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Robust design and optimisation of a radial turbine within a supercritical CO2 solar Brayton Cycle

机译:超临界CO2太阳布雷顿循环内径向涡轮的鲁棒设计和优化

摘要

The generation of solar thermal power is dependent upon the amount of sunlight exposure,as influenced by the day-night cycle and seasonal variations. In this paper, robust optimisation is applied to the design of a power block and turbine, which is generating 30 MWe from a concentrated solar resource of 560oC. The robust approach is important to attain a high average performance (minimum efficiency change) over the expected operating ranges of temperature, speed and mass flow. The final objective function combines the turbine performance and efficiency weighted by the off-design performance. The resulting robust optimisation methodology as presented in the paper gives further information that greatly aids in the design of non-classical power blocks through considering off-design conditions and resultant performance.
机译:太阳热能的产生取决于日夜暴露量,受日夜周期和季节变化的影响。在本文中,鲁棒性优化被应用于动力块和涡轮机的设计,该动力块和涡轮机从560oC的集中太阳能中产生30 MWe。鲁棒的方法对于在温度,速度和质量流量的预期工作范围内获得较高的平均性能(最小效率变化)非常重要。最终目标函数将涡轮机性能和效率(由非设计性能加权)结合在一起。如本文所述,最终的鲁棒优化方法提供了进一步的信息,可通过考虑非设计条件和最终性能来极大地帮助设计非经典电源模块。

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