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    • 3. 发明授权
    • Multi-phase separation method
    • 多相分离法
    • US08080166B2
    • 2011-12-20
    • US12573773
    • 2009-10-05
    • Wayne W. Spani
    • Wayne W. Spani
    • C02F1/20
    • B01D45/02B01D1/16B01D1/305B01D3/10B01D5/0006B01D5/0054B01D5/006B01D17/045B01D21/0012B01D53/002B01D2257/704B01D2257/708C02F1/001C02F1/04C02F1/20C02F2101/322C02F2103/06C02F2301/063Y10S210/05
    • A multiphase separation system utilized to remove contaminants from fluids includes a pre-filtering module for filtering a contaminated fluid to provide a filtered contaminated fluid. A condenser module receives the filtered contaminated fluid and a contaminated gas phase for condensing the contaminated gas phase to a contaminated liquid. A phase reaction chamber converts the filtered contaminated fluid to a contaminated mist wherein the mist is subjected to a low energy, high vacuum environment for providing a first change of phase by separating into a contaminated gas phase and a liquid mist phase. The contaminated gas phase is carried out of the phase reaction chamber by a carrier air. A vacuum pump provides the low energy, high vacuum environment in the phase reaction chamber and delivers the contaminated gas phase to the condenser module for condensation providing a second change of phase.
    • 用于从流体中除去污染物的多相分离系统包括用于过滤污染流体以提供过滤的污染流体的预过滤模块。 冷凝器模块接收经过滤的污染流体和污染气相,用于将污染的气相冷凝至受污染的液体。 相反应室将过滤的污染流体转化为污染的雾,其中雾经受低能量,高真空环境,以通过分离成污染气相和液相相提供相位的第一变化。 被污染的气相通过载体空气从相位反应室中进行。 真空泵在相位反应室中提供低能量,高真空环境,并将污染的气相输送到冷凝器模块进行冷凝,提供相位的第二次变化。
    • 4. 发明授权
    • Two-phase fire suppression/protection method and system for structures
and surrounding grounds
    • 两相灭火/保护方法及结构及周边地面系统
    • US5931233A
    • 1999-08-03
    • US995865
    • 1997-12-19
    • Paul La BonteWayne W. Spani
    • Paul La BonteWayne W. Spani
    • A62C2/08A62C3/02A62C37/40
    • A62C3/0214A62C2/08A62C3/0271A62C3/0292A62C37/40
    • A two-phase fire suppression/protection method and system for structures and surrounding grounds includes a Phase1 and a Phase2. Phase1 is initiated first when a plurality of parabolic microphone sensors placed at the perimeter of the grounds surrounding the structure detect sound associated with an advancing wildfire. The parabolic microphone sensors provide a first signal to a system control unit which determines if a wildfire is advancing toward the structure. If a wildfire is identified, a filter and pumping system provides chemically treated water necessary to activate a plurality of parabolic volumetric distribution units located on the surrounding grounds. The distribution units generate a dome of high pressure cool air which encapsulates the structures and surrounding grounds for impeding the approach of the wildfire. Phase1 also employs a set of fog jet nozzles which atomize water under high pressure to produce a cool fog dispersion pattern which provides complete wide-area wetting and is sufficient to create, by air displacement, a high pressure envelope surrounding the structure. This pressure envelope eliminates the differential in pressure that often leads to an inrush of hot air and burning debris into the structure. Phase2 is initiated as the approaching flames are detected by additional sensors including smoke/particulate, thermal, and infrared sensors. Phase2 employs a set of spiral jet nozzles which are intended to create a dispersion that deluges the entire surface area of the structure with water. Water can be drawn from utility lines or from a secondary raw water source.
