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    • 81. 发明授权
    • Modular fluid control apparatus and method of making
    • 模块化流体控制装置及其制造方法
    • US4456168A
    • 1984-06-26
    • US227493
    • 1981-01-22
    • Richard N. LaakaniemiPaul E. Wichman
    • Richard N. LaakaniemiPaul E. Wichman
    • F15B13/00F15B13/08F15B21/04F24F11/00G05D23/13F24F7/06
    • F15B13/0807F15B21/048F24F11/00G05D23/138F24F11/0012F24F11/0015F24F2011/0002F24F2011/0013F24F2011/0082F24F2221/54F24F6/00Y10T137/87885Y10T403/1616
    • A modular pneumatic control apparatus controls a mixed air handling units in an air conditioning system. The apparatus includes a single configured manifold module plate having a plurality of function module plug-in connectors and a plurality of input/output plug-in connectors. Function modules have complementary plug-in connectors for connection to the manifold module are designed with common opposite outer plates having surface passageways abutting a center plate with openings to define a particular circuit. The outer plates have all external ports for defining any function module used in any system. The manifold module is a constant architecture and acts as an interface between the system sensors and load devices and the function modules which create the desired complex control systems. Only a relatively small number of function modules are required. An interactive computer based design procedure can produce a series of questions to define the necessary function modules and supporting components and connections to completely design a system with only a minimal understanding of the control instrumentation and their characteristics.
    • 模块化气动控制装置控制空调系统中的混合空气处理单元。 该装置包括具有多个功能模块插入式连接器和多个输入/输出插入式连接器的单个配置的歧管模块板。 功能模块具有用于连接到歧管模块的互补插入式连接器,其设计具有通常的相对的外板,其具有邻接具有开口的中心板的表面通道以限定特定的电路。 外板具有用于定义任何系统中使用的任何功能模块的所有外部端口。 歧管模块是一个恒定架构,用作系统传感器和负载设备之间的接口以及产生所需复杂控制系统的功能模块。 只需要相对较少的功能模块。 基于交互式计算机的设计程序可以产生一系列问题,以定义必要的功能模块和支持组件和连接,以完全设计系统,只对控制仪器及其特性的最小了解。
    • 82. 发明授权
    • Environmental control system
    • 环境控制体系
    • US4290480A
    • 1981-09-22
    • US18847
    • 1979-03-08
    • Alfred Sulkowski
    • Alfred Sulkowski
    • F24F11/00F24F3/14
    • F24F11/0009F24F11/0012F24F11/0015
    • An environmental control system controlling an air cooling means, a heat reclaiming means, fresh air supply, auxiliary heaters when necessary, and temperature and humidity sensors, all of which are coordinated by an environmental control panel. The panel would in addition to providing temperature regulation also control the humidity by overcooling the air by the A.C. reducing humidity and then using the reclaimed heat and/or auxiliary heat to heat the air to a desired level and would utilize individual-temperature calibrated-sensors to achieve exact control of steps signaled from control panel to heating and cooling equipment.
    • 控制空气冷却装置的环境控制系统,热回收装置,新鲜空气源,必要时的辅助加热器以及温度和湿度传感器,所有这些都由环境控制面板协调。 除了提供温度调节之外,面板还可以通过减少AC的湿度使空气过冷,然后使用再生热和/或辅助热来将空气加热到所需的水平,并且将利用单独温度校准的传感器 以实现从控制面板向加热和冷却设备发出信号的精确控制。
    • 83. 发明授权
    • Electronic modulating system for air conditioning apparatus
    • 空调设备电子调制系统
    • US4262491A
    • 1981-04-21
    • US889630
    • 1978-03-24
    • James E. ChoreyJohn Burch
    • James E. ChoreyJohn Burch
    • F24F11/00F24F11/06F25D17/02G05D23/00
    • F24F11/06F24F11/0009F24F11/0012F24F11/0015F24F2011/0013
    • Modulating system for electrically or pneumatically controlled chillers in which a sensor senses the space condition, in a controlled environment or space. Output signals from an enthalpy sensor or other sensor representing the space condition are fed to chiller modulator electronic controls and thence to the chiller modulator interface controls, be they electric or pneumatic. The sensor monitors the conditions in or returning from the controlled space or environment. By measuring both humidity and temperature, the enthalpy sensor generates an effective temperature or comfort level. The input signal from the sensor is compared to an operator adjustable set-point. If the measured condition is less than the set-point, an error signal is generated which is proportional to the difference multiplied by an operator-set sensitivity control. The modulator interface control converts the error signal into a physical offset either applied in series with the chiller's own sensor, or is used to reset the set-point of the chiller control system. In the case of a chiller with a negative temperature coefficient resistance sensor, an appropriate amount of resistance is added in series with the sensor. In the case of a chiller with a positive temperature coefficient resistance sensor and appropriate amount of resistance is subtracted in series with the sensor. If the chiller sensor is pneumatic, a bleed valve is opened to change pressure which resets the set-point of the pneumatic control system.
