首页> 外文会议>International Instrumentation and Measurement Technology Conference >Investigations into the behaviours of Coriolis flowmeters under air-water two-phase flow conditions on an optimized experimental platform
【24h】

Investigations into the behaviours of Coriolis flowmeters under air-water two-phase flow conditions on an optimized experimental platform

机译:在优化实验平台上研究科里奥利流量计在气水两相流条件下的性能

获取原文

摘要

Gas-liquid two-phase flow is commonly encountered in many industrial processes due to production requirement or inevitable gas entrainment from various sources. Accurate liquid phase measurement under two-phase conditions is challenging but important as it is the key factor to reduce cost, improve safety or meet legal requirements. Coriolis flowmeters, owing to their high accuracy in metering single-phase flow, direct mass flow measurement and multivariable sensing nature, are widely used in industry. Recently developed Coriolis flowmeters can work under multiphase conditions, making it possible to achieve accurate multiphase flow measurement through model based error compensation or training based soft computing correction. This paper assesses the behaviours of Coriolis flowmeters under various two-phase conditions for modelling and soft computing algorithm improvement, including previously investigated factors (flowrate, gas volume fraction, flow tube geometry, flow converter, and process pressure) and new factors (flow regimes in terms of bubble size and distribution). Experimental work was conducted on 25 mm and 50 mm bore air-water two-phase flow rigs for liquid mass flowrates between 2500 kg/h and 35000 kg/h with gas volume fraction of 0-60%. With the influence of each factor identified through univariate analysis, comparisons between existing modelling theories and experimental error curves are established. In the meantime, the rig design and control are optimized to provide efficient and automated data acquisition in order to supply ample and high-quality data for the training of soft computing models as well as enhancing the understanding in theoretical modelling.
机译:由于生产要求或来自各种来源的不可避免的气体夹带,在许多工业过程中通常会遇到气液两相流。在两相条件下进行准确的液相测量具有挑战性,但很重要,因为这是降低成本,提高安全性或满足法律要求的关键因素。科里奥利流量计由于其单相流量计量的高精度,直接质量流量测量和多变量传感特性,在工业上得到了广泛的应用。最近开发的科里奥利流量计可以在多相条件下工作,从而可以通过基于模型的误差补偿或基于训练的软计算校正来实现精确的多相流量测量。本文评估了科里奥利流量计在各种两相条件下的行为,以进行建模和软计算算法改进,包括先前研究的因素(流速,气体体积分数,流管几何形状,流量转换器和过程压力)和新因素(流动方式)就气泡大小和分布而言)。实验工作在25毫米和50毫米口径的空气-水两相流动装置上进行,液体质量流量在2500 kg / h和35000 kg / h之间,气体体积分数为0-60%。利用单因素分析确定的每个因素的影响,建立了现有建模理论与实验误差曲线之间的比较。同时,对钻机的设计和控制进行了优化,以提供高效,自动化的数据采集,从而为训练软计算模型提供充足,高质量的数据,并增强对理论建模的理解。

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