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基于微热管阵列的太阳能温差发电系统优化 被引量:4
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作者 王立舒 文竞晨 +3 位作者 王锦锋 刘勃 乔帅翔 马云飞 《农业工程学报》 EI CAS CSCD 北大核心 2019年第22期251-256,共6页
温差发电技术因为具有无噪音、无污染物排放、体积小、质量轻等优点,是当今社会能源利用的科学研究热点,但其输出功率过低,传热效果较差仍是很大的问题。该文将微热管应用于低温下的太阳能温差发电中,对温差发电的系统设计进行优化,对... 温差发电技术因为具有无噪音、无污染物排放、体积小、质量轻等优点,是当今社会能源利用的科学研究热点,但其输出功率过低,传热效果较差仍是很大的问题。该文将微热管应用于低温下的太阳能温差发电中,对温差发电的系统设计进行优化,对其光热输出功率、热电输出功率较低的问题进行改善,通过采用PLC的双轴跟踪和黑铬镀金膜,将太阳能吸热能力提高了5.32%,同时在传热与散热过程中采用液态金属填充硅脂,让微热管阵列在太阳能温差发电传热过程中减少热损失,让光热平均的输出功率提升2.21%,在热电转换过程中,通过采用变长式电导增量法的MPPT,改善功率输出不稳定,精准度不高的问题,总体的光电输出功率可达到28.32 W,较之前相比光电输出功率提高了5.19%,通过对太阳能温差发电系统的追踪优化和传热结构的改善,完善了光伏板在农业上的应用。 展开更多
关键词 太阳能 发电 光热输出功率 热电输出功率 液态金属填充型硅脂 微热管阵列 MPPT PLC
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A thermodynamics comparison of subcritical and transcritical organic Rankine cycle system for power generation
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作者 朱家玲 薄华宇 +2 位作者 李太禄 胡开永 刘克涛 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3641-3649,共9页
A comparison on subcritical and transcritical organic Rankine cycle(ORC) system with a heat source of 110 ℃ geothermal water was presented. The net power output, thermal and exergy efficiencies and the products of ... A comparison on subcritical and transcritical organic Rankine cycle(ORC) system with a heat source of 110 ℃ geothermal water was presented. The net power output, thermal and exergy efficiencies and the products of the heat transfer coefficient(U) and the total heat exchange area(A)(UA values) were calculated for parametric optimization. Nine candidate working fluids were investigated and compared. Under the given conditions, transcritical systems have higher net power outputs than subcritical ones. The highest net power output of transcritical systems is 18.63 k W obtained by R218, and that of subcritical systems is 13.57 k W obtained by R600 a. Moreover, with the increase of evaporating pressure, the thermal and exergy efficiencies of transcritical systems increase at first and then decrease, but the efficiencies of subcritical ones increase. As a result, the efficiencies of transcritical systems cannot always outperform those of the subcritical ones. However, the subcritical systems have lower minimum UA values and lower expansion ratios than the transcritical ones at the maximum net power output. In addition, the transcritical cycles have higher expansion ratios than the subcritical ones at their maximum net power output. 展开更多
关键词 organic Rankine cycle low temperature heat source parametric optimization
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