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    • 4. 发明授权
    • Fresh air ventilation control methods and systems
    • 新鲜空气通风控制方法和系统
    • US07475828B2
    • 2009-01-13
    • US11276873
    • 2006-03-17
    • Charles E. BartlettStephen J. KempLeisha J. Rotering
    • Charles E. BartlettStephen J. KempLeisha J. Rotering
    • F24F7/00F24F1/00F24F11/06
    • F24F11/0001F24F2011/0002
    • Methods and systems are disclosed for meeting a fresh air ventilation threshold in a controlled space. In particular, and in some embodiments, a minimum ventilation threshold is met by using normal air handler fan cycles to minimize the energy cost of supplying the ventilation. Prediction methods may be employed to determine whether the air handler and damper need to be activated to meet a minimum ventilation threshold, even when the HVAC system is not currently calling for normal air handler fan cycles. In some cases, the past history of air handler fan run cycles is used to determine whether a fan should be operated now to provide additional fresh air ventilation. Alternatively, or in addition, predictions of future air handler cycles are used to determine whether a fan should be operated now to provide additional fresh air ventilation. In some cases, the past history of air handler fan run cycles may be used to predict future air handler cycles to determine whether to open or close a selectable fresh air source damper.
    • 公开了用于在受控空间中满足新鲜空气通风阈值的方法和系统。 特别地,在一些实施例中,通过使用正常的空气处理器风扇循环来满足最小通风阈值以最小化供应通风的能量成本。 可以使用预测方法来确定空气处理器和阻尼器是否需要被激活以满足最小通风阈值,即使当HVAC系统当前不正在呼叫正常的空气处理器风扇循环时。 在某些情况下,过去的空气处理机风扇运行历史用于确定现在是否应该运行风扇以提供额外的新鲜空气通风。 或者,或另外,将来使用未来空气处理循环的预测来确定风扇现在应该如何操作以提供额外的新鲜空气通风。 在某些情况下,空气处理器风扇运行循环的过去历史可用于预测未来的空气处理器循环,以确定是否打开或关闭可选择的新鲜空气源阻尼器。
    • 6. 发明授权
    • Airflow sensor, system and method for detecting airflow within an air handling system
    • 气流传感器,用于检测空气处理系统内气流的系统和方法
    • US06776817B2
    • 2004-08-17
    • US09995066
    • 2001-11-26
    • Tracy L. LentzJeffrey M. HammerMark E. StoutLeisha J. Rotering
    • Tracy L. LentzJeffrey M. HammerMark E. StoutLeisha J. Rotering
    • G01F168
    • G01F1/6845G01F1/6847G01P13/006
    • An airflow sensor including a housing, a flexible substrate, and electrical components. The housing defines an internal compartment and a top face opening. The substrate includes circuitry traces, and defines a front and a back. The substrate is disposed within the compartment such that the back is exposed relative to the opening. The electrical components are electrically connected to the circuitry traces, extending from the front of the substrate opposite the opening, and include a heated temperature sensor spaced from a baseline temperature sensor. During use, airflow interfaces with the substrate back to cool the heated temperature sensor. The extent of this cooling as compared to the baseline temperature sensor is indicative of airflow. The system and method include detecting the presence or absence of airflow based upon a temperature differential between the temperature sensors as well as a rate of change in the temperature differential.
    • 一种气流传感器,包括壳体,柔性基板和电气部件。 壳体限定内部隔间和顶面开口。 衬底包括电路迹线,并且限定正面和背面。 衬底设置在隔室内,使得背部相对于开口露出。 电气部件电连接到从基板的与开口相对的前部延伸的电路迹线,并且包括与基准温度传感器间隔开的加热的温度传感器。 在使用过程中,气流与衬底相接触,以冷却加热的温度传感器。 与基线温度传感器相比,该冷却的程度表示气流。 该系统和方法包括基于温度传感器之间的温差以及温度差的变化率检测气流的存在或不存在。