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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >Measurement of spatial distribution of total and accessible porosity in sedimentary rocks using isotopic radiation transmission: device design and testing.
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Measurement of spatial distribution of total and accessible porosity in sedimentary rocks using isotopic radiation transmission: device design and testing.

机译:使用同位素辐射传输测量沉积岩中总孔隙度和可及孔隙度的空间分布:设备设计和测试。

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摘要

An isotopic radiation transmission technique for quantifying the spatial distribution of porosity in sedimentary rocks is presented. A device was designed and constructed to examine rock samples of volumes sufficiently large for studying solute migration in rocks, so that a one-millimeter spatial resolution is attained with measurement acquisition time of one point per second. The paper demonstrates how the device was optimized for these specifications, while abiding by the restrictions implicit in the utilization of the exponential law of radiation attenuation to quantify physical parameters. Total porosity was obtained from measurements of radiation attenuation in dry samples, while solute-accessible porosity was determined from measurements with samples saturated with either KNO(3) or KI solutions. Results are presented for three different rock types to demonstrate the capabilities and limitations of the technique.
机译:提出了一种同位素辐射透射技术,用于定量化沉积岩孔隙度的空间分布。设计并构造了一种设备,用于检查体积足够大的岩石样品,以研究岩石中的溶质运移,从而以每秒1点的测量采集时间获得1毫米的空间分辨率。本文演示了如何针对这些规格对设备进行优化,同时遵守在利用辐射衰减指数定律量化物理参数时隐含的限制。总孔隙度是通过测量干燥样品中的辐射衰减获得的,而溶质可访问的孔隙度是通过用KNO(3)或KI溶液饱和的样品的测量确定的。给出了三种不同岩石类型的结果,以证明该技术的功能和局限性。

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