会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 依法登记的发明
    • Magnetic particle separator
    • USH2238H1
    • 2010-05-04
    • US11879520
    • 2007-06-26
    • George A. Andrews, Jr.William P. Adams
    • George A. Andrews, Jr.William P. Adams
    • B01D35/06
    • A process for separating entrained particles from a medium is provided. The medium flows into an intake port, through a separation region and out an exit port. The process includes disposing a separation region between the intake and outlet ports and positioning a magnet having north and south poles at opposite ends of the separation region. For orientation, the ports are disposed along a flow axis, and the opposite ends are disposed parallel to a pole axis transverse to the flow axis. The method operates by the magnet applying Lorenz force on the particles having one of positive and negative charges away from the separation region, wherein the particles avoid the outlet port without obstructing through the separation region. Similarly, a device for separating the particles is similarly described. In addition, the method and device further include a chamber being disposed adjacent to the separation region to collect the particles. In particular, the chamber can represent a first chamber disposed between the separation region and the south pole to collect the particles having positive charge, and a second chamber disposed between the separation region and the north pole to collect the particles having negative charge.
    • 3. 发明授权
    • Sampling system for moving fluid
    • 移动流体采样系统
    • US07111521B1
    • 2006-09-26
    • US11134603
    • 2005-05-19
    • George A. Andrews, Jr.
    • George A. Andrews, Jr.
    • G01N1/00
    • G01N1/2247G01N1/2273G01N2001/225
    • A system for sampling a moving fluid utilizes a housing in the shape of an airfoil having a leading edge adapted to be disposed in the moving fluid such that the moving fluid will initially encounter the leading edge. A fluid flow pathway extends through the airfoil. One or more sampling ports are formed in the airfoil on the airfoil's high pressure side. Each sampling port is in fluid communication with the fluid flow pathway. The system can also have one or more control ports formed on the low pressure side of the airfoil. Each control port is in fluid communication with the fluid flow pathway. The housing can be mounted to experience two rotational degrees of freedom, and can have an aerodynamic tail assembly coupled thereto.
    • 用于采样运动流体的系统利用具有适于设置在移动流体中的前缘的翼型形状的壳体,使得移动流体将首先遇到前缘。 流体流动通道延伸通过翼型件。 在翼型件的高压侧的翼型件中形成一个或多个取样口。 每个采样口与流体流动通道流体连通。 该系统还可以具有形成在翼型的低压侧的一个或多个控制端口。 每个控制端口与流体流动通道流体连通。 壳体可以被安装以经历两个旋转自由度,并且可以具有联接到其上的空气动力学尾部组件。
    • 4. 发明授权
    • Bernoulli mushroom inlet housing for efficient air sampling
    • 伯努利蘑菇入口壳体,用于高效空气取样
    • US07954390B1
    • 2011-06-07
    • US11789127
    • 2007-04-16
    • George A. Andrews, Jr.Bryan D. StelmokRobert M. KinterWilliam P. Adams
    • George A. Andrews, Jr.Bryan D. StelmokRobert M. KinterWilliam P. Adams
    • G01N1/00
    • G01N1/2247G01N1/2273G01N2001/225
    • A collection apparatus is provided for receiving a portion of a medium that flows around the apparatus and directing the portion into a collector. The apparatus includes an axisymmetric streamline receiver and a support member. The streamline receiver includes a chamber as well as at least one opening into the chamber that receives the portion. The support member includes an axisymmetric conduit for directing the portion from the chamber towards the collector. An alternate apparatus includes a streamline receiver, a support member and a tail stabilizer. The receiver includes upper and lower members that form leading and trailing edges to define a chord. Along an exterior surface, one or both of the members provide at least one opening that receives the portion. The support member has a conduit that directs the portion from the opening towards the collector. The tail stabilizer is secured to the streamline receiver to orient the leading edge into the medium.
    • 提供收集装置,用于接收围绕该装置流动的介质的一部分并将该部分引导到收集器中。 该装置包括轴对称流线接收器和支撑构件。 流线接收器包括腔室以及容纳该部分的至少一个进入腔室的开口。 支撑构件包括用于将部分从腔室引导到收集器的轴对称管道。 一种替代装置包括流线接收器,支撑构件和尾部稳定器。 接收器包括形成前缘和后缘以形成和弦的上部和下部构件。 沿着外表面,一个或两个构件提供容纳该部分的至少一个开口。 支撑构件具有将该开口部分朝向收集器引导的导管。 尾部稳定器固定到流线接收器以将前缘定向到介质中。
    • 5. 发明授权
    • Method of sensor disposition
    • 传感器配置方法
    • US07895021B1
    • 2011-02-22
    • US11820038
    • 2007-06-12
    • George A. Andrews, Jr.
    • George A. Andrews, Jr.
    • G06F7/60G06G7/48
    • G06N3/126
    • A process is provided for disposing a sensor in an environment for optimally obtaining characteristic measurements. The process includes modeling covariant sets of environment elements that correspond to conditions of the environment and of sensor elements that correspond to characteristic functionalities of the sensor. The process further includes covariantly coupling the environmental elements with the sensor elements to produce a third set of configuration elements; and combining the configuration elements to obtain a fitness function parameter. The process may additionally include adjusting the environment elements and the sensor elements; repeating operations for covariantly coupling and combining until obtaining the fitness function parameter over a defined region of the environment within a set of fitness function parameters. Also, the process may include determining an extreme value within the set of fitness function parameters, which may also include optimizing the fitness function parameter as an optimum value with a genetic algorithm over the set of fitness function parameters.
    • 提供了一种用于将传感器布置在环境中用于最佳获得特征测量的过程。 该过程包括对应于环境条件和对应于传感器的特征功能的传感器元件的协变量的环境元素建模。 该方法还包括将环境元件与传感器元件共同耦合以产生第三组配置元件; 并组合配置元素以获得适应度函数参数。 该过程可以另外包括调整环境元件和传感器元件; 重复相互协调和组合的操作,直到在一组适应度函数参数中在环境的确定区域上获得适应度函数参数。 此外,该过程可以包括确定适合度函数参数集合内的极值,其也可以包括使用适合度函数参数集合上的遗传算法优化适应度函数参数作为最佳值。