    • 在受控的环境或空间中,电气或气动控制的冷却器的调节系统,其中传感器感测空间状态。 来自焓传感器或代表空间状态的其他传感器的输出信号被馈送到冷却器调制器电子控制器,然后被馈送到冷却器调制器接口控制器,无论是电动还是气动的。 传感器监控受控空间或环境中的条件或返回。 通过测量湿度和温度,焓传感器产生有效的温度或舒适度。 将来自传感器的输入信号与操作者可调节的设定点进行比较。 如果测量条件小于设定点,则会产生与差值乘以操作员设置灵敏度控制成比例的误差信号。 调制器接口控制将误差信号转换为与冷却器本身的传感器串联应用的物理偏移,或者用于重置冷却器控制系统的设定点。 在具有负温度系数电阻传感器的冷却器的情况下,与传感器串联地添加适当量的电阻。 在具有正温度系数电阻传感器的冷却器的情况下,与传感器串联减少适当的电阻量。 如果冷却器传感器是气动的,则打开放气阀以改变压力,以复位气动控制系统的设定点。
    • 85. 发明授权
    • Air conditioning system with integral energy conserving elements
    • US3949807A
    • 1976-04-13
    • US502049
    • 1974-08-30
    • Hugh Jean Tyler
    • Hugh Jean Tyler
    • F24F11/00G05D23/24F25B29/00
    • F24F11/0009G05D23/1912G05D23/1934G05D23/24F24F11/0012F24F11/0015F24F2011/0002
    • There is disclosed an air conditioning control system for a building which has zone temperature sensing means for generating a plurality of DC analog signals proportional to the deviation of the air temperature in a controlled zone from first and second set point temperatures. The signal generated by the deviation of the controlled zone air temperature below the lowermost set point temperature is applied to the controller of the air heating facility of the air condition system while the signal generated by deviation of the controlled zone air temperature above the highest set point temperature is applied to the control means for the air cooling facility of the air conditioning system. Ventilation damper means are provided in the air circulation facilities to control the proportion of return and fresh air supplied to the air conditioning system and the signal generated by the zone temperature sensing means when the controlled zone air temperature deviates to above the lowermost set point temperature is applied to the controller on the ventilation damper means whereby the proportion of fresh and return air is controlled in response thereto. In a typical embodiment the control system is employed with an air conditioning system including a plurality of air heating stages housed in a heating deck and a plurality of air cooling stages housed in a cooling deck. The air conditioning system is commonly employed in a building having a plurality of zones of controlled air temperature with air circulation facilities which include the necessary ducts to recycle zone air through the air conditioning system and blend therewith a controlled proportion of fresh or outside air. Individual zone damper means are placed in each of the air supply ducts from the heating and cooling decks to supply air from each of these decks in proportion to the demands of the individual zones. The zone air temperature sensing means, which is associated with each of the controlled zones, comprises a thermostatic device having two set point temperatures, typically a heating and ventilating set point temperature of about 68.degree. and a cooling set point temperature of about 78.degree. F.The controls for the air conditioning system employed for the multiple zones are operative to select the control signal of the zone having the greatest heating demand and to apply this signal to the heating facility of the system. When a plurality of heating stages are employed the signal of maximum demand is applied to the stages in a progressive fashion to provide a staged or successive activation of the stages in response to a falling temperature and a phased deactivation of the stages in response to a rising temperature as the temperature approaches the lower set point temperature. The controls of the system are also operative to open the ventilation air damper of the air circulation facilities whereby outside air can be introduced into the cooling deck when the outside air is at a temperature close to or below the maximum set point temperature. There is a band of uncontrolled air temperature between the lower set point and upper set point temperatures through which the controlled zones are permitted to drift without activation of the heating or cooling facilities. Should the temperature of the warmest controlled zone, however, exceed the maximum set point temperature by a preset differential, the air cooling facility of the air conditioning system is activated. When a plurality of stages of air cooling are provided, these are activated in a progressive or staged fashion in response to a rising temperature of the warmest controlled zone and are successively deactivated as the control zone temperature approaches the maximum set point temperature.