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Experimental Study on Seepage Rule of Gas under the Condition of Non Isothermal

机译:非等温条件下气体渗流规律的试验研究

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Through the experiment of seepage flux of coal sample gas measuring under different temperature, the affecting factors of seepage flux are studied, seepage rule of coal sample gas is obtained concerning temperature condition, the basis of coal seam gas mining of injection of heat and rising temperature is provided. Based on the existing experimental devices of coal sample under the condition of three-dimensional stresses, the temperature controlling system is added, the seepage flux is measured under different combining conditions of temperature, confining pressure and axial pressure, pore pressure. Under the same conditions of confining pressure and axial pressure, and pore pressure, seepage flux of coal gas decrease as the temperature increasing when in the isothermal desorption; seepage flux of coal gas increased significantly than sorption and desorption at 20℃ when in the calefactive desorption, the sorption at 20℃ and desorption at temperature increased to 40℃. In the calefactive and isothermal conditions, seepage flux shows nonlinear incremental relationship along with pore pressure increasing. After coal sample heated, heated expansion of solid coal and endothermal expansion of gas are two important factors of affecting seepage flux of gas; in the process of mining coal seam gas, intermittent injection of heat mining is more propitious than continuous injection of heat mining to outputs of coal seam gas.
机译:通过在不同温度下测量煤样气的渗流通量的实验,研究了渗气通量的影响因素,得出了煤样气的渗流规律,涉及温度条件,注入热量和升温的煤层气开采基础。提供。基于现有煤样品在三维应力条件下的实验装置,增加了温度控制系统,在温度,围压和轴向压力,孔隙压力的不同组合条件下测量了渗流。在等温解吸条件下,在相同的围压,轴向压力和孔隙压力条件下,煤气的渗透通量随着温度的升高而减小。钙热解吸过程中,煤气的渗流通量比20℃下的吸附和解吸显着增加,在20℃下的吸附和在40℃下的解吸增加。在发热量和等温条件下,渗流通量与孔隙压力的增加呈非线性增量关系。煤样加热后,固体煤的热膨胀和气体的内热膨胀是影响气体渗流的两个重要因素。在开采煤层气的过程中,对煤层气的产出而言,间歇性注入热能开采比连续注入热能开采更有利。

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