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ENERGY SAVING POTENTIAL OF A HYDROSTATIC DRIVETRAIN WITH VARIABLE CHARGE PUMP

机译:可变增压泵的静液压传动系统的节能潜力

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This paper deals with the power saving prediction of hydrostatic drivetrains achieved with a variable roller charge pump. Focusing on the charge pump in a hydrostatic transmission, shows, that fixed pumps don't act in all operating conditions very efficient. The charge pump delivers in some conditions a higher flow than required. The unused energy is dissipated into heat. According to this assumption, using variable charge pump is another possible way to save energy. In the end it means reduce fuel consumption. Generally, the power saving potential is depending on the application, but two main factors can be highlighted: the first one is the charge pump size and the second is the application of an intelligent loop flushing system. The standard loop flushing system demands more cooling flow than required in some conditions, but a variable charge pump is able to more efficiently cover demands of intelligent loop flushing system. The power saving potential will be analyzed for two different example systems/vehicles in their typical operation conditions. All analyses are made with simulation models, which include simplified thermal behavior of the hydraulic circuit, also. The results in this paper confirmed the power saving potential for different applications with bigger charge pumps with an intelligent loop flushing function could be the most interesting applications.
机译:本文讨论了采用可变滚子电荷泵实现的静液压传动系统的节能预测。着眼于静液压传动装置中的补油泵,可以发现固定泵并非在所有工作条件下都非常有效。补油泵在某些情况下可提供比所需流量更高的流量。未使用的能量消散为热量。根据此假设,使用可变电荷泵是另一种节省能源的方法。最后,这意味着减少燃油消耗。通常,节电的潜力取决于应用程序,但是可以强调两个主要因素:第一个是电荷泵的大小,第二个是智能环路冲洗系统的应用。标准回路冲洗系统比某些情况下需要的冷却流量更多,但是可变电荷泵能够更有效地满足智能回路冲洗系统的要求。将针对两种不同示例系统/车辆在其典型操作条件下的节能潜力进行分析。所有分析都是通过仿真模型进行的,其中还包括简化的液压回路热行为。本文的结果证实了具有智能环路冲洗功能的大型电荷泵在不同应用中的节电潜力可能是最令人感兴趣的应用。

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