Based on the results, analyses of mechanisms of the flame spread across solid fuel surfaces in various ambient pressures were suggested in this paper.
在上述实验结果基础上,本文对热薄固体燃料表面在不同环境压力下的火焰传播机理进行了分析。
The ground experimental studies on flame spread across solid fuel surface were conducted under various ambient pressures.
本文在地面环境和不同环境压力下,对热薄燃料表面的火焰传播进行了实验研究。
The preparation method solves the problems that the preparation process of the traditional direct flame type solid oxide fuel battery pack is complex and has high cost.
它解决了现有直接火焰型固体氧化物燃料电池组的制备过程复杂,并且成本高的问题。
The simulation of flame spread over thin solid fuel under microgravity with narrow channel was analyzed with dimesion theory and validated experimentally by using flame spread picture recording.
对微重力下薄燃料表面逆风火焰传播的地面窄通道模拟,进行了量纲分析,并通过火焰传播图像记录进行了实验验证。
The flame fuel battery comprises anode catalyzing layer, anode layer, solid electrolyte layer and cathode layer.
火焰燃料电池依次由阳极催化层、阳极层、固体电解质层和阴极层组成。
The flame fuel battery comprises anode catalyzing layer, anode layer, solid electrolyte layer and cathode layer.
火焰燃料电池依次由阳极催化层、阳极层、固体电解质层和阴极层组成。
应用推荐