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Calculation of Thermodynamically Efficient Law of Variation of Velocity of Liquid Piston during Compression in Second Stage of Volumetric Hybrid Piston Power Machine | SpringerLink
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Figure 6 from An Approach to Reduce the Flow Requirement for a Liquid Piston Air Compressor / Exander in a Compressed Air Energy Storage System ( Caes ) | Semantic Scholar
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Schematic of the compressor with liquid piston and porous mesh for the... | Download Scientific Diagram
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Energies | Free Full-Text | Experiments on Air Compression with an Isothermal Piston for Energy Storage
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PDF] An approach to reduce the flow requirement for a liquid piston near-isothermal air compressor/expander in a compressed air energy storage system | Semantic Scholar
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Optimal trajectories for a liquid piston compressor/expander in a Compressed Air Energy Storage system with consideration of hea
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![Figure 6 from An Approach to Reduce the Flow Requirement for a Liquid Piston Air Compressor / Exander in a Compressed Air Energy Storage System ( Caes ) | Semantic Scholar Figure 6 from An Approach to Reduce the Flow Requirement for a Liquid Piston Air Compressor / Exander in a Compressed Air Energy Storage System ( Caes ) | Semantic Scholar](https://d3i71xaburhd42.cloudfront.net/8a1341ebfb83fa26a4d6bffb86607dc3174ad036/2-Figure2-1.png)
Figure 6 from An Approach to Reduce the Flow Requirement for a Liquid Piston Air Compressor / Exander in a Compressed Air Energy Storage System ( Caes ) | Semantic Scholar
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