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AN ENERGY AUDIT FOR A THREE-FUNCTION HYDRAULIC CONTROL SYSTEM: A CONSIDERATION OF PUMP ARRANGEMENTS

机译:三功能液压控制系统的能源审计:对泵布置的考虑

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When designing a hydraulic circuit, there are a number of ways to power each hydraulic function in the circuit. For instance, a single hydraulic function may be powered by its own dedicated pump; or, a hydraulic function may share a pump with additional functions in the circuit. The design question is this: "What is the optimal arrangement of pumps for a given circuit that will result in the lowest energy consumption and the smallest machine size?" This research documents an example study in which a duty cycle from the typical wheel loader is used to study the five possible pump-combinations that exist for powering the lift, tilt, and steering functions of the machine. It is shown that the lowest efficiency for the machine is observed when all three functions are powered by a single pump, and that a 15% efficiency increase may be realized over the single-pump design by giving each function its own dedicated pump. In order to achieve this efficiency increase, the original single pump is replaced by the following pump combination: 1) a pump 69% the size of the original pump for the Lift function, 2) a pump 86% the size of the original pump for the Tilt function, and 3) a pump 31% the size of the original pump for the Steering function. This solution increases the overall pump volume on the machine by 86%, nearly doubling the pump volume on the machine.
机译:在设计液压回路时,有多种方法可以为回路中的每个液压功能提供动力。例如,单个液压功能可以由其自己的专用泵提供动力。或者,液压功能可以在回路中与其他功能共享一个泵。设计问题是这样的:“给定回路的泵的最佳布置是什么,它将导致最低的能耗和最小的机器尺寸?”这项研究记录了一个示例研究,其中使用典型轮式装载机的占空比来研究为机器的提升,倾斜和转向功能提供动力的五种可能的泵组合。结果表明,当所有三个功能都由一个泵提供动力时,机器的效率最低,并且通过为每个功能提供自己的专用泵,可以使单泵设计的效率提高15%。为了提高效率,将原来的单泵替换为以下泵组合:1)用于提升功能的泵的尺寸为原始泵的69%,2)用于泵功能的泵的尺寸为原始泵的86%倾斜功能,以及3)用于转向功能的泵,其尺寸是原始泵的31%。该解决方案将机器上的整体泵体积增加了86%,几乎使机器上的泵体积增加了一倍。

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