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    Physical Modeling of Group Energy Pile Behavior under Thermo-Mechnical Loading

    , M.Sc. Thesis Sharif University of Technology Nasehi Heris, Reza (Author) ; Jafarzadeh, Fardin (Supervisor)
    Abstract
    Energy piles couple the structural support role of conventional piles to the heat exchanger role of shallow geothermal systems for any built environment. So, they are subjected to both mechanical and thermal loads. The use of these piles can be useful in reducing greenhouse gas emissions and reducing fossil fuel consumption. With this in mind, this study is conducted to evaluate the thermomechanical behavior of heat exchanges group piles. For this porpuse, a physical model has been constructed in the Advanced Soil Mechanics Laboratory of the Civil Engineering Department at Sharif University of Technology. In this physical model, four closed-end aluminum pipes with a diameter of 20 mm and a... 

    Three dimensional flow in anisotropic zoned porous media using boundary element method

    , Article Engineering Analysis with Boundary Elements ; Volume 36, Issue 5 , 2012 , Pages 812-824 ; 09557997 (ISSN) Rafiezadeh, K ; Ataie Ashtiani, B ; Sharif University of Technology
    2012
    Abstract
    Coupling the adjacent zones for seepage analysis in porous media needs compatibility and equilibrium equations (equality of potential on coinciding nodes and conservation of flowing mass between zones, respectively). When stretched coordinate transformation is applied to the anisotropic zones, the Dirichlet boundary conditions remain unchanged, but the Neumann boundary condition should also be transformed. Similarly in a zoned problem, for the interface between zones, compatibility equations remain unchanged during the transformation while the equilibrium equations should be transformed. In this paper, transformed Neumann boundary conditions and equilibrium equations for the interface of... 

    Prediction of current-induced local scour around complex piers: Review, revisit, and integration

    , Article Coastal Engineering ; Volume 133 , 2018 , Pages 43-58 ; 03783839 (ISSN) Amini Baghbadorani, D ; Ataie Ashtiani, B ; Beheshti, A ; Hadjzaman, M ; Jamali, M ; Sharif University of Technology
    Elsevier B.V  2018
    Abstract
    Complex piers (CPs), consisting of a column, pile cap and pile group, are commonly built as foundations for hydraulic and marine structures. Scour-hole development around CPs is studied in this paper. A total of 52 tests is carried out on 4 CP models, with experiments durations ranging from 24 to 120 h. All of the available experimental data for clear-water scour around CPs including the collected data of the present study and those previously published are reviewed and combined into a database. A special case of bridge piers with deep foundation or caisson instead of pile caps is also considered, which is herein called compound piers. The database contains 367 experiments for CPs and 162... 

    A numerical approach on side resistance of drilled shafts embedded in sandy soils

    , Article International Journal of Geotechnical Engineering ; Volume 14, Issue 6 , 2020 , Pages 644-652 Jazebi, M ; Ahmadi, M. M ; Sharif University of Technology
    Taylor and Francis Ltd  2020
    Abstract
    This study numerically investigates the side resistance of drilled shafts (bored piles) in sand using FLAC2D computer program. The results of the equations available in the literature are compared with the results of the present numerical study. A series of analyses is also conducted to assess the effects of various soil and pile parameters on the magnitude of side resistance of bored piles embedded in sand. Furthermore, the coupling (combined) effect of coefficient of lateral earth pressure with friction angle, and the coefficient of lateral earth pressure with a unit weight of soil on side resistance are investigated. The results show that the maximum effect of K0 on side resistance occurs... 

    Finite-element modelling of laterally loaded piles in clay

    , Article Proceedings of the Institution of Civil Engineers: Geotechnical Engineering ; Volume 162, Issue 3 , 2009 , Pages 151-163 ; 13532618 (ISSN) Ahmadi, M. M ; Ahmari, S ; Sharif University of Technology
    2009
    Abstract
    A three-dimensional finite-element procedure is used to analyse laterally loaded piles in clay. A strain-hardening von Mises constitutive law is used in the analyses. Two field-measured full-scale case studies, one in soft clay and the other one in stiff clay, are investigated by the constructed finite-element model. In order to study soil anisotropy and soil mass secondary structure, the real shear strength and elastic modulus are back-calculated by fitting the pile head load-deflection curve to the field results. Comparing back-calculated shear strength values with the measured ones indicates high anisotropy effect in stiff clay. In order to verify the model validity, the maximum occurred... 

