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    • 1. 发明授权
    • Microcomputer real-time flash x-ray controller for data acquisition
    • 微电脑实时闪光X射线控制器,用于数据采集
    • US4999793A
    • 1991-03-12
    • US322596
    • 1989-03-13
    • Philip M. VincentAlbert L. ChangIvan A. Martorell
    • Philip M. VincentAlbert L. ChangIvan A. Martorell
    • G04F13/02
    • G04F13/02
    • A microcomputer-based real-time flash x-ray controller, which completely eliminates the "guesswork" in capturing projectiles on radiographs. The microcomputer measures the projectile velocity with high precision, calculates the correct delays in real-time and sends out appropriate triggering pulses to activate the x-ray tubes, arbitrarily arranged along the projectile flight path, to capture the projectile on radiographs at desired locations. The system imposes virtually no restrictions on x-ray tube locations downrange. It is software driven, user friendly and fully programmable for various ballistic range set-ups and it can be easily adapted to synchronize the time-critical controls of other equipment such as high speed cameras, target instrumentations, and the like. The use of a personal computer, centralizes the range operations as equipment control and experiment record-keeping become an integral task.
    • 一种基于微机的实时闪光X射线控制器,完全消除了在射线照相中捕获射弹的“猜测”。 微型计算机以高精度测量射弹速度,实时计算正确的延迟,并发出适当的触发脉冲,激活沿着射弹飞行路径任意布置的X射线管,以在所需位置的射线照片上捕获射弹。 该系统对X射线管位置几乎没有限制。 它是软件驱动,用户友好和完全可编程的各种弹道设置,它可以轻松适应同步其他设备,如高速摄像机,目标仪器等的时间关键控制。 使用个人计算机,将范围操作集中起来,作为设备控制和实验记录保持成为一项不可或缺的任务。
    • 4. 发明申请
    • Plasma gasification reactor
    • 等离子气化反应器
    • US20100199556A1
    • 2010-08-12
    • US12378166
    • 2009-02-11
    • Shyam V. DigheMark F. DarrIvan A. MartorellPieter van NieropAleksandr GorodetskyRichard Dale Bower
    • Shyam V. DigheMark F. DarrIvan A. MartorellPieter van NieropAleksandr GorodetskyRichard Dale Bower
    • C10J3/18
    • C10J3/18C10J3/30C10J2200/152C10J2300/0916C10J2300/093C10J2300/0946C10J2300/1238
    • A plasma gasification reactor vessel having a top section with a conical wall extending up from a bottom section, containing a carbonaceous bed into which plasma is injected by plasma torches, to a roof of the vessel is arranged in ways that can contribute to characteristics of gas flow and solids residence time that are favorable for thoroughness of reactions and yield of useful reactions products. In some cases, such a conical wall is combined in arrangements with other features such as one or more feed ports arranged to give more uniform distribution including examples with a feed port that has a distributive feed mechanism. The roof of the vessel, in some examples, has vertical outlet ports that include intrusions into the interior volume of the reactor proximate the conical wall of the top section. The configurations of outlet ports with intrusions and the configurations of feed ports for more uniform distribution of feed material are also applicable to reactor vessels with other geometries.
    • 等离子体气化反应器容器具有顶部,该顶部具有从底部向上延伸的锥形壁,该底部包含通过等离子体喷枪将等离子体注入到其中的碳质床到容器的顶部,其方式可以有助于气体的特性 流动和固体停留时间,有利于反应的完全性和有用的反应产物的产率。 在一些情况下,这样的锥形壁与其它特征(例如一个或多个进料口)组合,其布置成给出更均匀的分布,包括具有具有分配进料机构的进料口的实例。 在一些示例中,容器的顶部具有垂直的出口端口,其包括在顶部的锥形壁附近侵入反应器的内部容积。 具有入侵的出口端口的结构和用于进料均匀分布的进料口的结构也适用于具有其它几何形状的反应器容器。
    • 8. 发明授权
    • Plasma gasification reactor
    • 等离子气化反应器
    • US09222038B2
    • 2015-12-29
    • US12378184
    • 2009-02-11
    • Shyam V. DigheMark F. DarrIvan A. MartorellPieter van NieropAleksandr GorodetskyRichard Dale Bower
    • Shyam V. DigheMark F. DarrIvan A. MartorellPieter van NieropAleksandr GorodetskyRichard Dale Bower
    • C10J3/18
    • C10J3/18C10J2200/152C10J2300/0916C10J2300/093C10J2300/0946C10J2300/1238
    • A plasma gasification reactor vessel having a top section with a conical wall extending up from a bottom section, containing a carbonaceous bed into which plasma is injected by plasma torches, to a roof of the vessel is arranged in ways that can contribute to characteristics of gas flow and solids residence time that are favorable for thoroughness of reactions and yield of useful reactions products. In some cases, such a conical wall is combined in arrangements with other features such as one or more feed ports arranged to give more uniform distribution including examples with a feed port that has a distributive feed mechanism. The roof of the vessel, in some examples, has vertical outlet ports that include intrusions into the interior volume of the reactor proximate the conical wall of the top section. The configurations of outlet ports with intrusions and the configurations of feed ports for more uniform distribution of feed material are also applicable to reactor vessels with other geometries.
    • 等离子体气化反应器容器具有顶部,该顶部具有从底部向上延伸的锥形壁,该底部包含通过等离子体喷枪将等离子体注入到其中的碳质床到容器的顶部,其方式可以有助于气体的特性 流动和固体停留时间,有利于反应的完全性和有用的反应产物的产率。 在一些情况下,这样的锥形壁与其它特征(例如一个或多个进料口)组合,其布置成给出更均匀的分布,包括具有具有分配进料机构的进料口的实例。 在一些示例中,容器的顶部具有垂直的出口端口,其包括在顶部的锥形壁附近侵入反应器的内部容积。 具有入侵的出口端口的结构和用于进料均匀分布的进料口的结构也适用于具有其它几何形状的反应器容器。