๐ Hybrid Wind-Solar-Compressed Air Energy Storage: A Step Toward Reliable Green Energy
In recent years, wind and solar power have grown rapidly, especially in response to the energy crisis in China ⚡. While these renewable sources are vital for a sustainable future, their fluctuating and intermittent nature often creates challenges for power grid management ⚠️.
To overcome these issues, researchers have proposed a novel hybrid Wind-Solar-Compressed Air Energy Storage (WS-CAES) system ๐☀️๐จ. This innovative system not only stores unstable wind and solar energy but also delivers a stable supply of electricity and hot water.
✨ What makes the WS-CAES system unique?
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✅ Stable Output: Smooths fluctuations of renewable energy.
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✅ Efficient Utilization: Combined with the Organic Rankine Cycle (ORC), it achieves cascade energy use at different quality levels.
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✅ High Performance:
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Electric storage efficiency: 87.7%
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Round-trip efficiency: 61.2%
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Exergy efficiency: 65.4%
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๐ Key Insights from the Analysis
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Ambient temperature ๐ก️ rise → decreases system performance.
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Turbine inlet temperature ๐ฅ rise → improves performance.
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Turbine inlet pressure ⚙️ → requires a trade-off between system efficiency and energy storage density.
By combining energy, exergy, and parametric sensitivity analysis, the WS-CAES system demonstrates great potential in addressing renewable energy challenges. It marks an important step toward a more reliable, efficient, and sustainable energy future ๐ฑ.
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