    Physical Modeling of a Heat Exchanger Pile under Thermo-mechanical Loading in Sand

    , M.Sc. Thesis Sharif University of Technology Hashemi Senejani, Hossein (Author) ; Jafarzadeh, Fardin (Supervisor)
    Abstract
    Heat exchanger piles are innovative technologies used to harvest heat from shallow ground. Heat exchanger pile, also known as energy pile, transfers mechanical (structural) loads to the ground while acting as a heat exchanger. Heat extraction in winter and heat rejection during summer changes the pile, pile-soil interaction and the surrounding soil temperature. Therefore, pile temperature increments have been recognized as a new factor of controlling the behavior of energy piles in recent decades. Besides, thermal cyclic loadings may affect the serviceability and geotechnical performance of heat exchanger piles. Physical models provide an affordable experimental medium through which new... 

    Numerical Modeling of Pile Bearing Capacity and Group Efficiency under Axial Loading

    , M.Sc. Thesis Sharif University of Technology Mahvelati Shams Abadi, Siavash (Author) ; Ahmadi, Mohammad Mehdi (Supervisor)
    Abstract
    Bearing capacity of piles depends on many factors among which geometrical properties of piles, soil type, and strength properties of soil are of great importance. Based on these parameters, several approaches have been developed in order to overcome the uncertainty in the prediction of pile bearing capacity. Studies carried out in this area or research can be divided into two main categories: first, laboratory based approaches, and second, numerically based approaches. The research followed in the present study is based on numerical modeling. In this study, a single pile is initially modeled in the axisymmetric configuration and its bearing capacity is determined. The results of the model... 

    Numerical Modeling of Piles under Seismic Excitation

    , M.Sc. Thesis Sharif University of Technology Nikougoftar Zarif, Vahid (Author) ; Ahmadi, Mohammad Mehdi (Supervisor)
    Abstract
    In safe and economic designing of deep foundations for any structure, there are several factors affecting the behavior and response of a pile under seismic loads. These factors can be divided into three main categories: geometrical factors (e.g. Dimensions of the pile, soil, and mesh scheme), material properties (e.g. shear modulus, bulk modulus, soil elasticity, soil density, and shear strength) and earthquake load characteristics (e.g. frequency range, PGA, duration of excitation(. Studying the effects and importance of these factors in the final response of the pile (i.e. ultimate forces and displacements ) can help the design engineers of these foundations to optimize their designs.... 

    Numerical Modeling of the Dynamic Behavior of Piles and Pile Groups Due to Liquefaction- Induced Lateral Spreading

    , M.Sc. Thesis Sharif University of Technology Pakzad, Amin (Author) ; Haeri, Mohsen (Supervisor)
    Abstract
    The phenomenon of lateral spreading occurs as a consequence of earthquakes induced liquefaction in grounds with mild slopes or ending to an opening. This phenomenon has caused many damages to deep foundations and associated structures. Therefore, it is necessary to study and estimate the forces which may be induced by lateral spreading to these structures. Due to the complex mechanism of the effect of lateral spreading on the piles, various tests have been carried out in the form of shaking table as well as centrifuge tests. According to the results of these tests, the forces applied to the piles are significant and can cause crucial damages to deep foundations. On the other hand, because... 

    Investigating the Behavior of the Group Energy Pile in Unsaturated Silty Sand Soil Using Physical Modelling

    , M.Sc. Thesis Sharif University of Technology Fardin Jafarzadeh (Author) ; Jafarzadeh, Fardin (Supervisor)
    Abstract
    A physical model has been developed in the advanced soil mechanic lab of the sharif university of technology. This model has been used to investigate the thermo-hydro-mechanical behavior of the group energy pile, which was embedded in the unsaturated silty sand soil. This model contains a steel soil box, 4 aluminum piles, strain gauges, the total pressure cells, the thermocouples, and the mechanical load. Three sets of tests were conducted on these piles. In the first the thermal cycles were applied on 1 pile and in the second and third tests, the number of the energy piles was 2 and 3, respectively. The result has shown there was a permanent settlement at the end of the thermal cycles.... 

