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首页> 外文期刊>International Journal of Fluid Power >INCREASING HYDRAULIC ENERGY STORAGE CAPACITY: FLYWHEEL-ACCUMULATOR
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INCREASING HYDRAULIC ENERGY STORAGE CAPACITY: FLYWHEEL-ACCUMULATOR

机译:增加液压储能:飞轮式蓄能器

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摘要

The energy storage density of hydraulic accumulators is significantly lower than energy storage devices in other energy domains. As a novel solution to improve the energy density of hydraulic systems, a flywheel-accumulator is presented. Energy is stored in the flywheel-accumulator by compressing a gas, increasing the moment of inertia of the flywheel by adding hydraulic fluid, and by increasing the angular velocity of the flywheel. Through a numerical model of the energy flows in the system, the energy storage of the flywheel-accumulator was demonstrated to be approximately 10 times greater than a conventional accumulator. Furthermore, the flywheel-accumulator allows the hydraulic system pressure to be independent of the quantity of energy stored. The integral flywheel-accumulator presents numerous future research challenges, yet offers the potential to transform and enable numerous applications including plug-in hydraulic hybrid vehicles.
机译:液压蓄能器的储能密度明显低于其他能源领域的储能装置。作为提高液压系统能量密度的新颖解决方案,提出了一种飞轮蓄能器。通过压缩气体,通过添加液压流体来增加飞轮的惯性矩以及通过增加飞轮的角速度来将能量存储在飞轮蓄能器中。通过系统中能量流的数值模型,证明了飞轮蓄能器的储能比传统蓄能器大大约10倍。此外,飞轮蓄能器使液压系统压力与所存储的能量无关。集成式飞轮蓄能器提出了许多未来的研究挑战,但仍具有转化和实现包括插电式液压混合动力汽车在内的众多应用的潜力。

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