| 1. | A controller of proton exchange membrane fuel cell stack 一种质子交换膜燃料电池电堆控制器 |
| 2. | Detachment - integration proton exchange membrane fuel cell stack 质子交换膜燃料电池分体式集成电堆 |
| 3. | Heat transport dynamic model of proton exchange membrane fuel cell stack 质子交换膜燃料电池电堆动态热传输模型 |
| 4. | Control of pem fuel cell stacks based on affine thermal models 基于仿射热模型的质子交换膜燃料电池电堆的热管理控制 |
| 5. | A study of modeling and control of proton exchange membrane fuel cell stack systems 质子交换膜燃料电池电堆系统建模与控制研究 |
| 6. | Detecting individual cell voltages in fuel cell stacks based on the optical isolator method 基于光电隔离继电器的燃料电池堆单片电压检测系统的设计 |
| 7. | The key point lays on the technology of fuel cell stack . on the basis of accumulation in mcfc experimentation , some technology will be more easily transplanted on sofc 燃料电池堆技术是燃料电池发电站的关键技术,在mcfc积累的运行经验能够比较容易地移植到sofc 。 |
| 8. | A dynamical model of h2 fuel cell stack with water balance is developed in this paper for studying steady and dynamical performances of proton exchange membrane ( pem ) fuel cell stacks 摘要提出和建立了包含水平衡的氢燃料电池堆的动态模型,用于研究质子交换膜( pem )燃料电池堆的静、动态性能。 |
| 9. | The fuel cells models are presented in chapter 3 . based on the balance conditions in fuel cells stack , the dynamic performance is analyzed . the dynamic model is developed with a set of correlation equations of voltage , fuel utilization , current density and other variables involved in the operating course , which are some partial differential equations with variable coefficients 第三章以熔融碳酸盐燃料电池为例,以数值分析的方法,根据mcfc电堆发电过程中物质与电量平衡,分析了电堆的内部动态特性,就输出电压与燃料气体利用率和电流密度等相关量建立了由一组变系数偏微分方程和积分方程描述的数学模型。 |
| 10. | Studying the heat - mass transfer and multi - spices electric - chemical reaction , a dynamic temperature model was deduced for molten - carbonate fuel cell stack . the thermal radiation , shift reaction , and the change of gas spices were considered in this model . establishing momentum equation , the paper has developed a 3d temperature and flow fields model for mcfc stack based on cfd technique 建立了熔融碳酸盐燃料电池堆内部单体的暂态温度模型,并考虑了电堆的辐射换热、转换反应、反应气体组分变化对温度场的影响;根据mcfc的微分控制方程组,考虑气体组分的热力学性质及动量变化的影响,利用数值分析方法求解熔融碳酸盐燃料电池堆的三维流场与温度场,分析了各作用因素对熔融碳酸盐燃料电池堆温度分布的影响机制。 |