Experimental and numerical approaches to investigate the out-of-plane response of unreinforced masonry walls subjected to free far-field blasts

被引:29
作者
Godio, Michele [1 ]
Portal, Natalie Williams [1 ]
Flansbjer, Mathias [1 ]
Magnusson, Johan [2 ]
Byggnevi, Magnus [2 ]
机构
[1] RISE Res Inst Sweden, Brinellgatan 4, S-50462 Boras, Sweden
[2] Swedish Fortificat Agcy, Kungsgatan 43, SE-63189 Eskilstuna, Sweden
关键词
Masonry; Blast; Out-of-plane actions; Testing; Modelling; REINFORCED-CONCRETE; DEBRIS DISTRIBUTION; SEISMIC ASSESSMENT; BUILDING-BLOCKS; NEGATIVE PHASE; BRICK MASONRY; CLAY BRICK; MODEL; BEHAVIOR; INPLANE;
D O I
10.1016/j.engstruct.2021.112328
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Masonry walls are bulky and heavy and have therefore the potential to act naturally as a protective system to blasts. Yet, they are known to have a limited flexural and torsional capacity, particularly when unreinforced. When exposed to shockwaves, they experience out-of-plane failure mechanisms which may affect the overall stability of the building and engender flying debris inside the building. The out-of-plane response of unreinforced masonry walls to blasts depends on many factors characterizing both the wall and blast action, making any sort of prediction difficult. In this context, experimental tests and numerical models become key tools that can be used to study the wall's response on a case-by-case basis. This review covers the major experimental and numerical approaches to assess the out-of-plane response of unreinforced masonry walls subjected to blasts. A methodological appraisal is used for the test methods, focusing on the preparation of the test items and test setup, the boundary conditions and failure mechanisms investigated, as well as the commonly employed measurement techniques. The survey on the modelling approaches includes key topics such as level of detail and cost, and reports strategies to model the wall and blast scenario. The review provides a thematic analysis of the available literature, aimed to assist the analyst in selecting a suitable tool for the investigation of masonry in the field of blast engineering. Furthermore, the findings presented herein can support amendments of existing codes and guidelines pertaining to the design of protective masonry structures.
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页数:12
相关论文
共 140 条
  • [91] Modeling masonry walls under far-field and contact detonations
    Michaloudis, Georgios
    Gebbeken, Norbert
    [J]. INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2019, 123 : 84 - 97
  • [92] Simple numerical model with second order effects for out-of-plane loaded masonry walls
    Milani, Gabriele
    Pizzolato, Marco
    Tralli, Antonio
    [J]. ENGINEERING STRUCTURES, 2013, 48 : 98 - 120
  • [93] Homogenized rigid-plastic model for masonry walls subjected to impact
    Milani, Gabriele
    Lourenco, Paulo B.
    Tralli, Antonio
    [J]. INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2009, 46 (22-23) : 4133 - 4149
  • [94] Out-of-plane flexural behavior of unreinforced red brick walls strengthened with FRP composites
    Mosallam, Ayman S.
    [J]. COMPOSITES PART B-ENGINEERING, 2007, 38 (5-6) : 559 - 574
  • [95] Ngo T., 2007, ELECTRON J STRUCT EN, V7, P76, DOI DOI 10.56748/EJSE.671
  • [96] Blast resistance of tuff stone masonry walls
    Parisi, Fulvio
    Balestrieri, Claudio
    Asprone, Domenico
    [J]. ENGINEERING STRUCTURES, 2016, 113 : 233 - 244
  • [97] Masonry infill walls under blast loading using confined underwater blast wave generators (WBWG)
    Pereira, Joao M.
    Campos, Jose
    Lourenco, Paulo B.
    [J]. ENGINEERING STRUCTURES, 2015, 92 : 69 - 83
  • [98] Petracca M, 2015, COMPUT MECH
  • [99] Influence of transverse loading on the stability of slender unreinforced masonry walls
    Popehn, Jennifer R. Bean
    Schultz, Arturo E.
    Lu, Mu
    Stolarski, Henryk K.
    Ojard, Nels J.
    [J]. ENGINEERING STRUCTURES, 2008, 30 (10) : 2830 - 2839
  • [100] Portioli FPA., B EARTHQ ENG