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高能量利用率太阳辐射模拟光学系统设计
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作者 孟凡琳 苏拾 +4 位作者 张国玉 张健 刘石 孙高飞 彭浩文 《光子学报》 EI CAS CSCD 北大核心 2021年第12期130-139,共10页
针对以往大型太阳模拟器结构复杂、能量利用率低、均匀性较差等的不足,提出了高能量利用率太阳辐射模拟光学系统设计方法。基于真实氙灯光源的发光特性设计椭球聚光镜,通过添加球面反光镜,利用组合聚光系统提高能量利用率,依据光瞳匹配... 针对以往大型太阳模拟器结构复杂、能量利用率低、均匀性较差等的不足,提出了高能量利用率太阳辐射模拟光学系统设计方法。基于真实氙灯光源的发光特性设计椭球聚光镜,通过添加球面反光镜,利用组合聚光系统提高能量利用率,依据光瞳匹配原则设计光学积分器,利用边缘消杂光法提高辐照均匀性。仿真分析可知:组合聚光系统比单个椭球聚光镜能量利用率提高21.2%,利用边缘消杂光法比边缘补偿法辐照均匀性提高4%。实验结果表明:工作距离20 m,辐照面直径Φ2 m时,最大辐照度为1363.1 W·m^(−2),辐照不均匀度为±4.5%,实现大面积、高能量利用率的太阳光辐射模拟,为航天领域太阳敏感器地面半物理仿真与测试提供有效手段。 展开更多
关键词 太阳辐射模拟 高能量利用率 大面积 组合聚光系统 边缘消杂光法
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Effects of working parameters on gasoline engine exergy balance 被引量:9
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作者 LIU Jing-ping FU Jian-qin +1 位作者 FENG Ren-hua ZHU Guo-hui 《Journal of Central South University》 SCIE EI CAS 2013年第7期1938-1946,共9页
To improve the energy utilization efficiency of internal combustion (IC) engine, exergy analysis was conducted on a passenger car gasoline engine. According to the thermodynamic theory of IC engine, in-cylinder exer... To improve the energy utilization efficiency of internal combustion (IC) engine, exergy analysis was conducted on a passenger car gasoline engine. According to the thermodynamic theory of IC engine, in-cylinder exergy balance model was built. The working processes of gasoline engine were simulated by using the GT-power. In this way, the required parameters were calculated and then gasoline engine exergy balance was obtained by programming on computer. On this basis, the influences of various parameters on exergy balance were analyzed. Results show that, the proportions of various forms of exergy in gasoline engine from high to low are irreversible loss, effective work, exhaust gas exergy and heat transfer exergy. Effective exergy proportion fluctuates with cylinder volumetric efficiency at full load, while it always increases with break mean effective pressure (BMEP) at part load. Exhaust gas exergy proportion is more sensitive to speed, and it increases with speed increasing except at the highest speed. The lower proportion of heat transfer exergy appears at high speed and high load. Irreversible loss is mainly influenced by load. At part load, higher BMEP results in lower proportion of irreversible loss; at full load, the proportion of irreversible loss changes little except at the highest speed. 展开更多
关键词 gasoline engine exergy balance waste heat recovery thermal efficiency energy conservation
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