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Extended validation of a graph-based modelling methodology for high-pressure networks ?

机译:扩展验证基于图形的高压网络建模方法

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Various applications use high-pressure pumps for waterjet machining. A cutting head generates the waterjet, which is capable to cut hard and brittle materials. These cutting heads induce pressure fluctuations with respect to an a priori unknown switching pattern. This paper applies a graph-based modelling methodology on complex high-pressure networks representing different waterjet facilities. For that, network sections are assigned to homogeneous segments, each representing a local pressure state. Segments are subsequently interconnected along their fluid flow paths, resulting in a lumped parameter model. In this way, the graph-based methodology offers a flexible modelling to cope with various network topologies. The resulting mathematical models of different waterjet facilities have been verified for specific cutting head switching patterns. Measurements on a test bench show that a desired accuracy is obtained over a wide operating range from 0 to 2.45 l/min, even for a fast switching period of 0.5 seconds.
机译:各种应用使用高压泵进行水射流加工。切割头产生水射流,其能够切割硬质和脆性材料。这些切割头相对于先验未知的切换模式引起压力波动。本文适用于代表不同水射流设施的复杂高压网络上基于图形的建模方法。为此,网络部分被分配给同种异性的段,每个段代表局部压力状态。随后沿其流体流动路径互连段,导致参数模型。通过这种方式,基于图形的方法提供了一种灵活的建模,以应对各种网络拓扑。由特定的切割头切换模式验证了不同水射流设施的所得到的数学模型。测试台上的测量表明,在0至2.45L / min的宽工作范围内获得所需的精度,即使快速切换期为0.5秒。

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