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IMPROVED μ-SCALE TURBINE EXPANDER FOR ENERGY RECOVERY

机译:用于能量回收的改进型μ比例涡轮膨胀机

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Micro power converters for energy recovery are increasingly important for a number of future applications. The Austrian Institute of Technology (AIT) is presently developing an innovative μ-scale turbine expander for work recovery in transcritical CO_2 heat pumps. The main drawback of a lower COP (coefficient of performance) of transcritical CO_2 heat pumps compared to conventional heat pump systems can be compensated by utilizing the pressure difference between the high pressure and low pressure part of the pump for work recovery. Work recovery can be realized by substituting the expansion valve between the high and low pressure side by a Pelton turbine with specific two phase flow turbine blades. In order to increase the power output, the generator was integrated into the turbine to reduce the friction losses and hence increase the overall efficiency. An important aspect is that the generator is directly connected with the high pressure part of the turbine. One part of the project is the optimization of the turbine geometry via simulation tools. The paper will give an overview about our microturbine development as well as a comparison of the power output of each turbine generation. Furthermore the present paper discusses a concept that utilizes our microturbine together with a micro combustion module that enables a micro power generator with very high power-to-weight ratios based on green fuels.
机译:对于许多未来的应用来说,用于能量回收的微功率转换器变得越来越重要。奥地利技术学院(AIT)目前正在开发一种创新的μ级涡轮膨胀机,用于跨临界CO_2热泵中的工作回收。与传统的热泵系统相比,跨临界CO_2热泵的COP(性能系数)较低的主要缺点可以通过利用泵的高压部分与低压部分之间的压差来进行功回收来弥补。可以通过用具有特定的两相流涡轮叶片的Pelton涡轮代替高压侧和低压侧之间的膨胀阀来实现工作恢复。为了增加功率输出,将发电机集成到涡轮中以减少摩擦损失,从而提高整体效率。一个重要方面是发电机直接与涡轮机的高压部分连接。该项目的一部分是通过仿真工具优化涡轮的几何形状。本文将概述我们的微型涡轮机的发展,以及每个涡轮机一代的功率输出的比较。此外,本文讨论了利用我们的微型涡轮机和微型燃烧模块的概念,该模块使基于绿色燃料的微型发电机具有很高的功率重量比。

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