最近可持续性相关的研究成果在流体动力

H. Murrenhoff
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引用次数: 2

摘要

当需要控制巨大的力或扭矩时,即使在具有挑战性的动态要求下,流体动力也是一种驱动解决方案。本文重点介绍了流体和摩擦学方面的创新成果,一方面特别关注活塞单元,另一方面关注风力涡轮机的混合动力驱动和静压驱动等新应用的液压回路。该调查提供了流体动力有助于可持续发展的例子。它从生物质产生的流体开始,避免钻进活塞等摩擦学系统的损失,并了解提高效率和泄漏的设计。它还为传动系统和工作液压系统的混合动力解决方案引入了新的思路。它说明了在一个负载周期内节省能量的潜力,并在液压蓄能器中恢复势能和动能。本文还将表明,当选择智能电路时,静压驱动是风力涡轮机的可行解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent sustainability related research results in fluid power
Fluid Power is the drive solution when huge forces or torques need to be controlled even with challenging dynamic requirements. This Paper focuses on research results covering the range of innovations from fluids and tribology with a special view on piston units on the one hand and on hydraulic circuits for new applications such as hybrid drives and hydrostatic drives for wind turbines on the other hand. The survey provides examples where fluid power contributes to sustainability. It starts with the fluid generated from biomass and avoiding losses in tribological systems such as pistons in bores and understanding designs to improve efficiency and leakage. It also introduces new ideas for hybrid solutions in drive trains and work hydraulics. It illustrates the potential to save energy over a load cycle and to recuperate potential and kinetic energy in a hydraulic accumulator. The paper will also show that hydrostatic drives are a viable solution for wind turbines when an intelligent circuit is chosen.
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