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Relaxation of Protons in Pores in a Sandstone

机译:砂岩孔隙中质子的弛豫

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摘要

Proton nuclear magnetic spin-spin relaxation time distributions (T_2 distributions) for a water-saturated cylinder of sandstone (radius 6.5 cm and length 17.55 cm) have been studied as a function of drying time. By freezing the sample to -13.7 ℃, a proportionality constant of 38.8% μsm was determined that can be used to relate pore size to T_2. The results show external water cannot enter some intermediate sized pores of 400 nm diameter; however, these pores are available to water that has been frozen and allowed to thaw. On drying from saturation, water loss commences immediately from pores of the order of 1000 nm and greater and there is a lag period of 51 h before the smaller pores begin to drain. On freezing and then thawing, intermediate sized pores are filled because the large pores are blocked by ice.
机译:研究了水饱和的砂岩圆柱体(半径6.5 cm,长度17.55 cm)的质子核磁自旋自旋弛豫时间分布(T_2分布)与干燥时间的关系。通过将样品冷冻至-13.7℃,确定了38.8%μs/ nm的比例常数,可用于将孔径与T_2相关联。结果表明,外部水不能进入直径为400 nm的一些中等大小的孔中。但是,这些孔可用于已被冷冻并融化的水。从饱和状态干燥后,水分的流失立即从1000 nm或更大的孔开始,并且在较小的孔开始流失之前有51 h的滞后时间。冷冻然后解冻时,由于大孔被冰堵住,中等大小的孔被填充。

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