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    • 1. 发明申请
    • SYSTEM AND PROCESS FOR NOTIFICATION OF CONTAGION RISK CONDITIONS AND MITIGATION THEREOF
    • 联系风险条件及其缓解通知的制度和流程
    • US20160109149A1
    • 2016-04-21
    • US14890297
    • 2014-05-10
    • WELLO, INC.
    • Alan C. Heller
    • F24F11/00G05B15/02G06F19/00
    • F24F11/0015F24F11/30F24F2110/20G05B15/02G06F19/00G16H50/80
    • The present invention is directed to system and process for notification of contagion risk and mitigation of the risk thereof. The system comprises a meteorological history repository having meteorological data and a processor configured with an instruction set. The instruction set includes retrieving meteorological data for a selected region for a selected time window, calculating contagion risk based on the meteorological data and from at least one of a transmission risk or a susceptibility risk, calculating the transmission risk as a function of dew point change and calculating susceptibility risk as a function of relative humidity. The system generates a contagion risk indicator based thereon.Embodiments of the system for mitigating the risk of spread of contagions and include a controller configured to select a lower humidity bound as a function of contagion infectivity and an upper humidity bound as a function of contagion viability or mold/fungus growth rate. The controller receives humidity data for the sealed area and issues control signals to a humidification unit in response to the received humidity data and according to the selected lower humidity bound and the upper humidity bound.
    • 本发明涉及用于通知传染风险和缓解其风险的系统和过程。 该系统包括具有气象数据的气象历史仓库和配置有指令集的处理器。 该指令集包括在所选择的时间窗口中检索所选择的区域的气象数据,基​​于气象数据和从传播风险或易感性风险中的至少一个计算传染风险,计算作为露点变化的函数的传播风险 并计算易感性风险作为相对湿度的函数。 该系统基于此产生传染性风险指标。 用于减轻传染病传播风险的系统的实施例,并且包括控制器,其被配置为选择作为传染性感染性的函数的较低湿度界限和作为传染活力或霉菌/真菌生长速率的函数的上限湿度。 控制器接收密封区域的湿度数据,并响应于接收到的湿度数据并根据选定的较低湿度界限和上限湿度范围向加湿单元发出控制信号。
    • 5. 发明授权
    • Ventilator control device
    • 呼吸机控制装置
    • US5857617A
    • 1999-01-12
    • US919591
    • 1997-08-12
    • Kuo-Liang Weng
    • Kuo-Liang Weng
    • F24F11/04F24F13/06F24F13/10
    • F24F11/04F24F13/06F24F11/0012F24F11/0015
    • A ventilator control device has a hollow lower seat, a hollow upper seat disposed on the hollow lower seat, and a block disk disposed between the hollow lower seat and the hollow upper seat. The hollow lower seat has a top flange and a top notch. A lower cushion surrounds the hollow lower seat and is blocked by the top flange. The upper seat has a bottom flange, a bottom notch, and a protrusion. An upper cushion surrounds the hollow upper seat and is blocked by the bottom flange. The block disk has an axle and an opposite block seat. The axle and the opposite block seat are arranged along an axis. A motor seat is inserted in the top notch. The motor seat receives a motor. The motor has a block inserted in the block seat. A controller is disposed on the hollow lower seat to control a rotation of the motor and a vibration of the block disk.
    • 呼吸机控制装置具有中空的下座,设置在中空的下座上的中空的上座,以及设置在中空的下座和中空的上座之间的块盘。 中空下座具有顶部法兰和顶部槽口。 下垫子围绕着中空的下座,被顶部法兰挡住。 上座具有底部凸缘,底部凹口和突起。 上垫圈围绕中空的上座,并被底法兰封闭。 块盘具有轴和相对的座座。 轴和相对的座座沿轴线布置。 电机座插入顶部槽口。 马达座接收马达。 电机有一块插入块座。 控制器设置在中空的下座上以控制电动机的旋转和块盘的振动。
    • 7. 发明授权
    • Thermal comfort controller
    • 热舒适控制器
    • US5737934A
    • 1998-04-14
    • US664012
    • 1996-06-12
    • Dipak J. Shah
    • Dipak J. Shah
    • G05D23/00F24F11/00G05D23/19G05D27/02F25B49/00B01F3/02
    • F24F11/0008G05D27/02F24F11/0015
    • A controller for a climate control system has a relative humidity sensor as well as a dry-bulb temperature sensor within the enclosure. The humidity value is used in conjunction with the dry-bulb temperature to generate an apparent temperature error signal which is a function of both the dry-bulb temperature and the relative humidity values. This permits robust control of both enclosure temperature and enclosure moisture content without abnormal cycling of the climate control system. Instead of using a sensor which directly measures the apparent temperature, the apparent temperature can be synthesized from the relative humidity and dry-bulb temperature within the enclosure. Alternately, the sensed and set point apparent temperature values can be synthesized from any two thermodynamic properties of the moist air within the enclosure.
    • 用于气候控制系统的控制器具有相对湿度传感器以及外壳内的干球温度传感器。 湿度值与干球温度一起使用,以产生与干球温度和相对湿度值两者的函数的表观温度误差信号。 这样可以对气温控制系统的外壳温度和外壳水分含量进行强大的控制,而不会出现异常循环。 代替使用直接测量表观温度的传感器,可以从外壳内的相对湿度和干球温度来合成表观温度。 或者,感测和设定点的表观温度值可以从外壳内的潮湿空气的任何两个热力学特性合成。
    • 9. 发明授权
    • Humidifier and method for humidifying air
    • 加湿器和加湿空气的方法
    • US5620503A
    • 1997-04-15
    • US681878
    • 1996-07-29
    • Thomas L. MillerJoseph M. Maceri
    • Thomas L. MillerJoseph M. Maceri
    • B01J19/32F24F6/14G05D22/02B01F3/04
    • B01J19/32F24F6/14G05D22/02B01J2219/32286F24F11/0015Y02B30/545Y10S261/34
    • A humidifier system includes a spray apparatus in a housing which sprays a mist of water droplets onto a mist eliminator to intercept the mist of water droplets. The mist of droplets is captured in a liquid phase by the mist eliminator and is substantially completely converted into a vapor phase in the form of increased humidity in the air stream. A humidity sensor located downstream of the mist eliminator senses the humidity of the stream of air. A controller controls the quantity of water sprayed in response to the humidity sensed to maintain a predetermined humidity in the humidified stream of air. A second humidifier includes a heater which creates a region of intense heat to instantaneously evaporate water mist directed thereon in a stream of air. In a third embodiment, water and pressurized air are simultaneously injected into a region of intense heat. The pressurized air rapidly expands within the region of intense heat and thereby adds energy to the system to ensure virtually complete evaporation of the water.
    • 加湿器系统包括在壳体中的喷雾装置,其将雾滴喷雾到除雾器上以拦截水滴雾。 通过除雾器将液滴雾液捕获在液相中,并且基本上完全转化成空气流中湿度增加形式的气相。 位于除雾器下游的湿度传感器感测空气流的湿度。 控制器控制响应于感测到的湿度喷洒的水量,以保持加湿的空气流中的预定湿度。 第二加湿器包括加热器,该加热器产生强烈热量的区域以瞬间蒸发在空气流中引导的水雾。 在第三实施例中,将水和加压空气同时注入强热区域。 加压空气在强热区域内快速膨胀,从而为系统增加能量,以确保几乎完全蒸发水分。