    • 结构和周围地面的两相灭火/保护方法和系统包括Phase1和Phase2。 当设置在围绕结构的地面的周边的多个抛物面麦克风传感器检测与前进的野火相关联的声音时,首先启动阶段1。 抛物面麦克风传感器向系统控制单元提供第一信号,该系统控制单元确定野火是否向着结构前进。 如果识别到野火,则过滤器和泵送系统提供激活位于周围地面上的多个抛物线体积分配单元所需的化学处理水。 分配单元产生高压冷空气的圆顶,其包围结构和周围的地面以阻止野火的进入。 Phase1还采用一套喷雾喷嘴,它们在高压下雾化水分,产生一个冷雾分散图形,它能提供完全的广域润湿,并且足以通过空气位移产生围绕结构的高压包络。 该压力包络消除了压力差异,这通常会导致热空气涌入并将碎屑燃烧到结构中。 当接近的火焰被包括烟雾/微粒,热和红外传感器的附加传感器检测到时,阶段2开始。 Phase2采用一组螺旋喷嘴,这些喷嘴旨在产生一种分散体,该分散体用水将结构的整个表面积缩小。 水可以从公用事业线或二次生水源抽取。
    • 6. 发明申请
    • Personal Monitoring And Emergency Communications System And Method
    • 个人监控和应急通信系统与方法
    • US20160093197A1
    • 2016-03-31
    • US14499087
    • 2014-09-27
    • Rosalie O. SeeWayne W. Spani
    • Rosalie O. SeeWayne W. Spani
    • G08B25/01G08B25/10
    • G08B25/016G08B25/10
    • A personal monitoring and emergency communications system including a wrist worn apparatus carried by a monitored person for minimizing response time during an emergency and including an array of sensors for periodically sensing vital biometric parameters of the monitored person, a memory for storing and comparing the sensed parameters to a pre-stored standard range of the vital parameters for providing a comparator signal, an alarm circuit for evaluating the comparator signal for providing an emergency alarm signal when the vital parameters are not within the pre-stored standard range, and a signal transmitter for providing activation, encoding and immediate broadcasting of the alarm signal from the wrist worn apparatus to a dispatcher call center via a communication link, the alarm signal including the vital parameters and exact location of the monitored person, the dispatcher call center communicating with a medical response team closest to the monitored person.
    • 一种个人监视和应急通信系统,包括由受监控人携带的腕部佩戴装置,用于在紧急情况期间最小化响应时间,并且包括用于周期性地感测所监视人的重要生物特征参数的传感器阵列;用于存储和比较所感测参数的存储器 提供用于提供比较器信号的重要参数的预先存储的标准范围;报警电路,用于在重要参数不在预先存储的标准范围内时评估用于提供紧急报警信号的比较器信号;以及信号发射器 提供通过通信链路将报警信号从腕部磨损装置激活,编码和立即广播到调度员呼叫中心,该报警信号包括监视人员的重要参数和确切位置,调度员呼叫中心与医疗响应进行通信 最接近被监视人的小组。
    • 7. 发明授权
    • Multi-phase separation system
    • 多相分离系统
    • US07163636B2
    • 2007-01-16
    • US11208316
    • 2005-08-19
    • Wayne W. Spani
    • Wayne W. Spani
    • C02F1/20
    • B01D45/02B01D1/16B01D1/305B01D3/10B01D5/0006B01D5/0054B01D5/006B01D17/045B01D21/0012B01D53/002B01D2257/704B01D2257/708C02F1/001C02F1/04C02F1/20C02F2101/322C02F2103/06C02F2301/063Y10S210/05
    • A multi-phase separation system utilized to remove contaminants from fluids includes a pre-filtering module for filtering a contaminated fluid to provide a filtered contaminated fluid. A condenser module receives the filtered contaminated fluid and a contaminated gas phase for condensing the contaminated gas phase to a contaminated liquid. A phase reaction chamber converts the filtered contaminated fluid to a contaminated mist wherein the mist is subjected to a low energy, high vacuum environment for providing a first change of phase by separating into a contaminated gas phase and a liquid mist phase. The contaminated gas phase is carried out of the phase reaction chamber by a carrier air. A vacuum pump provides the low energy, high vacuum environment in the phase reaction chamber and delivers the contaminated gas phase to the condenser module for condensation providing a second change of phase.
