Oil shale reservoir pore testing significance and method - Database & Sql Blog Articles

Shale gas has increasingly been recognized as a promising unconventional natural gas resource in recent years. It has become one of the most closely watched energy sources globally, with large-scale exploration and testing projects being conducted across various regions in China. In March 2012, four key ministries jointly released the "12th Five-Year Plan" for shale gas development, aiming to reach an annual output of 6.5 billion cubic meters by 2015 and between 60 to 100 billion cubic meters by 2020. Oil shale is a unique type of reservoir, significantly different from conventional reservoirs. It typically exhibits ultra-low porosity and low permeability. The pore structure within oil shale is highly complex, with many nano-scale pores that play a crucial role in gas storage. A significant portion of the gas in oil shale exists in an adsorbed state. Understanding gas flow behavior and governing equations within these nanoscale pores is essential for future geological research. Nano-oil and gas are primarily found in source rock formations and tight reservoirs adjacent to them, including shale oil, shale gas, coalbed methane, tight sandstone oil, tight sandstone gas, and tight limestone oil. These reservoirs generally have pore throat diameters in the nanometer range. The study and testing of key parameters such as porosity, pore size distribution, and specific surface area in oil shale are vital for assessing gas content, understanding gas occurrence, and determining the potential for industrial exploration and development. The 3H-2000PS series automatic surface and pore analyzer, independently developed by Bethes Instrument Technology, uses a static volumetric measurement method and holds multiple technical patents. It features a specially designed sample tube for core testing, making it the only independent P0 test system in China. Widely adopted by research institutions and enterprises such as China University of Petroleum, Shanghai University, Beijing Institute of Technology, and Central South University, this instrument is highly regarded for its performance and reliability. The 3H-2000PS1 model offers excellent cost-performance, high precision, and efficient testing capabilities. It is specifically designed for analyzing core pore size, pore size distribution, and specific surface area. This instrument is particularly suitable for applications in shale gas, oil shale gas, mud shale, sandstone oil, sandstone gas, limestone oil, and coalbed methane. Its use in scientific research and industry plays a critical role in predicting shale gas reservoir reserves and supporting future energy exploration efforts.

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