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    A parametric study on seismic characteristics of cold-formed steel shear walls by finite element modeling

    , Article Advanced Steel Construction ; Volume 10, Issue 1 , 2014 , Pages 53-71 ; ISSN: 1816112X Hatami, S ; Rahmani, A ; Parvaneh, A ; Ronagh, H. R ; Sharif University of Technology
    Abstract
    Shear wall panels, including cold-formed steel frames and its attached sheathing, are common lateral load resisting systems of cold-formed steel structures. In this paper, the finite element method is used to study the lateral performance of shear wall panels. The finite element model is validated against experimental results of other researchers. Using the validated model, a parametric study is described to determine strength, drift and seismic behavior of the shear wall panels. Based on the results, it is concluded that the initial stiffness and ultimate lateral strength are dramatically affected by the thickness of the frame members, type of sheathing material, edge screw spacing, height... 

    Discharge characteristics of a modified oblique side weir in subcritical flow

    , Article Flow Measurement and Instrumentation ; Volume 22, Issue 5 , October , 2011 , Pages 370-376 ; 09555986 (ISSN) Borghei, S. M ; Parvaneh, A ; Sharif University of Technology
    2011
    Abstract
    Side weirs are frequently used in many water projects. Due to their position with respect to the flow direction, side weirs are categorized as plain, oblique and labyrinth. One of the advantages of an oblique side weir is the increase in the effective length of the weir for overflowing and, therefore, diverting more discharge with the same channel opening, weir height and flow properties (i.e., upstream discharge, upstream Froude number and so on). In this paper, an experimental set-up of a new design of an oblique side weir with asymmetric geometry has been studied. The hydraulic behavior of this kind of oblique side weir, with a constant opening length, different weir heights and... 

    Experimental parametric study and design of Piano Key Weirs by O. MACHIELS, M. PIROTTON, A. PIERRE, B. DEWALS and S. ERPICUM, J. Hydraulic Res. 52(3), 2014, 326-335

    , Article Journal of Hydraulic Research ; Volume 53, Issue 4 , 2015 , Pages 543-545 ; 00221686 (ISSN) Javaheri, A ; Parvaneh, A ; Kabiri Samani, A ; Sharif University of Technology
    Taylor and Francis Ltd  2015

    Discharge coefficient of oblique labyrinth side weir

    , Article 4th European Congress of the International Association of Hydroenvironment engineering and Research, 27 July 2016 through 29 July 2016 ; 2016 , Pages 665-670 ; 9781138029774 (ISBN) Kabiri Samani, A ; Parvaneh, A ; Nekooie, M. A ; Sharif University of Technology
    CRC Press/Balkema 
    Abstract
    Labyrinth side weir is one type of weirs, which can be used when the length of opening is limited. One of the advantages of labyrinth side weir is to increase the effective length of weir perpendicular to the flow and, therefore, diverting more discharge with the same flow depth and weir geometry (opening and height). Discharge coefficient should be determined to investigate the weir performance and estimate the discharge passing over the weir. In this paper, hydraulic performance of labyrinth side weir with asymmetric geometry has been experimentally studied. The change to the geometry of ordinary labyrinth side weirs causes an increase in the effectiveness of the length of weir as being... 

    Determination of discharge coefficient of triangular labyrinth side weirs with one and two cycles using the nonlinear PLS method

    , Article Sustainable Hydraulics in the Era of Global Change - Proceedings of the 4th European Congress of the International Association of Hydroenvironment engineering and Research, IAHR 2016, 27 July 2016 through 29 July 2016 ; 2016 , Pages 653-657 ; 9781138029774 (ISBN) Nekooie, M. A ; Parvaneh, A ; Kabiri Samani, A ; Sharif University of Technology
    CRC Press/Balkema  2016
    Abstract
    Side weirs are hydraulic control structures widely used in irrigation, drainage networks and waste water treatment plants. These structures can be used for adjusting and diverting of flow with minimum energy loss. In spite of many studies were carried out on rectangular side weirs, the studies on oblique and labyrinth side weirs are scarce. In this study, based on the experimental data from more than 210 laboratory tests and through using the multivariable nonlinear partial least square (PLS) method, two nonlinear equations are presented for discharge coefficient CM of triangular labyrinth side weirs with one and two cycles. The obtained empirical equations relating CM with the relevant... 

    Discussion: Triangular labyrinth side weirs with one and two cycles

    , Article Proceedings of the Institution of Civil Engineers: Water Management ; Volume 169, Issue 3 , 2016 , Pages 111-114 ; 17417589 (ISSN) Borghei, S. M ; Nekooie, M. A ; Sadeghian, H ; Jalili Ghazizade, M. R ; Parvaneh, A ; Yang, J ; Javaheri, A ; Kabiri Samani, A ; Sharif University of Technology
    Thomas Telford Services Ltd 

    Numerical study on racking behavior of light steel frames with K-shaped bracing

    , Article World Journal of Engineering ; Volume 16, Issue 2 , 2019 , Pages 238-247 ; 17085284 (ISSN) Kazemi, M. J ; Hatami, S ; Zare, A ; Parvaneh, A ; Sharif University of Technology
    Emerald Group Publishing Ltd  2019
    Abstract
    Purpose: This paper aims to study the lateral behavior of cold-formed steel walls with K-shaped bracing by finite element modeling. Design/methodology/approach: The braces which have the same section as those for studs and tracks are connected to the frame by screw connections. By pushover analysis, lateral performance of two frame categories, with different dimensions and bracing arrangements, is examined, and the force-displacement diagram and the ultimate strength of walls are extracted. Probable failure modes during lateral loading including distortional buckling of studs, buckling in braces and failure of connections are simulated in the numerical model, and some strengthening...