    • 用于从流体中去除污染物的多相分离系统包括用于过滤污染流体以提供过滤的污染流体的预过滤模块。 冷凝器模块接收经过滤的污染流体和污染气相,用于将污染的气相冷凝至受污染的液体。 相反应室将过滤的污染流体转化为污染的雾,其中雾经受低能量,高真空环境,以通过分离成污染气相和液相相提供相位的第一变化。 被污染的气相通过载体空气从相位反应室中进行。 真空泵在相位反应室中提供低能量,高真空环境,并将污染的气相输送到冷凝器模块进行冷凝,提供相位的第二次变化。
    • 9. 发明申请
    • Construction de-watering high-volume, multi-separation system and method
    • 施工脱水大容量,多分离系统和方法
    • US20130105370A1
    • 2013-05-02
    • US13661012
    • 2012-10-25
    • Wayne W. Spani
    • Wayne W. Spani
    • B01D36/00
    • B01D36/00B01D36/02B01D37/04
    • A construction de-watering high volume multi-separation system for use in removing a fluid medium from a construction site including a mechanical subsystem and a programmable computer control subsystem where the mechanical subsystem includes a high volume inlet for injecting a fluid medium, a chemical metering pump for injecting engineered chemicals into the fluid medium for separating a plurality of targeted compounds and controlling the pH level of the fluid medium, a multi-separation unit including a continuous loop conveyor for capturing sediment and floating contamination in the fluid medium, the programmable computer control subsystem arranged for continuously monitoring and comparing sensed parameters from the mechanical subsystem with pre-programmed input data, generating correction signals fed back to the mechanical subsystem for maintaining the sensed parameters within limitations, and for continuously adjusting and reporting in real time to a regulatory authority the operation of the mechanical subsystem.
    • 一种用于从包括机械子系统和可编程计算机控制子系统的施工现场去除流体介质的建筑脱水大容量多分离系统,其中机械子系统包括用于注入流体介质的大体积入口,化学计量 泵,用于将工程化学品注入到流体介质中,用于分离多种目标化合物并控制流体介质的pH水平;多分离单元,包括用于捕获流体介质中的沉淀物和漂浮污染的连续循环输送器,可编程计算机 控制子系统,用于连续地监测和比较来自机械子系统的感测参数与预编程的输入数据,产生反馈到机械子系统的校正信号,以将感测参数保持在限制内,以及实时连续调整和报告监管 授权操作 在机械子系统上。
    • 10. 发明申请
    • PROGRAMMABLE FLUID TREATMENT SYSTEM AND METHOD
    • 可编程流体处理系统和方法
    • US20130062288A1
    • 2013-03-14
    • US13610800
    • 2012-09-11
    • Wayne W. Spani
    • Wayne W. Spani
    • B01D21/30E02B15/00C02F1/66C02F1/00
    • C02F1/008B01D21/0084B01D21/305B01D21/32B01D21/34C02F1/24C02F2209/05C02F2209/06E03F5/14
    • A programmable fluid treatment system including a mechanical subsystem and a computer control subsystem where the mechanical subsystem includes a fluid collection sump for capturing a fluid medium, a chemical mixing tank for injecting engineered chemicals into the fluid medium for separating a plurality of targeted compounds, an air flotation tank for creating a floating agglomeration of targeted compounds and engineered chemicals for mechanical removal, the computer control subsystem including a control unit for continuously monitoring a plurality of sensed parameters, a computer for continuously to comparing the sensed parameters with pre-programmed input data for continuously generating correction signals fed back to the mechanical subsystem via the control unit for maintaining the sensed parameters within limitations set by regulation, and for continuously adjusting and realtime reporting to regulators, the operation of the mechanical subsystem including the engineered chemicals in accordance with a dynamic concentration of the is targeted compounds.
    • 一种包括机械子系统和计算机控制子系统的可编程流体处理系统,其中机械子系统包括用于捕获流体介质的流体收集池,用于将工程化学品注入流体介质以分离多种目标化合物的化学混合罐, 用于产生用于机械去除的目标化合物和工程化学品的浮动聚集的空气浮选槽,所述计算机控制子系统包括用于连续监测多个感测参数的控制单元,用于连续地将感测参数与预编程输入数据进行比较的计算机 用于通过控制单元连续产生反馈到机械子系统的校正信号,以将感测参数保持在通过调节设定的限制内,并且用于连续调整和实时向调节器报告,机械子系统的运行包括工程化学品 按照目标化合物的动态浓度。