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    • 1. 发明申请
    • Water Driving Pump and Temperature Control System Involving Regulation of Temperature Differential
    • 驱动泵和温度控制系统涉及温差调节
    • US20160161142A1
    • 2016-06-09
    • US14563389
    • 2014-12-08
    • Nissim Isaacson
    • Nissim Isaacson
    • F24F11/06F24D19/10
    • F24D19/1012Y02B30/745Y02P80/156
    • A system for heating and cooling building interiors with a boiler or chiller of fluid travelling in a closed loop includes a pair of temperature transducers located at the inlet and outlet of the boiler/chiller. A pump and piping for transporting the fluid is provided. The temperature transducers at the entrance and exit of the boiler or chiller are electrically connected to a pump logic control for receiving information from the transducers and altering the speed and/or frequency of operation of the pump or set of circulating pumps to create an ideal temperature differential between the two transducers that will maximize the efficiency of the boiler or chiller. Preferably, the temperature difference is 20 degrees F. In preferred embodiment, the system will also include one or more variable frequency drive pumps and a pump logic circuit device which will drive the speed by controlling frequency of electricity to the pumps so as to maintain maximum efficiency of electric consumption. In all, a highly efficient heating/chilling system is provided.
    • 用于通过在闭环中行进的流体的锅炉或冷却器对建筑物内部进行加热和冷却的系统包括位于锅炉/冷水机的入口和出口处的一对温度传感器。 提供了用于输送流体的泵和管道。 锅炉或冷却器入口和出口处的温度传感器电气连接到泵逻辑控制器,用于从换能器接收信息并改变泵或一组循环泵的运行速度和/或频率以产生理想温度 两个换能器之间的差异将使锅炉或冷却器的效率最大化。 优选地,温差为20华氏度。在优选实施例中,该系统还将包括一个或多个变频驱动泵和泵逻辑电路装置,其将通过控制泵的电力来驱动速度,以便保持最大 电耗效率。 总之,提供了高效的加热/冷却系统。
    • 3. 发明申请
    • WATER HEATER WITH PROGRAMMABLE LOW TEMPERATURE MODE
    • 具有可编程低温模式的水加热器
    • US20070051819A1
    • 2007-03-08
    • US11456273
    • 2006-07-10
    • Nissim Isaacson
    • Nissim Isaacson
    • F23N1/08
    • F23N1/082F23N5/143F23N2037/06F24H9/2035
    • The temperature in a water tank (e.g., a residential water tank) is monitored, and a controller switches between a high temperature mode of operation and a low temperature mode of operation (e.g., based on a daily or weekly program). During the low temperature mode of operation, the controller generates signals to selectively activate a water heater to keep the water's temperature within a first range of values, (e.g., between 105 and 113° F). During the high temperature mode of operation, the controller generates signals that cause the water heater to heat the water to a temperature that is above the first range of values. This arrangement may be used for saving energy by operating in the low temperature mode at night and during those parts of the day when nobody is home, and by operating in the high temperature mode in the morning and evening when the demand for hot water is typically high. This arrangement is also well-suited for day-care centers and nursing homes, in which case the low temperature mode is used to reduce the risk of scalding. It is also useful in the homes of people who wish to avoid violating a religious injunction that prohibits heating liquids beyond a threshold temperature on the Sabbath.
    • 监测水箱(例如住宅水箱)中的温度,并且控制器在高温操作模式和低温操作模式(例如,基于每日或每周程序)之间切换。 在低温操作模式期间,控制器产生信号以选择性地激活热水器以将水的温度保持在第一值范围内(例如在105和113°F之间)。 在高温运行模式下,控制器产生使热水器将水加热到高于第一范围值的温度的信号。 这种布置可以用于在晚上和在没有人在家的那些部分的时间内在低温模式下操作并且在早上和晚上在高温模式下操作时,当热水的需求通常 高。 这种安排也非常适合日间护理中心和养老院,在这种情况下,采用低温模式来减少烫伤的风险。 在希望避免违反禁止在安息日超过阈值温度的加热液体的宗教禁令的人的家中也是有用的。