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    • 1. 发明申请
    • REFRIGERATION SYSTEM HAVING A HIGH TURNDOWN RATIO
    • 具有高出力比的制冷系统
    • WO2006049601A3
    • 2008-01-24
    • PCT/US2004035876
    • 2004-10-28
    • LYNNTECH INCANDREWS CRAIG C
    • ANDREWS CRAIG C
    • F25C1/14F25B49/02
    • F25C1/142F25B39/02F25B49/02F25B2400/05F25B2700/04F25B2700/15F25B2700/197F25B2700/2117F25C2400/14F25C2600/04
    • Refrigeration units having flooded evaporators and methods of their operation that include the steps of varying an effective surface area of the evaporator (11) to control a heat load on the evaporator, wherein the effective surface area is wetted by a liquid refrigerant. Varying the effective surface area of the flooded evaporator (11) may include monitoring a temperature, a level, and/or a pressure of the refrigerant in the evaporator and adjusting a flow rate of the liquid refrigerant into the evaporator to change the temperature, level and/ or pressure to a desired value. Additional steps may include varying a desired heat load to the evaporator as a function of a present capacity of the compressor (12) and/or varying the capacity of the compressor as a function of a presently available power. The refrigeration unit includes means for varying an effective surface area of the evaporator to control a heat load on the evaporator.
    • 具有溢流蒸发器的制冷单元及其操作方法包括改变蒸发器(11)的有效表面积以控制蒸发器上的热负荷的步骤,其中有效表面积被液体制冷剂润湿。 改变溢流蒸发器(11)的有效表面积可以包括监测蒸发器中的制冷剂的温度,水平和/或压力,并且调节液体制冷剂进入蒸发器的流量以改变温度,水平 和/或压力达到所需值。 附加步骤可以包括根据压缩机(12)的当前容量和/或根据当前可用功率改变压缩机的容量来改变对蒸发器的期望的热负荷。 制冷单元包括用于改变蒸发器的有效表面积以控制蒸发器上的热负荷的装置。
    • 6. 发明专利
    • AT233717T
    • 2003-03-15
    • AT99966314
    • 1999-12-15
    • LYNNTECH INC
    • ANDREWS CRAIG CMURPHY OLIVERHITCHENS G DUNCAN
    • F25D23/00A61L2/20C02F1/28C02F1/44C02F1/461C02F1/467C02F1/50C02F1/78C02F9/00C25B1/13C25B9/19C02F1/46C25B9/00
    • The present invention provides for the electrochemical generation of ozone for use in "point-of-use" applications. The electrochemical ozone generators or systems of the present invention may be used to provide disinfected water, ozone-containing water, and/or ozone gas. Disinfected water may be produced by introducing ozone gas into a potable or purified water source for the purpose of disinfecting or controlling the microorganisms in the water source. Ozonated water or ozone gas may be produced and provided for various anti-microbial and cleansing applications of the consumer, such as washing food, clothing, dishes, countertops, toys, sinks, bathroom surfaces, and the like. Furthermore, the ozone generator may be used to deliver a stream of ozone-containing water for the purpose of commercial or residential point-of-use washing, disinfecting, and sterilizing medical instruments and medical equipment. For example, the ozone-containing water may be used directly or used as a concentrated sterilant for the washing, disinfecting, and sterilizing of medical instruments or equipment. Ozone gas may also be used in many of the foregoing examples, as well as in the deodorization of air or various other applications. The invention allows the electrochemical ozone generator to operate in a nearly or entirely passive manner with simplicity of design.