id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
iogr-1370	Ma, Xueling; Zou, Lu; Yang, Zhanrong; Hou, Tong; Li, Weirong; Lin, Keze; Yi, Hongliang; Liu, Zhilong	Hydrogen Storage Optimization in the T Gas Field Numerical Simulation Insights from the Ordos Basin: DOI: 10.14800/IOGR.1370	2025	19	.pdf	application/pdf	6670	363	47	At a temperature of 298 K, when the pressure increases from 0.6 MPa to 16 MPa, the density of hydrogen gas rises from 0.5 kg/m³ to 12 kg/m³. At 30 MPa, as the temperature increases from 313 K to 373 K, the density of H₂ only decreases from 20 kg/m³ to 16 kg/m³. The viscosity of hydrogen gas is minimally influenced by temperature and pressure, as depicted in Figure 3(b). Improved Oil and Gas Recovery 6 The diffusion coefficient of hydrogen gas is significantly affected by temperature and pressure, depending on the diffusion medium type, as shown in Figure 4.	cache/iogr-1370.pdf	txt/iogr-1370.txt