    Scour hole depth prediction around pile groups: review, comparison of existing methods, and proposition of a new approach

    , Article Natural Hazards ; Volume 88, Issue 2 , 2017 , Pages 977-1001 ; 0921030X (ISSN) Amini Baghbadorani, D ; Beheshti, A. A ; Ataie Ashtiani, B ; Sharif University of Technology
    Abstract
    A dataset of 365 laboratory tests for scour hole depth (SHD) around pile groups (PGs) under unidirectional aligned flow is compiled, and the performances of the existing equations are comparatively evaluated on the dataset using several statistical indices. A formulation based on a correction of HEC-18 equation provides the best estimate with a correlation factor of 0.58. The test durations of the considered data ranged between 4 and 389 h. A time factor (Kt) is proposed to take into account the temporal variation of the SHD around different PGs. Among the datasets, 51 long-duration experiments are scrutinized to show the temporal variation of scour depth toward equilibrium state. The time... 

    Numerical simulations of turbulent flow around side-by-side circular piles with different spacing ratios

    , Article International Journal of River Basin Management ; Volume 15, Issue 2 , 2017 , Pages 227-238 ; 15715124 (ISSN) Beheshti, A. A ; Ataie Ashtiani, B ; Dashtpeyma, H ; Sharif University of Technology
    Taylor and Francis Ltd  2017
    Abstract
    Numerical simulations of the turbulent flow around single and side-by-side piles at different spacing ratios (centre-to-centre distance to the pile diameter) with flow Reynolds number of 105 on the fixed flat-bed are presented. The calculations are performed using the computational fluid dynamics model, FLOW-3D, which solves the Navier–Stokes equations in three dimensions with a finite-volume method. The numerical results of time-averaged flow patterns around single and side-by-side piles are validated using the available experimental measurements. At the downstream of the single pile, dimensionless vortex shedding frequency (Strouhal number) is estimated as 0.22. The maximum values of bed... 

    Soil-pile Inelasticity Effect on Displacement Response of Piled Structures

    , M.Sc. Thesis Sharif University of Technology Bagheri Jeddi, Ashkan (Author) ; Mohtasham Dolatshahi, Kiarash (Supervisor)
    Abstract
    The common approach toward soil-pile-structure interaction phenomenon is that it will cause an increase in both effective natural period and damping ratio. Therefore, considering such a phenomenon in design and analysis of piled structures, will lead to smaller displacements. This attitude has gone far in a way that in different suggestions in various practices, this subject is neglected in a conservative manner. In this study, by investigating the response of a single degree of freedom structure founded on a pile group as the first vibrational mode of a structure, by the means of calculating several displacement ratios, has been proved that soil-pile-structure interaction can cause an... 

    Numerical study of ground vibration due to impact pile driving

    , Article Proceedings of the Institution of Civil Engineers: Geotechnical Engineering ; Vol. 167, issue. 1 , August , 2014 , p. 28-39 ; 13532618 Khoubani, A ; Ahmadi, M. M ; Sharif University of Technology
    Abstract
    Ground vibration due to pile driving is a long-lasting concern associated with the foundation construction industry. It is of great importance to estimate the level of vibration prior to the beginning of pile driving, to avoid structural damage, or disturbance of building occupants. In this study, an axisymmetric finite-element model that utilises an adaptive meshing algorithm has been introduced, using the commercial code Abaqus, to simulate full penetration of the pile from the ground surface to the desired depth by applying successive hammer impacts. The model has been verified by comparing the computed particle velocities with those measured in the field. The results indicate that the... 

    A case study on the soil–pile–structure interaction of a long span arched structure

    , Article Structure and Infrastructure Engineering ; Volume 12, Issue 12 , 2016 , Pages 1614-1633 ; 15732479 (ISSN) Kildashti, K ; Dolatshahi, K. M ; Mirghaderi, R ; Sharif University of Technology
    Taylor and Francis Ltd  2016
    Abstract
    Different concepts for modelling of soil-foundation in complete dynamic interaction analysis for a 110-m height 70-m span arched structure on 180 piles were investigated in this paper. The modelling approaches consisted of a sophisticated procedure to account for soil compliance and foundation flexibility by defining frequency-dependent springs and dashpots; namely, flexible-impedance base model. The results of this model were compared with those of the conventional modelling procedures; namely, fixed base model and flexible base model by defining frequency-independent springs. In the flexible-impedance base model, the substructure approach was employed through finite element modelling. To... 

