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MODELING AND TRAJECTORY OPTIMIZATION OF WATER SPRAY COOLING IN A LIQUID PISTON AIR COMPRESSOR

机译:液体活塞式空气压缩机喷水冷却的建模与轨迹优化

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An efficient and sufficiently power dense air compres-sor/expander is the key element in a Compressed Air Energy Storage (CAES) approach. Efficiency can be increased by improving the heat transfer between air and its surrounding materials. One effective and practical method to achieve this goal is to use water droplets spray inside the chamber when air is compressing or expanding. In this paper, the air compression cycle is modeled by considering one-dimensional droplet properties in a lumped air model. While it is possible to inject water droplets into the compressing air at any time, optimal spray profile can result in maximum efficiency improvement for a given water to air mass ratio. The corresponding optimization problem is then defined based on the stored energy in the compressed air and the required input works. Finally, optimal spray profile has been determined for various water to air mass ratio using a general numerical approach to solve the optimization problem. Results show the potential improvement by acquiring the optimal spray profile instead of conventional constant spray flow rate. For the specific compression chamber geometry and desired pressure ratio and final time used in this work, the efficiency can be improved up to 4%.
机译:高效且足够的功率密集空气压缩器/膨胀机是压缩空气能量存储(CAES)方法中的关键元件。通过改善空气与周围材料之间的热传递可以提高效率。实现这一目标的一种有效和实用的方法是在空气压缩或膨胀时使用腔室内喷射水滴喷射。在本文中,通过考虑集体空气模型中的一维液滴性能来建模空气压缩循环。虽然可以随时将水滴喷射到压缩空气中,但是最佳喷射轮廓可以导致给定水与空气质量比的最大效率改进。然后基于压缩空气中的存储的能量和所需的输入工作来定义相应的优化问题。最后,使用普通数值方法确定各种水与空气质量比的最佳喷涂曲线,以解决优化问题。结果通过获取最佳喷雾型材而不是传统的恒定喷射流速来表现出潜在的改进。对于本工作中使用的特定压缩室几何和期望的压力比和最终时间,效率可以提高至4%。

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