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    • 5. 发明授权
    • Ventilation airflow rate control
    • 通风量控制
    • US08672733B2
    • 2014-03-18
    • US11703518
    • 2007-02-06
    • Jie ChenAaron D. HerzonAllan J. ReifelYi Chen
    • Jie ChenAaron D. HerzonAllan J. ReifelYi Chen
    • F24F11/00F24F11/02F24F7/00
    • F04D27/004F24F11/77
    • Airflow rates within a ventilation system are controlled using motor speed or torque and motor electric current or pressure. Fan speed or torque may be varied to compensate for differing restriction in ductwork, and may provide a constant airflow rate over a range of varying airflow restriction. Air handlers or air conditioning units may be mass produced in common configurations, and installed in different buildings or structures with different ductwork configurations. Methods operate a fan motor at a present speed or torque, sample speed or torque, sample current of the fan motor or pressure within the ventilation system, calculate a present airflow rate within the ventilation system, calculate a new input setting using the present airflow rate and a target airflow rate, change the speed or torque to the new input setting, and repeat these steps to converge on the target airflow rate, often avoiding overshoot.
    • 通风系统内的气流速率可通过电机转速或转矩,电机电流或压力进行控制。 可以改变风扇速度或扭矩以补偿管道系统中的不同限制,并且可以在变化的气流限制的范围内提供恒定的气流速率。 空气处理机或空调机可以通常配置大量生产,并安装在具有不同管道结构的不同建筑物或结构中。 方法以当前速度或扭矩,采样速度或扭矩,风扇电机的采样电流或通风系统内的压力来操作风扇电机,计算通风系统内的当前气流速率,使用当前气流速率计算新的输入设置 和目标气流速率,将速度或扭矩改变到新的输入设置,并重复这些步骤以收敛于目标气流速率,通常避免过冲。
    • 6. 发明申请
    • Ventilation airflow rate control
    • 通风量控制
    • US20080188173A1
    • 2008-08-07
    • US11703518
    • 2007-02-06
    • Jie ChenAaron D. HerzonAllan J. ReifelYi Chen
    • Jie ChenAaron D. HerzonAllan J. ReifelYi Chen
    • F24F11/04
    • F04D27/004F24F11/77
    • Airflow rates within a ventilation system are controlled using motor speed or torque and motor electric current or pressure. Fan speed or torque may be varied to compensate for differing restriction in ductwork, and may provide a constant airflow rate over a range of varying airflow restriction. Air handlers or air conditioning units may be mass produced in common configurations, and installed in different buildings or structures with different ductwork configurations. Methods operate a fan motor at a present speed or torque, sample speed or torque, sample current of the fan motor or pressure within the ventilation system, calculate a present airflow rate within the ventilation system, calculate a new input setting using the present airflow rate and a target airflow rate, change the speed or torque to the new input setting, and repeat these steps to converge on the target airflow rate, often avoiding overshoot.
    • 通风系统内的气流速率可通过电机转速或转矩,电机电流或压力进行控制。 可以改变风扇速度或扭矩以补偿管道系统中的不同限制,并且可以在变化的气流限制的范围内提供恒定的气流速率。 空气处理机或空调机可以通常配置大量生产,并安装在具有不同管道结构的不同建筑物或结构中。 方法以当前速度或扭矩,采样速度或扭矩,风扇电机的采样电流或通风系统内的压力来操作风扇电机,计算通风系统内的当前气流速率,使用当前气流速率计算新的输入设置 和目标气流速率,将速度或扭矩改变到新的输入设置,并重复这些步骤以收敛于目标气流速率,通常避免过冲。
    • 8. 发明授权
    • HVAC control using discrete-speed thermostats and run times
    • HVAC控制使用离散速度恒温器和运行时间
    • US08011199B1
    • 2011-09-06
    • US12844709
    • 2010-07-27
    • Jie ChenAllan J. ReifelDave L. KoestererSiegfried J. Weigl
    • Jie ChenAllan J. ReifelDave L. KoestererSiegfried J. Weigl
    • F25B1/00
    • F25B49/022F24F11/77F25B2600/01F25B2600/0253F25B2600/11G05D23/1917Y02B30/741
    • Methods of controlling air conditioning and HVAC units using a thermostat for a discrete-speed unit that include changing speed based on how long the unit operates at a particular speed. Speed may be increased if a unit operates for longer than a predetermined time at a particular speed, and speed may be reduced if the unit operated for less than a specific amount of time during the prior run. In different embodiments, single-stage thermostats may control units that operate at three speeds, and two-stage thermostats may control units that operate at three to five or more speeds. In addition, in some embodiments, outdoor coil temperature may be measured and considered in determining speed. Further, in some embodiments, maintaining continuous or repeated operation at a boost speed may be avoided. Energy savings and noise reduction may result.
    • 使用用于离散速度单元的恒温器控制空调和HVAC单元的方法,其包括基于单元以特定速度运行多长时间来改变速度。 如果单元以特定速度操作长于预定时间,则可以增加速度,并且如果在前一次运行期间该单元操作小于特定量的时间,则速度可能会降低。 在不同的实施例中,单级恒温器可以控制以三个速度运行的单元,两级恒温器可以控制以三到五个或更多个速度运行的单元。 此外,在一些实施例中,可以在确定速度时测量和考虑室外线圈温度。 此外,在一些实施例中,可以避免以升高速度维持连续或重复的操作。 可能会导致节能降噪。
    • 9. 发明授权
    • Condensing gas package unit with a tubular conduit for passing a condensate drain line
    • 冷凝气体包装单元带有用于通过冷凝物排放管线的管状导管
    • US08261568B2
    • 2012-09-11
    • US13026003
    • 2011-02-11
    • Allan J. ReifelRussell W. HoeffkenDavid W. Garvin
    • Allan J. ReifelRussell W. HoeffkenDavid W. Garvin
    • F25D21/14
    • F24F13/222
    • Air conditioning units packaged with condensing gas heat exchangers include a drain line connected to a collector attached to the heat exchanger. In different embodiments, the drain line, or a conduit for the drain line, may extend to the return duct opening for routing of the drain line through the return duct for disposal of the condensate, for instance, within the building, or the drain line may extend through a hole in the floor of the unit. The conduit may protect the drain line from direct heat from the heat exchanger, from freezing where the drain line passes through an outdoor section, or both. In some embodiments, air may be circulated through the conduit to prevent freezing. The conduit may guide the drain line through the unit, roof curb assembly, or roof, or the drain line may be routed through the unit by the manufacturer to the return duct opening.
    • 与冷凝气体热交换器一起装配的空调装置包括连接到附接到热交换器的集尘器的排出管线。 在不同的实施例中,排水管线或用于排水管线的管道可以延伸到返回管道开口,用于将排水管线路线通过返回管道,以排放例如建筑物内的冷凝物或排水管线 可延伸穿过设备底板上的一个孔。 导管可以保护排水管线不受来自热交换器的直接热量的影响,防止排水管线通过室外部分或两者的冻结。 在一些实施例中,空气可以通过导管循环以防止冻结。 导管可以将排水管引导通过单元,屋顶路缘组件或屋顶,或者排水管线可以由制造商通过该单元布置到返回管道开口。