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Representative Sampling of Suspended Particulate Materials in Horizontal Ducted Flow: Evaluating the Prototype ?¢????EF-sampler?¢????

机译:水平管道流中悬浮颗粒物料的代表性采样:评估原型EF采样器EF采样器

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The ‘EF-sampler’ is a newly developed sampler for suspended particulate materials in horizontal pneumatic conveying systems, designed for maximum possible compliance with the Theory of Sampling (TOS). Hitherto no sampler for this deployment location exists on the market that ensures representative samples as defined by TOS. Because of confinement of the pressurised ducted flow and because of gravitative and flow segregation, unbiased sampling constitutes a serious challenge. In addition to the primary demand for representativeness, interference with the material flow needs to be minimized in order to prevent clogging effects and/or possible pressure surges. We here disclose all design principles of the ‘EF-sampler’ and validate a 1/3-scale prototype in a pneumatic test facility by presenting our first test campaign results. Testing focuses on assessing sampling representativeness (accuracy and precision) using wheat flour and pulverized alumina as the major test materials, both spiked with LDPE plastic pellets in the role as trace constituents, extraneous material or contaminants. Input pellet concentration levels served as nominal reference values for the accuracy evaluation. Test parameters include airflow rate, sample LDPE pellet concentration and different cross-cutting sampler velocities. Results show that the patented EF-sampler prototype enables to extract fit-for-purpose samples with a relative inaccuracy <5% for the stated test materials, which is highly acceptable for this most-difficult deployment context. Sampler velocity and especially the material flow dilution status impact the accuracy of sample extraction, while precision remains constantly good for all test conditions. The prototype EF-sampler is not a universal sampler, since it is designed to require situation-dependant adjustments based on specific material heterogeneity and flow regime characteristics. However, the first test campaign results on two widely different materials show conclusively that it accommodates a wide field of potential applicability for many similar types of materials.
机译:“ EF采样器”是一种新开发的采样器,用于水平气动输送系统中的悬浮颗粒物料,旨在最大程度地遵守采样理论(TOS)。迄今为止,市场上尚无此部署位置的采样器,以确保TOS定义的代表性样本。由于受压管道流的限制以及引力和流分离,无偏采样构成了严峻的挑战。除了对代表性的主要要求外,还需要尽量减少对物料流的干扰,以防止堵塞效果和/或可能的压力波动。我们在此公开了“ EF采样器”的所有设计原理,并通过展示我们的第一个测试活动结果在气动测试设施中验证了1/3比例的原型。测试的重点是使用小麦粉和氧化铝粉作为主要测试材料来评估样品的代表性(准确性和准确性),这两种材料均掺有LDPE塑料颗粒,起痕量成分,外来材料或污染物的作用。输入的颗粒浓度水平用作准确性评估的标称参考值。测试参数包括气流速率,样品LDPE颗粒浓度和不同的横切采样器速度。结果表明,获得专利的EF-sampler原型能够提取所述测试材料的相对误差<5%的适合用途的样品,这在这种最困难的部署环境中是高度可接受的。采样器的速度,尤其是物料流的稀释状态会影响样品提取的准确性,而精度在所有测试条件下始终保持良好。原型EF采样器不是通用采样器,因为它被设计为需要根据特定的材料异质性和流态特性进行与情况有关的调整。但是,在两种截然不同的材料上进行的首次测试活动的结果表明,它可以适应许多相似类型的材料的广泛潜在应用领域。

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