首页> 外文期刊>Water Science and Technology >Ultrasonic device for real-time sewage velocity and suspended particles concentration measurements
【24h】

Ultrasonic device for real-time sewage velocity and suspended particles concentration measurements

机译:超声波装置可实时测量污水流速和悬浮颗粒物浓度

获取原文
获取原文并翻译 | 示例
           

摘要

In the frame of a technological research and innovation network in water and environment technologies (RITEAU, Reseau de Recherche et d'Innovation Technologique Eau et Environnement), our research group, in collaboration with industrial partners and other research institutions, has been in charge of the development of a suitable flowmeter: an ultrasonic device measuring simultaneously the water flow and the concentration of size classes of suspended particles. Working on the pulsed ultrasound principle, our multi-frequency device (1 to 14 MHz) allows flow velocity and water height measurement and estimation of suspended solids concentration. Velocity measurements rely on the coherent Doppler principle. A self developed frequency estimator, so called Spectral Identification method, was used and compared to the classical Pulse-Pair method. Several measurements campaigns on one wastewater collector of the French city of Strasbourg gave very satisfactory results and showed smaller standard deviation values for the Doppler frequency extracted by the Spectral Identification method. A specific algorithm was also developed for the water height measurements. It relies on the water surface acoustic impedance rupture and its peak localisation and behaviour in the collected backscattering data. This algorithm was positively tested on long time measurements on the same wastewater collector. A large part of the article is devoted to the measurements of the suspended solids concentrations. Our data analysis consists in the adaptation of the well described acoustic behaviour of sand to the behaviour of wastewater particles. Both acoustic attenuation and acoustic backscattering data over multiple frequencies are analyzed for the extrapolation of size classes and respective concentrations. Under dry weather conditions, the massic backscattering coefficient and the overall size distribution showed similar evolution whatever the measurement site was and were suggesting a global wastewater particles behaviour. By comparison to sampling data, our data analysis lead to the characterization of two particle groups: the ones occurring during rain events and the ones typical of wastewater under dry weather conditions. Even with already encouraging results on the several weeks of data recorded on several wastewater collectors, the validation of our data inversion method is still under progress.
机译:在水与环境技术的技术研究和创新网络(RITEAU,Reseau de Recherche等创新技术和环境)的框架下,我们的研究小组与工业合作伙伴和其他研究机构合作,负责研制合适的流量计:同时测量水流量和悬浮颗粒尺寸等级的超声波设备。基于脉冲超声原理,我们的多频设备(1至14 MHz)可以测量流速和水高,并估算悬浮固体的浓度。速度测量依赖于相干多普勒原理。使用了自行开发的频率估算器,即所谓的频谱识别方法,并将其与经典的脉冲对方法进行了比较。在法国史特拉斯堡的一个废水收集器上进行的几次测量活动均获得了非常令人满意的结果,并且显示了通过光谱识别法提取的多普勒频率的标准偏差值较小。还开发了用于水位测量的特定算法。它依赖于水面声阻抗的破裂及其在收集的反向散射数据中的峰值定位和行为。在相同的废水收集器上进行长时间测量后,对该算法进行了正面测试。文章的很大一部分致力于悬浮固体浓度的测量。我们的数据分析包括使沙子的声学特性与废水颗粒的行为相适应。分析了多个频率上的声衰减数据和声反向散射数据,以推断尺寸类别和各自的浓度。在干燥的天气条件下,无论测量地点在哪里,质量的后向散射系数和总体尺寸分布都显示出相似的变化,这表明全球废水颗粒的行为。通过与采样数据进行比较,我们的数据分析得出了两个颗粒组的特征:一个是在降雨事件中发生的,另一个是在干燥天气条件下废水中的典型。即使在几个废水收集器上记录的几周数据中已经取得令人鼓舞的结果,我们的数据反演方法的验证仍在进行中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号