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首页> 外文期刊>IEEE Transactions on Nuclear Science >Effect of Gamma-Ray Energy on Image Quality in Passive Gamma Emission Tomography of Spent Nuclear Fuel
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Effect of Gamma-Ray Energy on Image Quality in Passive Gamma Emission Tomography of Spent Nuclear Fuel

机译:乏核燃料被动伽马发射层析成像中伽马射线能量对图像质量的影响

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摘要

Gamma-ray images of VVER-440 and SVEA-96 spent nuclear fuel assemblies were reconstructed using the filtered backprojection algorithm from measurements with a passive gamma emission tomography prototype instrument at Finnish nuclear power plants. Image quality evaluation criteria based on line profiles through the reconstructed image are used to evaluate image quality for spent fuel assemblies with different cooling times, and thus different mixtures of gamma-ray emitting isotopes. Image characteristics at the locations of water channels and central fuel pins are compared in two gamma-ray energy windows, 600-700 and >700keV, for cooling times up to 10 years for SVEA-96 fuel and 24.5 years for VVER-440 fuel. For SVEA-96 fuel, images in the >700-keV gamma-ray energy window present better water-to-fuel contrast for all investigated cooling times. For VVER-440, images in the >700-keV gamma-ray energy window have higher water-to-fuel contrast up to and including a cooling time of 18.5 years, whereas the water-to-fuel contrast of the images taken in the two gamma-ray energy windows is equivalent for a cooling time of 24.5 years. Images reconstructed from higher energy gamma rays such as those in the >700-keV energy window present better water-to-fuel contrast in fuel cooled for up to 20 years and thus have the most potential for missing fuel pin detection.
机译:VVER-440和SVEA-96乏核燃料组件的伽玛射线图像是使用过滤后投影算法从芬兰核电厂的无源伽玛射线发射层析成像原型仪器的测量结果中重建的。基于通过重建图像的线轮廓的图像质量评估标准可用于评估具有不同冷却时间的无用燃料组件的图像质量,从而可评估发射伽马射线同位素的不同混合物。在两个伽马射线能量窗口(600-700和> 700keV)中比较了水道和中央燃料销钉位置的图像特性,SVEA-96燃料的冷却时间长达10年,VVER-440燃料的冷却时间高达24.5年。对于SVEA-96燃料,在所有研究的冷却时间中,大于700keV的伽马射线能量窗口中的图像呈现出更好的水燃料对比。对于VVER-440,> 700keV伽马射线能量窗口中的图像在冷却时间为18.5年(含)的情况下具有更高的水燃料对比度,而在VVER-440伽马射线能量窗口中,图像的水燃料对比度更高两个伽马射线能量窗口等效于24.5年的冷却时间。从高能伽马射线重建的图像(例如> 700keV能量窗口中的图像)在长达20年的冷却后的燃料中具有更好的水燃料对比度,因此最有可能丢失燃料销。

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