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探究“氢氧化钠溶液和二氧化碳气体反应”的定量趣味实验 被引量:1
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作者 朱红杰 李德前 《教育与装备研究》 2016年第11期65-67,共3页
为直观显示"氢氧化钠溶液和二氧化碳气体发生了化学反应",借鉴已有的趣味实验装置,通过比较氢氧化钠溶液中溶剂水的体积与压入密闭容器内填充物的体积,很容易得出预期的实验结论。该定量实验—操作简便、现象明显、数据直观、结论可靠。
关键词 氢氧化钠溶液 二氧化碳气体 气体发生反应 定量趣味实验
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Conceptual Design for a Kerosene Fuel-rich Gas-generator of a Turbopump-fed Liquid Rocket Engine 被引量:3
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作者 Min Son Jaye Koo +1 位作者 Won Kook Cho Eun Seok Lee 《Journal of Thermal Science》 SCIE EI CAS CSCD 2012年第5期428-434,共7页
A design method for a kerosene fuel-rich gas-generator of a liquid rocket engine using turbopumps to supply propellant was performed at a conceptual level. The gas-generator creates hot gases, enabling the turbine to ... A design method for a kerosene fuel-rich gas-generator of a liquid rocket engine using turbopumps to supply propellant was performed at a conceptual level. The gas-generator creates hot gases, enabling the turbine to operate the turbopumps. A chemical non-equilibrium analysis and a droplet vaporization model were used for the estimation of the burnt gas properties and characteristic chamber length. A premixed counter-flow flame analysis was performed for the prediction of the burnt gas properties, namely the temperature, the specific heat ratio and heat capacity, and the chemical reaction time. To predict the vaporization time, the Spalding model, using a single droplet in convective condition, was used. The minimum residence time in the chamber and the characteristic length were calculated by adding the reaction time and the vaporization time. Using the characteristic length, the design methods for the fuel-rich gas-generator were established. Finally, a parametric study was achieved for the effects of the O/F ratio, mass flow rate, chamber pressure, initial droplet temperature, initial droplet diameter and initial droplet velocity. 展开更多
关键词 Liquid rocket engine Conceptual design Fuel-rich gas-generator Sensitivity analysis
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