|本期目录/Table of Contents|

[1]刘丹丹,黄鹏升,李德文,等.基于凸形壁面的虚拟冲击式呼吸性粉尘采样器研究*[J].中国安全生产科学技术,2022,18(2):220-225.[doi:10.11731/j.issn.1673-193x.2022.02.033]
 LIU Dandan,HUANG Pengsheng,LI Dewen,et al.Research on virtual impact respirable dust sampler based on convex wall[J].Journal of Safety Science and Technology,2022,18(2):220-225.[doi:10.11731/j.issn.1673-193x.2022.02.033]
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基于凸形壁面的虚拟冲击式呼吸性粉尘采样器研究*

《中国安全生产科学技术》[ISSN:1673-193X/CN:11-5335/TB]

卷:
18
期数:
2022年2期
页码:
220-225
栏目:
职业安全卫生管理与技术
出版日期:
2022-02-28

文章信息/Info

Title:
Research on virtual impact respirable dust sampler based on convex wall
文章编号:
1673-193X(2022)-02-0220-05
作者:
刘丹丹黄鹏升李德文代英鹏单驰
(1.黑龙江科技大学 电气与控制工程学院,黑龙江 哈尔滨 150022;
2.中煤科工集团重庆研究院有限公司,重庆 400037)
Author(s):
LIU Dandan HUANG Pengsheng LI Dewen DAI Yingpeng SHAN Chi
(1.School of Electrical & Control Engineering,Heilongjiang University of Science & Technology,Harbin Heilongjiang 150022,China;
2.China Coal Technology Engineering Group Chongqing Research Institute,Chongqing 400037,China)
关键词:
虚拟冲击原理气-固两相流呼吸尘采样器
Keywords:
virtual impact principle gas-solid two-phase flow respirable dust sampler
分类号:
X830.1;X936
DOI:
10.11731/j.issn.1673-193x.2022.02.033
文献标志码:
A
摘要:
为研究满足BMRC曲线的呼吸尘采样器,提高呼吸尘采样的准确性,基于虚拟冲击原理,针对隔离主流和弱流通道壁面的形状,提出1种基于虚拟冲击原理的呼吸尘采样器的改进结构,并对不同模型进行模拟仿真实验,利用Ansys Fluent气-固2相流模拟采样器中的流场,对呼吸性粉尘颗粒在流场内的运动轨迹进行跟踪,对仿真得到的呼吸尘分离效能与BMRC曲线的标准进行对比。结果表明:相比采样器原型和主弱流壁面形状为“凹型”,虚拟冲击式呼吸尘采样器主弱流壁面形状为“凸型”时对呼吸尘采样的效果更好,同时分离效能与BMRC曲线的标准差为δ=2.65%,满足偏差小于等于5%的要求。研究结果可为呼吸尘采样器的优化设计提供参考。
Abstract:
In order to study the respirable dust sampler that meets the BMRC curve and improve the accuracy of respirable dust sampling,an improved structure of respirable dust sampler based on the virtual impact principle was proposed according to the wall shape of isolated main flow and weak flow channel based on the virtual impact principle,and the simulation experiments were carried out on different models.The flow field in the sampler was simulated by the gas-solid two-phase flow of ANSYS fluent,then the movement track of respirable dust particles in the flow field was tracked,and the separation efficiency of respirable dust obtained by simulation was compared with the standard of BMRC curve.The results showed that compared with the sampler prototype and the main weak flow wall shape of “concave”,when the main weak flow wall shape of the virtual impact respirable dust sampler was “convex”,the effect of respirable dust sampling was better,and the standard deviation of separation efficiency with BMRC curve was δ=2.65%,which met the requirement of deviation within 5%.It provides reference for improving the design of respirable dust sampler.

参考文献/References:

