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    • 1. 发明申请
    • SYSTEM AND METHOD FOR MAINTAINING AIR TEMPERATURE WITHIN A BUILDING HVAC SYSTEM
    • 用于在建筑物HVAC系统内维持空气温度的系统和方法
    • WO2011041408A3
    • 2011-07-21
    • PCT/US2010050713
    • 2010-09-29
    • CARRIER CORPGRABON MICHELYUAN SHUIKUANG YUHUILUO DONGOGGIANU STELLA M
    • GRABON MICHELYUAN SHUIKUANG YUHUILUO DONGOGGIANU STELLA M
    • F24F11/02F24D15/04F24F3/052F25B30/02
    • F25B49/02F24D5/04F24D5/12F24D19/1087F24F3/08F24F2203/02F24H4/04F24H6/00F25B13/00F25B29/003F25B2400/06F25B2400/24
    • A system and method for conditioning air within an air handling system of a building is provided. The building has a hot water source and a cold water source. The conditioning system includes at least one heating-cooling unit connected to the air handling system, a primary water storage device, at least one heat pump, and a controller. The heating-cooling unit, which includes at least one chilled beam, is operable to transfer heat into or out of air passing within the air handling system of the building. The primary water storage device is operable to store a volume of water within a predetermined temperature range. The primary water storage device is in communication with the hot water source and the cold water source. The heat pump is connected to the primary water storage device and the chilled beam. The controller is adapted to selectively drive the heat pump to transfer heat between the primary water storage device and the chilled beam. The controller is also adapted to selectively control the system to transfer heat into or out of the primary water storage device to maintain the water within the primary storage device within the predetermined temperature range.
    • 提供了用于调节建筑物的空气处理系统内的空气的系统和方法。 该建筑物有热水源和冷水源。 调节系统包括连接到空气处理系统的至少一个加热冷却单元,主要储水装置,至少一个热泵和控制器。 包括至少一个激冷梁的加热 - 冷却单元可操作以将热量传递进入或传出在建筑物的空气处理系统内传递的空气。 主要储水装置可操作以储存预定温度范围内的一定体积的水。 主要储水装置与热水源和冷水源连通。 热泵连接到主要储水装置和冷梁。 控制器适于选择性地驱动热泵以在主水储存装置和激冷梁之间传递热量。 控制器还适于选择性地控制系统将热量传入或传出主要储水装置,以将主要储存装置内的水保持在预定温度范围内。
    • 6. 发明申请
    • POWER MANAGEMENT IN ELEVATORS DURING MARGINAL QUALITY POWER CONDITIONS
    • 电力质量权力条件下电梯的电力管理
    • WO2010059139A1
    • 2010-05-27
    • PCT/US2008/012915
    • 2008-11-19
    • OTIS ELEVATOR COMPANYWESSON, John P.OGGIANU, Stella M.
    • WESSON, John P.OGGIANU, Stella M.
    • G05D3/12
    • B66B1/302
    • An elevator system having a regenerative elevator drive and an electrical or mechanical energy storage system includes an energy management controller. Voltage and state-of-charge of the energy storage system are monitored by the energy management controller. During sustained marginal quality power conditions of the primary input power to the elevator, the energy management controller maintains and extends operation of the elevator system by selecting a mode of operation where the motor of the elevator is powered by the energy storage system, while using power available from the grid and the elevator regenerative runs for charging the energy storage system. The energy management controller may delay elevator runs, reduce elevator speeds, temporarily shut down elevator operation, and adjust operating limits of the energy storage system based upon line voltage, state-of-charge, elevator loading, and power requirements of the elevator system.
    • 具有再生电梯驱动器和电或机械能量存储系统的电梯系统包括能量管理控制器。 能量存储系统的电压和充电状态由能量管理控制器监视。 在对电梯的主要输入功率的持续的边缘质量功率条件期间,能量管理控制器通过选择一种操作模式来维护和扩展电梯系统的操作,其中电梯的电动机由能量存储系统供电,同时使用电力 可从电网获得,并且电梯再生运行用于为能量存储系统充电。 能量管理控制器可以延迟电梯运行,降低电梯速度,暂时关闭电梯运行,并且基于电梯电压,电荷负载,电梯负载和电梯系统的功率要求来调节能量存储系统的运行极限。