首页> 外文会议>The 2003 International Solar Energy Conference Mar 15-18, 2003 Kohala Coast, Hawall >SOLAR UPGRADING OF METHANOL - DRIVEN COMBINED CYCLE USING MIDDLE TEMPERATURE SOLAR COLLECTORS
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SOLAR UPGRADING OF METHANOL - DRIVEN COMBINED CYCLE USING MIDDLE TEMPERATURE SOLAR COLLECTORS

机译:利用中温太阳能集热器进行甲醇联合循环的太阳能升级。

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摘要

In this paper, we have proposed a novel solar - driven combined cycle with solar upgrading of methanol in middle temperature solar collectors, and investigated the effects of integration of solar thermal energy and methanol decomposition on the performance of the proposed cycle. The process of solar upgrading methanol is a catalytically endothermic decomposition reaction and proceeds in a range of 130 - 250℃. As a result, the proposed cycle has a breakthrough performance, with net solar - to - electric efficiency of 32.93% at the collector temperature of 220℃, and the turbine inlet temperature of 1062℃, superior to that of the present advanced cycle (REFOS of 20%). The exergy loss in indirect combustion of methanol proposed here is 7.5 percent points lower than that of the direct combustion. The optimum pressure ratio for thermal efficiency is approximately equal to 14. A key point emphasized here is that the proposed new cycle can utilize middle - temperature solar collector with lower cost. The promising results obtained here indicated that this novel solar - driven combined cycle could make a breakthrough in field of solar thermal power generation through integration of solar thermal energy and effective use of synthetic clean fuel.
机译:在本文中,我们提出了一种新型的太阳能驱动的联合循环,在中温太阳能集热器中对甲醇进行了太阳能升级,并研究了太阳能热能和甲醇分解的整合对所提出循环的性能的影响。太阳提质甲醇的过程是催化吸热分解反应,温度范围为130-250℃。结果,所提出的循环具有突破性的性能,在集热器温度为220℃时,太阳能对电的净效率为32.93%,涡轮机入口温度为1062℃,优于目前的先进循环(REFOS)。 20%)。这里提出的甲醇间接燃烧的火用损失比直接燃烧的火用损失低7.5个百分点。用于热效率的最佳压力比大约等于14。这里要强调的重点是,提出的新循环可以以较低的成本使用中温太阳能集热器。此处获得的令人鼓舞的结果表明,这种新型的太阳能驱动联合循环可以通过整合太阳能热能和有效利用合成清洁燃料,在太阳能热发电领域取得突破。

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