The temperature distribution, density and gas yield of the biomass fuel bed were obtained by numerical simulation.
通过数值模拟,得出了燃料层热解过程中的温度场的分布、层内固体密度的变化以及气体的生成规律。
The process of fire spread from the lowest point of a slope to the maximum acceleration instant was simulated in a fuel bed.
同时,在燃料床上进行模拟实验,测取了林火自水平燃料床进入倾斜燃料床后的火蔓延速度和加速度。
The updraft gasifier achieves the highest efficiecy as the hot gas passes through fuel bed and leaves the gasifier at low temperature.
气化炉的上升气流,实现了作为最高 efficiecy热气体穿过燃料床和叶在低温气化炉。
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