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Rapid estimate of solid volume in large tuff cores using a gas pycnometer

机译:使用气体比重瓶快速估算大凝灰岩芯中的固体体积

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摘要

A thermally-insulated, rigid-volume gas pycnometer system has been developed. The pycnometer chambers have been machined from solid PVC cylinders. Two chambers confine dry high-purity helium at different pressure. A thick-walled design ensures minimal heat exchange with the surrounding environment and a constant volume system, while expansion takes place between the chambers. The internal energy of the gas is assumed constant over the expansion. The ideal gas law is used to estimate the volume of solid material sealed in one of the chambers. Temperature is monitored continuously, and incorporated into the calculation of solid volume. Temperature variation between measurements is less than 0.1 °C. The data are used to compute grain density for oven dried Apache Leap tuff core samples. The measured volume of solid and the sample bulk volume are used to estimate porosity and bulk density. Intrinsic permeability was estimated from the porosity and measured pore surface area, and is compared to in-situ measurements by the air-permeability method. The gas pycnometer accommodates large core samples (0.25 m length x 0.11 m diameter), and can measure solid volume greater than 220 cm³ with less than 1% error.
机译:已经开发出绝热的容积式气体比重瓶系统。比重瓶腔室由实心PVC圆柱体制成。两个腔室在不同压力下限制了干燥的高纯氦气。厚壁设计可确保与周围环境和恒定体积的系统进行最少的热交换,同时在腔室之间进行膨胀。假定气体的内部能量在膨胀时恒定。理想气体定律用于估算密封在其中一个腔室中的固体材料的体积。连续监测温度,并将其纳入固体体积的计算中。测量之间的温度变化小于0.1°C。数据用于计算烘干的Apache Leap凝灰岩芯样品的颗粒密度。测得的固体体积和样品总体积用于估算孔隙率和总密度。根据孔隙率和测得的孔表面积估算本征渗透率,并通过空气渗透率方法与原位测量结果进行比较。气体比重瓶可容纳较大的岩心样品(长度为0.25 m x直径为0.11 m),并且可以测量大于220cm³的固体体积,误差小于1%。

著录项

  • 作者

    Geddis A. M.;

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  • 年度 1996
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  • 原文格式 PDF
  • 正文语种 en
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