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OPTIMIZATION OF QUANTITATIVE WASTE VOLUME DETERMINATION TECHNIQUE FOR HANFORD WASTE TANK CLOSURE

机译:Hanford废箱封闭箱定量废物测定技术的优化

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The Hanford Site is currently in the process of an extensive effort to empty and close its radioactive single-shell and double-shell waste storage tanks. Before this can be accomplished, it is necessary to know how much residual material is left in a given waste tank and the uncertainty with which that volume is known. The Institute for Clean Energy Technology (ICET) at Mississippi State University is currently developing a quantitative in-tank imaging system based on Fourier Transform Profilometry, FTP. FTP is a non-contact, 3-D shape measurement technique. By projecting a fringe pattern onto a target surface and observing its deformation due to surface irregularities from a different view angle, FTP is capable of determining the height (depth) distribution (and hence volume distribution) of the target surface, thus reproducing the profile of the target accurately under a wide variety of conditions. Hence FTP has the potential to be utilized for quantitative determination of residual wastes within Hanford waste tanks. In this paper, efforts to characterize the accuracy and precision of quantitative volume determination using FTP and the use of these results to optimize the FTP system for deployment within Hanford waste tanks are described.
机译:Hanford网站目前正在进行广泛努力的过程,关闭其放射性单壳和双壳废液储罐。在这可以实现之前,有必要知道给定的废物箱中的残留物质和该体积已知的不确定性。密西西比州州立大学的清洁能源技术研究所(ICET)目前正在开发基于FTP的傅里叶变换轮廓测量系统的储水库成像系统。 FTP是一种非接触式3-D形测量技术。通过将条纹图案投影到目标表面上并由于从不同观点的表面不规则观察其变形,FTP能够确定目标表面的高度(深度)分布(和因此体积分布),从而再现目标在各种条件下准确。因此,FTP具有可用于定量测定Hanford废箱内残留废物的定量测定。在本文中,描述了使用FTP进行定量体积测定的精度和精度的努力,并使用这些结果来优化Hanford废箱内的FTP系统进行优化。

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