[1]中华人民共和国国家卫生健康委员会.2020年我国卫生健康事业发展统计公报[EB/OL].(2020-07-13)[2021-07-13].http://www.nhc.gov.cn/guihuaxxs/s10743/202107/af8a9c98453c4d9593e07895ae0493c8.shtml.
[2]王杰,郑林江.煤矿粉尘职业危害监测技术及其发展趋势[J].煤炭科学技术,2017,45(11):119-125.WANG Jie,ZHENG Linjiang.Development tendency and monitoring technology of dust occupational hazard in coal mine[J].Coal Science and Technology,2017,45(11):119-125.
[3]葛少成,孙丽英,荆德吉,等.水雾荷电脱除PM2.5影响因素试验研究[J].中国安全科学学报,2019,29(3):139-144.GE Shaocheng,SUN Liying,JING Deji,et al.Experimental study on influencing factors of water mist charge removal of PM2.5[J].Chinese Journal of Safety Science,2019,29 (3):139-144.
[4]PADOAN E,MAFFIA J,BALSARI P,et al.Soil PM10 emission potential under specific mechanical stress and particles characteristics[J].Science of the Total Environment,2021,779:146488.
[5]PUENTS R,MARCHANT C,LEIVA V,et al.Predicting PM2.5 and PM10 levels during critical episodes management in santiago,chile,with a bivariate birnbaum-saunders log-linear model[J].Mathematics,2021,9(6):1-24.
[6]LIU Y J,FANG Z Y,CHEN F.Impact of PM2.5 environ-mental regulation based on big data for green technology development[J].Arabian Journal of Geosciences,2021,14(7):1-18.
[7]WANG Z G,ZHOU Y,ZHAO R Y,et al.High-resolution prediction of the spatial distribution of PM2.5 concentrations in China using a long short-term memory model[J].Journal of Cleaner Production,2021,297:126493.
[8]惠立锋.基于RSM的呼吸性粉尘旋风分离器分离效能数值模拟研究[J].煤炭学报,2015,40(7):1692-1697.HUI Lifeng.Numerical analysis on the respirable dust separation efficiency of cyclone separator using response surface methodology [J].Journal of Coal,2015,40(7):1692-1697.
[9]谢双.基于虚拟冲击原理的呼吸性粉尘分离技术和分离器研究[D].重庆:重庆科技学院,2019.
[10]蒋靖坤,邓建国,段雷,等.基于虚拟撞击原理的固定源PM10/PM2.5采样器的研制[J].环境科学,2014,35(10):3639-3643.JIANG Jingkun,DENG Jianguo,DUAN Lei,et.al.Development of a two stage virtual impactor for stationary source PM10 and PM2.5 Sampling [J].Environmental Science,2014,35(10):3639-3643.
[11]惠立锋.燃煤电厂超低排放PM10/PM2.5实验室采样对比分析[J].中国电力,2021,54(2):190-196.HUI Lifeng.Comparative analysis of PM10/PM2.5 laboratory sampling for ultra-low emission of coal-fired power plants [J].China Power,2021,54(2):190-196.
[12]PO-KAI C,TA-CHIH H,GUENTER E,et al.Computational fluid dynamics study of the effects of flow and geometry parameters on a linear-slit virtual impactor for sampling and concentrating aerosols[J].Journal of Aerosol Science,2019,131 :28-40.
[13]VADUVESCU O,CURELARU L,POPESCU M,et al.Dozens of virtual impactor orbits eliminated by the Euronear vimp decam data mining project[J].Astronomy & Astrophysics,2020,642:A35.
[14]LUKA D,JEAN S,IASONAS S,et al.A new optical-based technique for real-time measurements of mineral dust concentration in PM10 using a virtual impactor[J].Atmospheric Measurement Techniques,2020,13(7):3799-3813.
[15]ALI M N,JI-WOON P,HYUNG S K,et al.Assessment of indoor bioaerosols using a lab-made virtual impactor[J].Aerosol Science and Technology,2016,51(2):159-167.
[16]YONG W,YIN S W,LIU W X,et al.An aerosol sensor for PM1 concentration detection based on 3D printed virtual impactor and SAW sensor[J].Sensors & Actuators:A Physical,2019,288:67-74.
[17]煤炭工业部煤矿安全标准化技术委员会.呼吸性粉尘测量仪采样效能测定方法:MT 394—1995[S].重庆:煤炭科学研究总院重庆分院,1995.
[18]The European Committee for Standardization.Workplace atmosphere—size fraction definitions for measurement of airborne particles:BS EN 481—1993[S/OL].(1999-06-01)[2021-06-22].https://www.doc88.com/p-1886344912952.html?r=1.
[19]International Organisation for Standardization.Air quality-particle size fraction definitions for health-related sampling:ISO/TR 7708—1993[S/OL].(1993-08-01)[2021-06-22].https://www.doc88.com/p-38873160947770.html?r=1.

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备注/Memo

备注/Memo:
收稿日期: 2021-06-22
* 基金项目: 国家重点研发计划项目(2017YFC0805208)
作者简介: 刘丹丹,博士,教授,主要研究方向为矿山安全监测与电气设备控制。
通信作者: 黄鹏升,硕士研究生,主要研究方向为矿山安全监测与电气设备控制。
更新日期/Last Update: 2022-03-18