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    • 27. 发明授权
    • End treatments and transitions for water-ballasted protection barrier arrays
    • 结束治疗和过渡水球保护屏障阵列
    • US09133591B2
    • 2015-09-15
    • US14270348
    • 2014-05-05
    • Geoffrey B. MausFelipe AlmanzaJeremy Smith
    • Geoffrey B. MausFelipe AlmanzaJeremy Smith
    • E01F15/08E01F15/14
    • E01F15/145E01F13/00E01F15/08E01F15/086E01F15/088E01F15/143E01F15/146
    • An end treatment array for crash attenuation includes a transition barrier module formed of side walls, end walls, a top wall, and a bottom wall, wherein the module walls together define an enclosed interior space. The end treatment array further includes a containment impact sled having an axially extending frame. The frame has a width sufficient to contain the transition barrier module within the frame when in an assembled configuration, and has an axial length which is at least one-half the length of the transition barrier module. The frame defines an interior volume, the purpose of which is to contain a substantial portion of the transition barrier module in the assembled configuration, and to contain debris caused by destruction of the plastic barrier modules in a vehicular impact. The containment impact sled is attached to the transition barrier module.
    • 用于碰撞衰减的端部处理阵列包括由侧壁,端壁,顶壁和底壁形成的过渡障碍模块,其中模块壁一起限定封闭的内部空间。 末端处理阵列还包括具有轴向延伸框架的容纳冲击滑板。 框架具有足够的宽度,以便在组装的构型中容纳框架内的过渡障碍模块,并且其轴向长度至少为过渡障碍模块的长度的一半。 框架限定了内部容积,其目的是在组装的构造中容纳过渡阻挡模块的大部分,并且包含在车辆冲击中破坏塑料阻挡组件造成的碎屑。 安全壳冲击滑板连接到过渡障碍模块。
    • 28. 发明申请
    • Suitcase and desk combination device
    • 手提箱和办公桌组合装置
    • US20070007094A1
    • 2007-01-11
    • US11177661
    • 2005-07-11
    • Jeremy Smith
    • Jeremy Smith
    • A47B3/10A45F3/00
    • A45C9/00A45C5/14A47B85/06
    • A suitcase and desk combination device includes a housing that has a bottom wall, a top wall and a peripheral wall that is attached to and extends between the top and bottom walls. The peripheral wall has a break therein and that defines an opening for accessing an interior of the housing. The bottom wall has a bottom edge, a top edge, a first lateral edge and a second lateral edge. The bottom wall is substantially planar. Each of a plurality of legs extends into the top wall. Each of the legs has a free end and each of the legs is selectively telescoping so that the free ends may be selectively positionable in a stored position adjacent to the top wall or in an extended position extending away from the top wall.
    • 手提箱和桌子组合装置包括具有底壁,顶壁和附接到顶壁和底壁之间并在其之间延伸的周壁的壳体。 周壁在其中具有断裂并且限定了用于接近壳体内部的开口。 底壁具有底部边缘,顶部边缘,第一侧边缘和第二横向边缘。 底壁基本上是平面的。 多个腿中的每一个延伸到顶壁中。 每个腿部具有自由端,并且每个腿部选择性地伸缩,使得自由端可以选择性地定位在与顶壁相邻的存储位置中或在远离顶壁延伸的延伸位置。
    • 30. 发明申请
    • Measurement and monitoring system of daily stock and plant
    • 日常库存和植物测量监测系统
    • US20060041400A1
    • 2006-02-23
    • US10517440
    • 2003-05-26
    • Ross NilsonGraeme ThomsonCampbell ForrestJeremy Smith
    • Ross NilsonGraeme ThomsonCampbell ForrestJeremy Smith
    • A01J5/007A01J5/01G01F1/56G01N27/10
    • G01N33/04A01J5/0133G01N27/08
    • A measurement sensor where a mixed solution enters a manifold (1) and is separated in an entry chamber (2) by a whirlpool and/or setting effect. An accumulation chamber (3) and outflow (4) positioned in the lower peripheral of the entry chamber (2) causes the separated solution to preferentially flow to a sensing tube (6) with surface to sectional area dimensions optimised for high frequency electric field measurement of solution parameters used to determine capacitance and conductivity. Overflow of mixed solution enters (5) similar sensing tubes (7), for mixed flow measurements used to determine mass and flow rate. The number and size of the overflow tubes (7) give minimal head loss through the manifold. Solution is recombined in an exit chamber (10) that causes fluid dynamic restrictions (8) to extend solution residence time in measurement tube (6) before exiting the manifold (11). Also disclosed is measurement of a fluid parameter by improving the measurement sensitivity by at least partially canceling the effect of dielectric properties of the containment wall through which the parameter is sensed, and a method for determining plant performance using stored performance profiles.
    • 一种测量传感器,其中混合溶液进入歧管(1)并通过漩涡和/或设定效果在入口室(2)中分离。 定位在进入室(2)的下周边的积聚室(3)和流出物(4)使得分离的溶液优先流向感测管(6),其具有针对高频电场测量而优化的面积与面积尺寸 的溶液参数用于确定电容和电导率。 混合溶液的溢流进入(5)类似的传感管(7),用于确定质量和流速的混合流量测量。 溢流管(7)的数量和尺寸通过歧管给予最小的头部损失。 在离开歧管(11)之前,溶液在出口室(10)中重新组合,其导致流体动力学限制(8)延伸在测量管(6)中的溶液停留时间。 还公开了通过至少部分地抵消感测参数的容纳壁的介电特性的影响来提高测量灵敏度来测量流体参数,以及使用存储的性能曲线来确定设备性能的方法。