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    • 1. 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。
    • 4. 发明授权
    • Temperature control in variable-capacity HVAC system
    • 可变容量HVAC系统中的温度控制
    • US07770806B2
    • 2010-08-10
    • US11820521
    • 2007-06-19
    • Aaron D. HerzonAllan J. Reifel
    • Aaron D. HerzonAllan J. Reifel
    • F24F11/053
    • G05D23/1919F24F11/30F24F2110/10F25B49/02F25B2500/12F25B2600/0253F25B2600/112F25B2600/21F25B2700/197F25B2700/21175Y02B30/741Y02B30/743
    • Relatively constant temperatures are maintained in a space by varying the capacity of heating or cooling equipment. A proportional band is used to adjust capacity to compensate for changes in heating or cooling load, and the proportional band is adjusted to bring the actual temperature within the space closer to the set point temperature. Such an adjustment may be made by determining the difference between the present temperature and the set point temperature, and adjusting a floating temperature set point by a percentage (e.g., ten percent) of the difference. Such a process may be repeated, for example, at regular intervals, such as once per minute. As a result, the temperature within the space approaches (e.g., asymptotically) the set point temperature whether the heating or cooling load is high or low. Methods, systems, and apparatuses are contemplated, including HVAC units and controls, including for residential applications, including using variable-speed drives.
    • 通过改变加热或冷却设备的容量,在空间中保持相对恒定的温度。 使用比例带来调整容量以补偿加热或制冷负载的变化,并调整比例带以使实际温度在空间内更接近设定点温度。 可以通过确定当前温度和设定点温度之间的差异以及将浮动温度设定点调整为差的百分比(例如,10%)来进行这种调整。 这样的过程可以例如以规则的间隔重复,例如每分钟一次。 因此,无论加热或制冷负载是高还是低,空间内的温度接近(例如,渐近地)设定点温度。 涵盖方法,系统和装置,包括HVAC单元和控制,包括用于住宅应用,包括使用变速驱动器。