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FULLY TRANSIENT MODEL OF A HYDRAULIC ACCUMULATOR

机译:液压蓄能器的全暂态模型

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摘要

Hydraulic piston accumulators play a major role especially within the field of stationary hydraulics. The calculation of the amount of hydraulic energy which can be stored in such an accumulator is crucial when it comes to a precise system design. The knowledge of the temperature within the accumulator is required in order to calculate the amount of energy to be stored. This paper presents a simulation approach with the goal to simulate the gaseous phase within a piston accumulator and to present results for the polytropic exponent without conducting costly experiments. The temperature, pressure, density and velocity profiles inside of the gaseous phase as well as the temperature profile inside the boundaries are calculated transiently in order to achieve that goal. The effects of dissipation, heat transfer and transient wall temperature are added to the simulation routine continuously and their effects on the results are discussed in detail.
机译:液压活塞蓄能器尤其在固定式液压系统领域中起主要作用。当涉及精确的系统设计时,可以存储在这种蓄能器中的液压能量的计算是至关重要的。需要在蓄能器内的温度知识,以便计算要存储的能量的量。本文提出了一种仿真方法,该方法具有模拟活塞蓄能器内的气相,并在不进行昂贵的实验的情况下对多种多说指数呈现结果。气相内部的温度,压力,密度和速度分布以及边界内的温度曲线瞬时计算,以实现该目标。连续地将耗散,传热和瞬态温度和瞬态温度加入模拟常规的影响,并详细讨论了对结果的影响。

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