and the first indoor heat exchanger heats the indoor air again. The indoor air, first cooled, then dehumidified, and finally re-heated, is supplied into the room. During the dehumidifying operation, a deviation (T) of the indoor temperature (Ta) from a preset indoor temperature (Ts), and a change (.DELTA.T) in the deviation (T) are detected, and the deviation (H) of the indoor humidity (Ha) from a preset indoor humidity (Hs), and a change (.DELTA.H) are also detected. Fuzzy inference is performed based on the deviation (T), the change (.DELTA.T), the deviation (H) and the change (.DELTA.H), thereby calculating an adjustment value (.DELTA.F) and an adjustment value (.DELTA.N). The value (.DELTA.F) adjusts the drive frequency of the compressor, and the value (.DELTA.N) adjusts the rotational speed (N) of the outdoor fan.
    • 具有通过电动膨胀阀连接的压缩机,室外风扇和两个室内热交换器的空调机。 在除湿操作期间,电动膨胀阀的开度减小,从而使从第一室内热交换器流入的制冷剂减压到第二室内交换器。 因此,第一和第二热交换器分别用作再热器和蒸发器。 第二室内热交换器对室内空气进行冷却和除湿,第一室内热交换器再次加热室内空气。 室内空气首先冷却,然后除湿,最后再加热,送入房间。 在除湿操作期间,检测室内温度(Ta)与预设室内温度(Ts)的偏差(T)和偏差(T)中的变化(DELTA T),并且检测出 从室内湿度(Hs)和室内湿度(Ha)也可以检测出变化(DELTA H)。 基于偏差(T),变化(DELTA T),偏差(H)和变化(DELTA H)进行模糊推理,由此计算调整值(DELTA F)和调整值(DELTA N)。 值(DELTA F)调节压缩机的驱动频率,并且值(DELTA N)调节室外风扇的转速(N)。