taiyangnews 10月14日 21:19
Hydrostor A-CAES:创新的压缩空气储能技术
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Hydrostor Inc.凭借其先进压缩空气储能系统(A-CAES)荣获The smarter E AWARD 2025。与传统CAES不同,该系统利用水柱调节和维持气压,并可独立运行或与可再生能源系统集成。在能源过剩时,空气被压缩并储存在充满水的地下岩洞中,产生的热量被回收利用。需要时,水通过重力回流,推动空气驱动涡轮发电。Hydrostor的A-CAES系统具有高可扩展性、占地面积小、长储能时间、零排放以及超过50年的使用寿命等优点。目前,该系统已在美国、加拿大和澳大利亚投入运营,总计1.2 GW,并有7 GW项目正在开发中。

💧 **创新储能机制:** Hydrostor的A-CAES系统采用独特的水柱设计,用于调节和维持压缩空气的压力,克服了传统CAES系统在压力控制上的局限性。当有盈余能源时,压缩空气被泵入地下岩洞,空气膨胀时会将水挤压至一个蓄水池,实现高效的能量储存。

♻️ **高效热量回收与零排放:** A-CAES系统在压缩空气的过程中会产生热量,这些热量被提取并储存起来,在能量需求时用于空气的再膨胀过程,极大地提高了能量利用效率,并确保了整个过程的零排放运行。

🌍 **广泛的应用潜力与市场部署:** 该系统具有高度可扩展性,可达500 MW的容量,且占地面积远小于传统的抽水蓄能系统。目前,Hydrostor已在澳大利亚、加拿大和美国部署了总计1.2 GW的商业化项目,并拥有7 GW的开发管线,显示出其在全球能源储存市场的巨大潜力。

⏳ **长寿命与可靠性:** Hydrostor声称其A-CAES系统具有超过50年的使用寿命,且性能不会出现显著衰减。这一特性使其成为一项长期可靠的能源储存解决方案,能够满足未来能源系统的持续需求。

Key takeaways: 

    Current A-CAES projects in Australia, Canada, and the US total 1.2 GW, with a 7 GW pipeline under development

A Canada-based company, Hydrostor Inc., has received The smarter E AWARD 2025 for its energy storage solution, branded as the Advanced Compressed Air Energy Storage System (A-CAES). 

In a conventional CAES, electrical energy is used by compressors to pump compressed air into an underground cavern, where it is stored. This compressed air is used later for energy generation. Unlike conventional CAES, this system uses a water column reservoir to regulate and maintain air pressure at different volume capacities. The CAES can be built as a standalone storage system or co-located with solar or wind energy systems. 

Mode of Operation 

When there is excess energy available from renewable sources, it can be used to power compressors that compress the air. The heat generated in this process is extracted and stored, while the cooled compressed air is stored underground in a rock cavern filled with water. The water is displaced into a reservoir as the air fills the cavern. When the cavern is completely filled with air, the CAES is considered fully charged. When energy is needed, the water flows back into the cavern using gravity, pushing the air back to the surface to drive a turbine and generate power. 

Hydrostor’s CAES 

Hydrostor claims that A-CAES is scalable to capacities of up to 500 MW and requires around 20 times less land area than a conventional pumped-hydro storage system. The company notes that the system provides 8 to 24 hours of storage duration and recycles the heat generated during compression for the decompression process, allowing for an emission-free operation. Hydrostor also states that the system has a lifespan of over 50 years without performance degradation. 

The company reports existing operational commercial projects in Australia, Canada, and the United States, totaling 1.2 GW, with an additional 7 GW in the development pipeline. 

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Hydrostor A-CAES 压缩空气储能 能源储存 可再生能源 Compressed Air Energy Storage Energy Storage Renewable Energy
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