The simulation of the emission of iron fumes caused by shielded metal arc welding using a computational fluid dynamics method

被引:2
|
作者
Paridokht, Fatemeh [1 ]
Soury, Shiva [2 ]
Zeverdegani, Sara Karimi [1 ,3 ]
机构
[1] Isfahan Univ Med Sci, Student Res Comm, Sch Hlth, Dept Occupat Hlth & Safety Engn, Esfahan, Iran
[2] Ilam Univ Med Sci, Sch Hlth, Dept Occupat Hlth Engn, Ilam, Iran
[3] Isfahan Univ Med Sci, Student Res Comm, Sch Hlth, Dept Occupat Hlth Engn, Esfahan 8174673461, Iran
关键词
Fluid simulation; computational dynamics; welding fume; shielded metal arc welding; computational fluid dynamics; CFD SIMULATION; NUMERICAL-SIMULATION; SUBJECT-VARIABILITY; PARTICLE-TRANSPORT; AIR-FLOW; VENTILATION; EXPOSURE; DEPOSITION; MODEL; RESPONSES;
D O I
10.1177/07482337221144143
中图分类号
R1 [预防医学、卫生学];
学科分类号
1004 ; 120402 ;
摘要
Computational fluid dynamics (CFD) is an indispensable simulation tool for predicting the emission of pollutants in the work environment. Welding is one of the most common industrial processes that might expose the operators and surrounding workers to certain hazardous gaseous metal fumes. In the present study, we used computational fluid dynamics (CFD) methodology for simulating the emission of iron fumes from the shielded metal arc welding (SMAW) procedure. A galvanized steel chamber was fabricated to measure the pollutant concentration and identify the size of the fume created by the SMAW. Then, the emission of welding aerosol was simulated using a method of computational fluid-particle dynamics with the ANSYS 2020 R1 software. The highest amount of welding fumes concentration was related to iron fumes (i.e., 3045 mu g/m(3) with a diameter of 0.25 mu m). The results of the current study indicated that the local exhaust and general ventilation system can prevent the spreading of welding fumes to the welder's breathing zone and the surrounding environment. CFD was also found to be an efficient method for predicting the emission of the iron fumes created by SMAW as well as for selecting an appropriate ventilation system. However, further studies that take the modeling of welding-generated emission of additional metal particles and gases into account will need to be undertaken.
引用
收藏
页码:36 / 48
页数:13
相关论文
共 50 条
  • [31] Hot-Metal Desulfurization Using Calcium Carbide and Calcium Oxide in Transfer Ladle: A Computational Fluid Dynamics Investigation
    Guo, Xipeng
    Mao, Congshan
    Walla, Nicholas
    Silaen, Armin
    Zhou, Chenn
    STEEL RESEARCH INTERNATIONAL, 2024, 95 (02)
  • [32] Modeling and simulation of an industrial combustion reactor using computational fluid dynamics
    H. Mohsenian
    N. Ghiasi
    International Journal of Environmental Science and Technology, 2023, 20 : 1247 - 1258
  • [33] Simulation of a snow avalanche model test using computational fluid dynamics
    Oda, Kenichi
    Moriguchi, Shuji
    Kamiishi, Isao
    Yashima, Atsushi
    Sawada, Kazuhide
    Sato, Atsushi
    ANNALS OF GLACIOLOGY, 2011, 52 (58) : 57 - 64
  • [34] Simulation of heat transfer in a ferrofluid using computational fluid dynamics technique
    Jafari, A.
    Tynjala, T.
    Mousavi, S. M.
    Sarkomaa, P.
    INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2008, 29 (04) : 1197 - 1202
  • [35] SIMULATION OF VENTILATION SYSTEMS IN A PROTECTED ENVIRONMENT USING COMPUTATIONAL FLUID DYNAMICS
    da Silva, Roberto C.
    Cordeiro Junior, Jose J. F.
    Pandorfi, Heliton
    Vigoderis, Ricardo B.
    Guiselini, Cristiane
    ENGENHARIA AGRICOLA, 2017, 37 (03): : 414 - 425
  • [36] Modeling and simulation of an industrial combustion reactor using computational fluid dynamics
    Mohsenian, H.
    Ghiasi, N.
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2023, 20 (02) : 1247 - 1258
  • [37] Analytical method using SEM-EDS for metal elements present in particulate matter generated from stainless steel flux-cored arc welding process
    Kato, Nobuyuki
    Yamada, Maromu
    Ojima, Jun
    Takaya, Mitsutoshi
    JOURNAL OF HAZARDOUS MATERIALS, 2022, 424
  • [38] MODELLING OF INERTIA FRICTION WELDING USING FINITE ELEMENT ANALYSIS AND COMPUTATIONAL FLUID DYNAMICS
    Muhammad, O.
    Bennett, C. J.
    Morvan, H. P.
    MATERIAL FORMING ESAFORM 2014, 2014, 611-612 : 1344 - 1355
  • [39] Numerical Simulation of a Spouted Bed Using Computational Fluid Dynamics (CFD)
    Zhang, C. H.
    Huang, L. X.
    Xie, P. J.
    You, F.
    Zhang, Y. L.
    Mujumdar, A. S.
    DRYING TECHNOLOGY, 2013, 31 (15) : 1879 - 1887
  • [40] Hydrodynamic Simulation and Analysis Using Computational Fluid Dynamics: Electrochemical Reactors and Redox Flow Batteries
    Meena, Ram Raj
    Kumar, Sushil
    Soni, Pramod
    CHEMBIOENG REVIEWS, 2023, 10 (05) : 670 - 683