    A new approach for group efficiency of drilled shafts in sand subjected to axial loading

    , Article International Journal of Geotechnical Engineering ; 2016 , Pages 1-13 ; 19386362 (ISSN) Ahmadi, M. M ; Mahvelati, S ; Sharif University of Technology
    Taylor and Francis Ltd  2016
    Abstract
    Understanding pile group behaviour is a critical key for geotechnical engineers. Nevertheless, there have been inadequate studies in the literature which tackle the many aspects of this important type of foundation. In this paper, a new and simple approach is presented for estimating group efficiency of drilled shafts installed in sandy soil under axial loading. This approach may prove handy for geotechnical practitioners in their pile group design decisions. The distinguishing point about this approach is its being less-conservative in comparison with the rather few previous equations available in the literature. The mathematical approach derived in this study is based on results from... 

    Seismic performance evaluation of jacket-type offshore platforms using endurance time method considering soil-pile-superstructure interaction

    , Article Scientia Iranica ; Volume 24, Issue 4 , 2017 , Pages 1843-1854 ; 10263098 (ISSN) Hasani, H ; Golafshani, A. A ; Estekanchi, H. E ; Sharif University of Technology
    Sharif University of Technology  2017
    Abstract
    In this paper, application of Endurance Time (ET) method in nonlinear seismic analysis of offshore pile supported systems has been studied. The ET method is a time-history analysis in which structures are subjected to intensifying artificial acceleration functions. The ET method reduces complexity and computational demand of conventional nonlinear seismic analysis, and it provides response at different seismic levels in a single ET analysis. The aforementioned methodology has been applied to a typical model of single pile and then to a functional jacket offshore platform in Persian Gulf region. Seismic response of aforesaid models by ET method has been compared with conventional time-history... 

    A new approach for group efficiency of drilled shafts in sand subjected to axial loading

    , Article International Journal of Geotechnical Engineering ; Volume 12, Issue 2 , 2018 , Pages 172-184 ; 19386362 (ISSN) Ahmadi, M. M ; Mahvelati, S ; Sharif University of Technology
    Taylor and Francis Ltd  2018
    Abstract
    Understanding pile group behaviour is a critical key for geotechnical engineers. Nevertheless, there have been inadequate studies in the literature which tackle the many aspects of this important type of foundation. In this paper, a new and simple approach is presented for estimating group efficiency of drilled shafts installed in sandy soil under axial loading. This approach may prove handy for geotechnical practitioners in their pile group design decisions. The distinguishing point about this approach is its being less-conservative in comparison with the rather few previous equations available in the literature. The mathematical approach derived in this study is based on results from... 

    Drilled shafts in sand: failure pattern and tip resistance using numerical and analytical approaches

    , Article International Journal of Geotechnical Engineering ; 2021 ; 19386362 (ISSN) Jazebi, M ; Ahmadi, M. M ; Sharif University of Technology
    Taylor and Francis Ltd  2021
    Abstract
    Drilled shafts are one of the most important types of pile foundations. Several researchers have suggested different soil failure patterns for driven piles; however, for drilled shafts, this issue is inadequately addressed in the literature. In this paper, a numerical approach was pursued to obtain the location and dimensions of plastic zones around the tip of drilled shafts. The dependence of the suggested failure pattern size on the soil properties and drilled shaft dimensions was investigated. Based on several analyses, a soil jug-shaped failure pattern around the tip of drilled shafts was proposed, and its dimensions were determined using the regression-based and trial and error... 

    On the thermal performance enhancement of spiral-coil energy piles with a thermal recovery system

    , Article Energy and Buildings ; Volume 269 , 2022 ; 03787788 (ISSN) Nazmabadi, R ; Asgari, B ; Hakkaki Fard, A ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    The pile foundation designed to ensure building stability when equipped with heat exchanger pipes to harvest geothermal energy is called an energy pile. Ground Source Heat Pump (GSHP) systems combined with energy piles have been used and developed as sustainable and efficient HVAC systems. Energy piles suffer from cold or heat accumulation in and around the pile, degrading their long-term performance. The current study seeks to alleviate this problem by proposing a thermal recovery system. The proposed system circulates ambient air in the pile foundation to extract the accumulated heat. A three-dimensional transient computational fluid dynamics model of the GSHP system coupled with the...