In contrast to the concurrent mixer-settler,the interaction between the mixing and settling chambers have to be taken into account in the simulation of the countercurrent mixer-settler,and no work has been reported fo...In contrast to the concurrent mixer-settler,the interaction between the mixing and settling chambers have to be taken into account in the simulation of the countercurrent mixer-settler,and no work has been reported for this equipment.In this work,a three-phase flow model based on the Eulerian multiphase model,coupled with a sliding mesh model is proposed for a countercurrent mixer-settler.Based on this,the dispersed phase distribution,flow pattern,and pressure distribution are investigated,which can help to fill the gap in the operation mechanism.In addition,the velocity vector distribution at the phase port shows an intriguing phenomenon that two types of vectors with opposite directions are distributed on the left and right sides of the same plane,which indicates that the material exchange in the mixing and settling chambers is simultaneous.Analysis of this variation at this location by a fast Fourier transform(FFT)method reveals that it is mainly influenced by the mixing chamber and is consistent with the main period of the outlet flow fluctuations.Therefore,by monitoring the fluctuation of the outlet flow and then analyzing it by the FFT method,the state of the whole tank can be determined,which makes it promising for the design of control systems for countercurrent mixer-settlers.展开更多
Experimental and computational analysis has been carried out by many researchers on supersonic cavity flow,but detailed analysis based on Rossiter’s model still requires some insight.In the current study an open rect...Experimental and computational analysis has been carried out by many researchers on supersonic cavity flow,but detailed analysis based on Rossiter’s model still requires some insight.In the current study an open rectangular cavity with a length to depth ratio of 2(L/D=2)and Mach number at the inlet as 1.71,was considered as a baseline configuration for experimental analysis.Statistical techniques such as power spectral density(PSD),correlation,and overall sound pressure level(OASPL)were carried out on the unsteady pressure data,to analyze the aero-acoustic flow physics.High-speed schlieren images were processed to obtain spatially coherent modes by proper orthogonal decomposition(POD).The analysis was extended for different dimensions of subcavities on the aft,floor,and front wall.This detailed analysis of these configurations with different dimensions and combinations revealed the various flow features and mode frequencies in supersonic cavity.As the front wall subcavity act as a passive control device,reducing the overall sound pressure level inside the cavity whereas,the aft wall subcavity acts as a passive resonator with distinct harmonic fluidresonant modes,a similar phenomenon was observed for floor subcavity at different locations.A novel method was employed to analyze Rossiter’s model and its applicability in estimating experimental modes was verified,as it accurately predicted the dominant frequencies with a maximum of 2.74% uncertainty among all the configurations.展开更多
目的评估瞬时流量测定(transit time flow meter,TTFM)技术在冠状动脉旁路移植术(CABG)中探查移植血管血流通畅状态的应用价值,并分析其测定结果的相关因素。方法对我科2002年3月至2004年1月连续行CABG 301例患者的791支血管移植物进行T...目的评估瞬时流量测定(transit time flow meter,TTFM)技术在冠状动脉旁路移植术(CABG)中探查移植血管血流通畅状态的应用价值,并分析其测定结果的相关因素。方法对我科2002年3月至2004年1月连续行CABG 301例患者的791支血管移植物进行TTFM测定,按照入选标准从中筛选出左乳内动脉(LIMA)旁路移植到左前降支(LAD)的165例患者的TTFM结果,进行血流量和搏动指数(pulsatility index,PI)的多因素分析。结果TTFM技术提示,791支移植物中有严重质量问题的移植血管5支,均手术证实并加以改正。可能影响移植物血流量的主要因素为LAD远端直径、LIMA直径、心肌梗死位置、LAD近端狭窄程度、反流量百分比(percentage of insufficiency)、左心室舒张期末内径、手术方式(体外循环和非体外循环);影响PI值的主要因素为LAD远端直径、反流量百分比和手术方式。结论TTFM在判断CABG移植物状态时具有一定的诊断价值。多种因素均可影响移植物的血流量和PI值,应考虑主要影响因素以及临床表现来提高TTFM诊断技术错误的敏感性。展开更多
基金the National Natural Science Foundation of China(21978198)for financial support。
文摘In contrast to the concurrent mixer-settler,the interaction between the mixing and settling chambers have to be taken into account in the simulation of the countercurrent mixer-settler,and no work has been reported for this equipment.In this work,a three-phase flow model based on the Eulerian multiphase model,coupled with a sliding mesh model is proposed for a countercurrent mixer-settler.Based on this,the dispersed phase distribution,flow pattern,and pressure distribution are investigated,which can help to fill the gap in the operation mechanism.In addition,the velocity vector distribution at the phase port shows an intriguing phenomenon that two types of vectors with opposite directions are distributed on the left and right sides of the same plane,which indicates that the material exchange in the mixing and settling chambers is simultaneous.Analysis of this variation at this location by a fast Fourier transform(FFT)method reveals that it is mainly influenced by the mixing chamber and is consistent with the main period of the outlet flow fluctuations.Therefore,by monitoring the fluctuation of the outlet flow and then analyzing it by the FFT method,the state of the whole tank can be determined,which makes it promising for the design of control systems for countercurrent mixer-settlers.
基金the support provided by the Department of Aerospace Engineering,IIST,Trivandrum,India,in carrying out this research work.
文摘Experimental and computational analysis has been carried out by many researchers on supersonic cavity flow,but detailed analysis based on Rossiter’s model still requires some insight.In the current study an open rectangular cavity with a length to depth ratio of 2(L/D=2)and Mach number at the inlet as 1.71,was considered as a baseline configuration for experimental analysis.Statistical techniques such as power spectral density(PSD),correlation,and overall sound pressure level(OASPL)were carried out on the unsteady pressure data,to analyze the aero-acoustic flow physics.High-speed schlieren images were processed to obtain spatially coherent modes by proper orthogonal decomposition(POD).The analysis was extended for different dimensions of subcavities on the aft,floor,and front wall.This detailed analysis of these configurations with different dimensions and combinations revealed the various flow features and mode frequencies in supersonic cavity.As the front wall subcavity act as a passive control device,reducing the overall sound pressure level inside the cavity whereas,the aft wall subcavity acts as a passive resonator with distinct harmonic fluidresonant modes,a similar phenomenon was observed for floor subcavity at different locations.A novel method was employed to analyze Rossiter’s model and its applicability in estimating experimental modes was verified,as it accurately predicted the dominant frequencies with a maximum of 2.74% uncertainty among all the configurations.
文摘目的评估瞬时流量测定(transit time flow meter,TTFM)技术在冠状动脉旁路移植术(CABG)中探查移植血管血流通畅状态的应用价值,并分析其测定结果的相关因素。方法对我科2002年3月至2004年1月连续行CABG 301例患者的791支血管移植物进行TTFM测定,按照入选标准从中筛选出左乳内动脉(LIMA)旁路移植到左前降支(LAD)的165例患者的TTFM结果,进行血流量和搏动指数(pulsatility index,PI)的多因素分析。结果TTFM技术提示,791支移植物中有严重质量问题的移植血管5支,均手术证实并加以改正。可能影响移植物血流量的主要因素为LAD远端直径、LIMA直径、心肌梗死位置、LAD近端狭窄程度、反流量百分比(percentage of insufficiency)、左心室舒张期末内径、手术方式(体外循环和非体外循环);影响PI值的主要因素为LAD远端直径、反流量百分比和手术方式。结论TTFM在判断CABG移植物状态时具有一定的诊断价值。多种因素均可影响移植物的血流量和PI值,应考虑主要影响因素以及临床表现来提高TTFM诊断技术错误的敏感性。