首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference;AJK2011 >DEVELOPING TRACER PARTICLES FOR X-RAY PARTICLE TRACKING VELOCIMETRY
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DEVELOPING TRACER PARTICLES FOR X-RAY PARTICLE TRACKING VELOCIMETRY

机译:开发用于X射线粒子示踪测速的示踪剂粒子

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X-ray imaging, as a noninvasive flow visualization technique, has been shown to be a useful method for observing and characterizing multiphase flows. One type of X-ray flow visualization technique, called X-ray Particle Tracking Velocimetry (XPTV), tracks an X-ray attenuating particle in an opaque fluid flow. A significant challenge with XPTV is identifying tracer particles with the desired fluid flow characteristics (e.g., small and neutrally buoyant) but yet differentially attenuate X-rays, which is based primarily on density differences. This paper describes the manufacturing of XPTV tracer particles that satisfy specific particle characteristics including high X-ray attenuation, uniform shape, specified effective density, and desired diameter. An example use of these particles as an intruder particle in a fluidized bed (to simulate biomass injection) is then demonstrated using X-ray stereographic imaging to determine intruder particle position as a function of time in a three-dimensional opaque system.
机译:X射线成像作为一种非侵入性流动可视化技术,已被证明是用于观察和表征多相流动的有用方法。一种称为X射线粒子跟踪测速(XPTV)的X射线流可视化技术可在不透明的流体流中跟踪X射线衰减粒子。 XPTV面临的一项重大挑战是要鉴定出具有所需流体流动特性(例如,小而中性的浮力)但又能以不同的方式衰减X射线的示踪剂颗粒,这主要是基于密度差异。本文介绍了满足特定颗粒特征(包括高X射线衰减,均匀形状,指定有效密度和所需直径)的XPTV示踪剂颗粒的制造方法。然后使用X射线立体成像技术确定这些颗粒作为流化床中入侵者颗粒(模拟生物质注入)的示例用途,以确定三维时间不透明系统中随时间变化的入侵者颗粒位置。

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