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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Turbomachine Design for Supercritical Carbon Dioxide Within the sCO2-HeRo.eu Project
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Turbomachine Design for Supercritical Carbon Dioxide Within the sCO2-HeRo.eu Project

机译:sCO2-HeRo.eu项目中超临界二氧化碳的涡轮机设计

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The paper aims to give an overview over the keystones of design of the turbomachine for a supercritical CO2 (sCO(2)) Brayton cycle. The described turbomachine is developed as part of a demonstration cycle on a laboratory scale with a low through flow. Therefore, the turbomachine is small and operates at high rotational speed. To give an overview on the development, the paper is divided into two parts regarding the aerodynamic and mechanical design. The aerodynamic design includes a detailed description on the steps from choosing an appropriate rotational speed to the design of the compressor impeller. For setting the rotational speed, the expected high windage losses are evaluated considering the reachable efficiencies of the compressor. The,final impeller design includes a description of the blading development together with the final geometry parameters and calculated performance. The mechanical analysis shows the important considerations for building a turbomachine with integrated design of the three major components: turbine, alternator, and compressor (TAC). It includes different manufacturing techniques of the impellers, the bearing strategy, the sealing components, and the cooling of the generator utilizing the compressor leakage. Concluding the final design of the TAC is shown and fixture work on the machine is introduced.
机译:本文旨在概述超临界CO2(sCO(2))布雷顿循环的透平机设计重点。所描述的涡轮机是作为演示循环的一部分在实验室规模开发的,具有低通流量。因此,涡轮机小并且以高转速运转。为了对开发进行概述,本文将空气动力学和机械设计分为两个部分。空气动力学设计包括从选择合适的转速到压缩机叶轮设计的各个步骤的详细说明。为了设定转速,考虑压缩机的可达到的效率来评估预期的高风阻损失。最终叶轮设计包括叶片发展的描述以及最终的几何参数和计算出的性能。力学分析显示了构建具有以下三个主要组件的集成设计的涡轮机的重要考虑因素:涡轮机,交流发电机和压缩机(TAC)。它包括叶轮的不同制造技术,轴承策略,密封组件以及利用压缩机泄漏对发电机的冷却。显示了TAC的最终设计,并介绍了机器上的固定装置工作。

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