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The influence of radiative-convective heat transfer on ignition of the drops of coal-water fuel

机译:辐射对流热传递对煤水燃料滴点的影响

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Simulation results are presented for thermal treatment and ignition of coal-water fuel drops under conditions of radiative-convective heating. The data demonstrate reasonbble compliance between theory and experiment for the integral parameter of ignition process -the delay time of ignition. The radiative component of heat transfer is significant for parameters and conditions of ignition. The increase in the fuel particle size makes this influence bigger. Prognostic potential was evaluated for differnet models of radiative heat tarnsfer. The delay time of ignition obtained from radiative heat transfer model "grey wall" is in good agreement with experimental data. Meanwhile, the method based on radiation diffusion approximation gives the simulation data for delay time much higher than experimental data. It is confirmed that while the process of inflammation of a coal-water particle, the key impotance belongs not to fuel-oxidizer reactions, but rather to a chain of heat treatment events, such as radiative-convective heating, water evaporation, and thermal decomposition of fuel.
机译:在辐射对流加热条件下,提出了仿真结果进行了热处理和煤水燃料点火的点火。数据证明了点火过程积分参数的理论与实验之间的原因依从性 - 点火延迟时间。热传递的辐射分量对于点火的参数和条件具有重要意义。燃料粒径的增加使得这影响更大。对辐射热Tarnsfer的不同模型评估了预后潜力。从辐射传热模型“灰色墙”获得的点火延迟时间与实验数据很好。同时,基于辐射扩散近似的方法使延迟时间远高于实验数据的模拟数据。得到了虽然燃煤颗粒炎症的过程,关键缺乏不属于燃料氧化剂反应,而是加入热处理事件的链条,例如辐射对流加热,水蒸发和热分解燃料。

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