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Numerical Study on the Underground Coal Gasification for Inclined Seams

机译:倾斜煤层地下煤气化的数值研究

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According to the characteristics for combustion and gasification reactions occurring in the gasification gallery,the mathematical functional relationship between the chemical reaction rate and every influencing factor is studied.The dynamic nonlinear coupling mathematical models on underground coal gasification of inclined seams are established.The determination methods of major model parameters are introduced.Additionally,the control volume method is adopted to find the numerical solution to the mathematical models.The patterns of development and variation for temperature field,concentration field and pressure field in gasification panel are studied.On the basis of the model test,calculation results are analyzed.From the distribution of temperature field,its calculation value is a little higher than the experimental one,with the relative error of every measuring point virtually within 17%.Research shows that,the experiment value of gas heat value and calculated value take on a good conformity;due to the influence of temperature,in the high temperature zone,the change gradient of the experiment value for concentration field of gas compositions is greater than that of the calculation value.The simulated results indicate that the relative error of the pressure field calculation is 4.13%-12.69% and 8.25%-17.47%,respectively,7 h and 45 h after the ignition.The drop rate for the fluid pressure is 6.01% and 10.91%,respectively.Research shows that the simulated values conform with experimental values comparatively well,which demonstrates that the numerical simulation on the "three fields" in underground coal gasification is correct.
机译:根据气化通道内发生的燃烧和气化反应的特点,研究了化学反应速率与各影响因素之间的数学函数关系,建立了倾斜煤层地下气化的动态非线性耦合数学模型。确定方法介绍了主要模型参数的确定方法。此外,采用控制量法寻找数学模型的数值解。研究了气化板温度场,浓度场和压力场的发展变化规律。从温度场的分布来看,其计算值略高于实验值,每个测量点的相对误差均在17%以内。研究表明,天然气的实验值热值和计算值具有良好的一致性均匀性;由于温度的影响,在高温区,气体成分浓度场实验值的变化梯度大于计算值。模拟结果表明,压力场计算的相对误差较大。点火后7 h和45 h分别为4.13%-12.69%和8.25%-17.47%。流体压力的下降率分别为6.01%和10.91%。研究表明,模拟值与实验值相符比较好,说明地下煤气化“三个场”的数值模拟是正确的。

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