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Utilizing electronic assisted enhancement:An innovative approach for studying the thermal decomposition and combustion of ionic liquids
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作者 Cailing Zhang Yutao Wang +5 位作者 Baiquan Chen Zhenguo Pang Hongqi Nie quan zhu Peijin Liu Wei He 《Defence Technology(防务技术)》 2025年第2期179-189,共11页
Flammable ionic liquids exhibit high conductivity and a broad electrochemical window,enabling the generation of combustible gases for combustion via electrochemical decomposition and thermal decomposition.This charact... Flammable ionic liquids exhibit high conductivity and a broad electrochemical window,enabling the generation of combustible gases for combustion via electrochemical decomposition and thermal decomposition.This characteristic holds significant implications in the realm of novel satellite propulsion.Introducing a fraction of the electrical energy into energetic ionic liquid fuels,the thermal decomposition process is facilitated by reducing the apparent activation energy required,and electrical energy can trigger the electrochemical decomposition of ionic liquids,presenting a promising approach to enhance combustion efficiency and energy release.This study applied an external voltage during the thermal decomposition of 1-ethyl-3-methylimidazole nitrate([EMIm]NO_(3)),revealing the effective alteration of the activation energy of[EMIm]NO_(3).The pyrolysis,electrochemical decomposition,and electron assisted enhancement products were identified through Thermogravimetry-Differential scanning calorimetry-Fourier transform infrared-Mass spectrometry(TG-DSC-FTIR-MS)and gas chromatography(GC)analyses,elucidating the degradation mechanism of[EMIm]NO_(3).Furthermore,an external voltage was introduced during the combustion of[EMIm]NO_(3),demonstrating the impact of voltage on the combustion process. 展开更多
关键词 Flammable ionic liquids Kinetic methods Electron assisted enhanced thermal decomposition Electron assisted enhanced combustion
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基于VWMC的传感器网络移动节点定位算法 被引量:4
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作者 黎大鹏 程良伦 quan zhu 《计算机工程与设计》 CSCD 北大核心 2010年第2期305-308,共4页
为了解决无线传感器网络移动节点定位精度低、计算方法复杂以及响应时间长的问题,提出了一种基于VWMC的传感器网络移动节点定位算法(VWMCL)。该算法利用MonteCarlo算法作为移动节点的基本定位算法,并在预测阶段加入航位推算方法,通过减... 为了解决无线传感器网络移动节点定位精度低、计算方法复杂以及响应时间长的问题,提出了一种基于VWMC的传感器网络移动节点定位算法(VWMCL)。该算法利用MonteCarlo算法作为移动节点的基本定位算法,并在预测阶段加入航位推算方法,通过减少预测角度的误差来提高粒子位置预测的精度;并把Voronoi图和权值融合在MCL算法的粒子过滤阶段,采用Voronoi图和权值的双重筛选的机制,提高粒子过滤的准确性。仿真结果表明,该算法可以显著改善定位精度,减少算法的计算量,从而提高定位的效率。 展开更多
关键词 无线传感器网络 移动节点定位 蒙特卡罗方法 沃罗诺伊图 航位推算
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