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Non-intrusive, three-dimensional temperature and composition measurements inside fluid cells in microgravity using a confocal holography microscope

机译:使用共聚焦全息显微镜在微重力下对流体池内部进行非侵入式三维温度和成分测量

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摘要

Application of a confocal scanning laser holography (CSLH) microscope to the study of fluid flow in a microgravity environment is described herein. This microscope offers a new, non-intrusive means to determine three-dimensional density gradients within solid objects, fluids, and plasmas, including flames. The index-of-refraction is determined from the phase measurements of the microscope, which is a function of the object temperature and composition. The object being studied is a fluid-cell chamber, which is heated and cooled on opposing walls to produce a steady-state fluid flow due to convection and heat transfer. The holograms are created from the interference of a "known" reference beam with an "unknown" object beam. A three-dimensional amplitude and phase image of the object is produced by the reconstruction of many holograms, where each hologram represents a scanned point inside the object.
机译:本文描述了共聚焦扫描激光全息术(CSLH)显微镜在微重力环境中研究流体流动的应用。该显微镜提供了一种新的,非侵入性的方法,可以确定固体物体,流体和等离子体(包括火焰)中的三维密度梯度。折射率是根据显微镜的相位测量值确定的,该值是物体温度和成分的函数。研究的对象是一个流体室,该室在对置的壁上进行加热和冷却,以产生对流和传热的稳态流体流。全息图是由“已知”参考光束与“未知”物体光束的干涉产生的。通过重建许多全息图,可以生成物体的三维幅度和相位图像,其中每个全息图都代表物体内部的扫描点。

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