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机械热能储存和回收 - 高性能涡轮机械设计的一个实例.pdf

机械热能储存和回收 - 高性能涡轮机械设计的一个实例.pdf

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Mechanical/Thermal Energy Storage Recovery –A Case for High Performance Turbomachinery Design 2020 Thermal, Mechanical, and Chemical Energy Storage (TMCES) Workshop 2/4/2020 Louis M. Larosiliere Elliott Group The world turns to Elliott Message • Turbomachines and turbomachinery systems are a key element in many energy storage schemes, and improvements in their performance and functionality have a direct link to techno-economic viability. • A wide array of turbomachinery aero/mechanical arrangements can potentially enable practical realization of various energy storage thermodynamic cycles. • Leveraging systems-level integrated thermodynamic cycle optimization coupled with turbomachinery topological design synthesis methods and practices from turbomachinery OEMs, may lead to significant advancements. • Energy storage RD programs should not only focus on “off-the-shelf” turbomachinery components, but also motivate the development of novel and improved turbomachinery architectures for maximum system benefit. And the wheel keeps turning - innovative turbomachinery designs matter to a reduced-carbon energy supply chain! The world turns to Elliott Backdrop: Energy Storage Turbomachinery Performance The world turns to Elliott Variety of Grid-Scale Storage Solutions: Off-the-shelf or “Clean Sheet” Turbomachinery? Weeks/ Turbomachinery Centric Month Power-to-Fuels/Chemicals BESS – Battery Energy Storage System ETES – Electro-Thermal Energy Storage e MOSAS – Molten Salt Energy Storage

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