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RESTRATIFICATION IN HYDRAULIC TRANSPORT: IS IT A BEND EFFECT?

机译:液压运输中的重新定形:这是弯曲作用吗?

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The availability of reliable calculation models for hydraulic losses in dredge pipelines is important to project calculations for dredging work. In the development of such type of models the availability of validation material is crucial. Within the wealth of validation material from hydraulic circuits, peculiar results are found in some flow loops for 0.5 mm solids and greater at flow velocities just beyond the deposit limit velocity. Here the hydraulic gradient may increase two-fold in comparison when only the velocity is increased by 10% .This phenomenon is not described by existing calculation models. This effect, originally encountered in the Delft O 150 mm slurry loop, has been identified as a "restratification effect" characterised by a persistent two-layered concentration distribution. Electrical Resistance Tomography (ERT) measurements of concentration distributions indicate that the phenomenon also occurs in the Delft O 40 mm slurry loop. Therefor it is embarked on a combination of systematic ERT and hydraulic gradient measurements in order to verify whether the course of the hydraulic gradient is similar in this circuit and, if so, to create a basis for unraveling the underlying physical processes. A series of systematic tests is conducted for two different lengths of the upstream pipe-section. In both situations the "restratification effect" is found in the course of the hydraulic gradient and in the ERT measurements. Comparison of the results of both configurations show that the "restratification effect" is influenced by upstream conditions (in this case a 180° bend), but yet, it can not be established whether the "restratification effect" is initiated by the very presence of the bend.
机译:挖泥管道水力损失的可靠计算模型的可用性对于挖泥工程的项目计算很重要。在此类模型的开发中,验证材料的可用性至关重要。在来自液压回路的大量验证材料中,在某些流动回路中发现了特殊的结果,固体含量为0.5 mm,并且流速刚好超过沉积物极限速度时,结果更大。与之相比,当仅将速度提高10%时,水力梯度可能会增加两倍。现有的计算模型并未描述这种现象。最初在Delft O 150 mm浆液回路中遇到的这种效应已被识别为“持续稳定化效应”,其特征是持续的两层浓度分布。浓度分布的电阻层析成像(ERT)测量表明,该现象也发生在Delft O 40 mm浆料回路中。因此,它开始进行系统的ERT和水力梯度测量的组合,以验证该回路中水力梯度的变化过程是否相似,如果是,则为阐明基础物理过程奠定基础。对上游管段的两种不同长度进行了一系列系统测试。在这两种情况下,在水力梯度过程中和ERT测量中均会发现“重新平衡效应”。两种配置结果的比较表明,“再约束效应”受上游条件(在这种情况下为180°弯曲)的影响,但是,尚不能确定“再约束效应”是否是由于存在的原因而引发的。弯头。

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