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多功能融合智能化高压变量活塞电机泵马达的能量回收特性分析
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作者 袁云朋 高殿荣 +1 位作者 庄鑫 田自杰 《机床与液压》 北大核心 2024年第11期74-79,共6页
为研究海水淡化的能量回收效率问题,采用AMESim软件对电机泵马达的液压系统进行整体仿真,研究在输入不同转速下的电机泵马达的流量特性及能量回收率。为验证仿真结果的准确性,建立电机泵马达测试试验台,将试验结果与仿真结果进行对比。... 为研究海水淡化的能量回收效率问题,采用AMESim软件对电机泵马达的液压系统进行整体仿真,研究在输入不同转速下的电机泵马达的流量特性及能量回收率。为验证仿真结果的准确性,建立电机泵马达测试试验台,将试验结果与仿真结果进行对比。结果表明:在生产等量淡水的情况下,带有马达能量回收的装置相较于不带马达功率回收的装置节能效果更明显,且适当提高转速能够增加节能效果;由于试验过程产生泄漏,使得泵与马达侧的试验流量低于仿真流量,但随着电机转速的提升,泵侧流量的差值逐渐增大,而马达侧的流量差值逐渐降低;在额定转速1 500 r/min的工况下,马达能量回收装置的能效利用率达到了95%以上。 展开更多
关键词 电机泵马达 海水淡化 能量回收装置 AMESIM 能效利用率
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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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