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hashemi-senejani--h
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Physical Modeling of a Heat Exchanger Pile under Thermo-mechanical Loading in Sand
, M.Sc. Thesis Sharif University of Technology ; 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...
Investigation of thermo-mechanical response of a geothermal pile through a small-scale physical modelling
, Article 2nd International Conference on Energy Geotechnics, ICEGT 2020, 20 September 2020 through 23 September 2020 ; Volume 205 , 2020 ; Ghasemi Fare, O ; Yazdani Cherati, D ; Jafarzadeh, F ; Sharif University of Technology
EDP Sciences
2020
Abstract
Energy piles have been used around the world to harvest geothermal energy to heat and cool residential and commercial buildings. In order to design energy geo-structures, thermo-mechanical response of the geothermal pile must be carefully understood. In this paper, a small scale physical model is designed and a series of heating thermal cycles with various vertical mechanical loads are performed. The instrumented pile is installed inside a dry sand bed. Changes in pile head displacement, shaft strains and pile and sand temperatures are monitored using an LVDT, strain gauges and thermocouples, respectively. Prolonged heating cycles, which would continue until boundary temperature changes,...
Microstructure and tensile properties of squeeze cast Al-Zn-Mg-Cu alloy
, Article Materials Science and Technology ; Volume 17, Issue 6 , 2001 , Pages 639-644 ; 02670836 (ISSN) ; Ashoori, H ; Davami, P ; Sharif University of Technology
IOM Communications Ltd
2001
Abstract
It is well known that wrought aluminium alloys have tensile properties superior to those of the cast products. Wrought grade alloys cannot usually be produced by conventional casting processes to attain the same level of tensile properties. However, progress in casting methods in recent years has made it possible to produce wrought alloys by means of squeeze casting techniques. In the present study an Al-Zn-Mg-Cu alloy as been produced by squeeze casting. Tensile properties close to those of wrought products have been achieved by controlling the microstructure, pressure, and other processing parameters. © 2001 IoM Communications Ltd
Overall electroelastic moduli of particulate piezocomposites with non-dilute BCC microstructure
, Article International Journal of Mechanical Sciences ; Volume 53, Issue 9 , 2011 , Pages 777-785 ; 00207403 (ISSN) ; Kargarnovin, M. H ; Sharif University of Technology
2011
Abstract
The present paper addresses an analytical method to determine the overall behavior of piezocomposite materials containing body centered cubic (BCC) distribution of arbitrary oriented ellipsoidal heterogeneities. This approach is based on the extension of the electromechanical equivalent inclusion method (EMEIM) to interacting multi-inhomogeneities. In this treatment the short and long range interactions of the piezoelectric particles are appropriately incorporated through the homogenizing eigenstrainelectric field. The periodicity of the microstructure of the medium suggests representing the eigenfields in terms of Fourier series, accounting for the matrixparticle, interparticle and...
Electroelastic fields in interacting piezoelectric inhomogeneities by the electromechanical equivalent inclusion method
, Article Smart Materials and Structures ; Volume 19, Issue 3 , 2010 ; 09641726 (ISSN) ; Kargarnovin, M. H ; Hashemi, R ; Sharif University of Technology
2010
Abstract
Consider two piezoelectric ellipsoidal inhomogeneities of arbitrary size, orientation and material constants, which in turn are surrounded by an infinite isotropic medium. The system under consideration is subjected to far-field non-uniform electromechanical loadings. Based on the extension of the electromechanical equivalent inclusion method (EMEIM), the present paper develops a unified solution for determination of the associated electroelastic fields in the vicinity of interacting inhomogeneities. Accordingly, each of the piezoelectric inhomogeneities is broken down into two equivalent inclusions with proper polynomial eigenstrains and eigenelectric fields. The robustness and efficacy of...
Buckling of cracked cylindrical shells with internal pressure subjected to an axial load
, Article 2002 ASME Presures Vessels and Piping Conference, New Orleans, LA, 17 November 2002 through 22 November 2002 ; Volume 451 , 2002 , Pages 73-80 ; 0277027X (ISSN) ; Estekanchi, H. E ; Nayeb Hashemi, H ; Sharif University of Technology
2002
Abstract
Cylindrical shells constitute the main structural component in pressure vessels and pipelines. Buckling is one of the main failure considerations when designing these cylindrical shells. Defects such as cracks may develop during manufacturing or service life of these structures. These defects can severely affect their buckling behavior due to high stress field generated around these defects. Finite Element Analyses are performed to study the buckling behavior of cylindrical shells with and without a crack, under various internal pressures. Effects of crack length and its orientation on the buckling loads of cylindrical shells having a through or a thumbnail crack are studied. The results...
Dynamic response of cracked cylindrical shells with internal pressure
, Article ASME International Mechanical Engineering Congress and Exposition, Proceedings ; 2002 , Pages 257-265 ; 0791836282 (ISBN); 9780791836286 (ISBN) ; Nayeb Hashemi, H ; Estekanchi, H. E ; Sharif University of Technology
American Society of Mechanical Engineers (ASME)
2002
Abstract
Sub-surface cracks in pipelines with internal pressure may severely affect their dynamic response. The extreme cases of these cracks are when these cracks go through the thickness of the pipes. Dynamic responses of cracked and un-cracked pipes with fixed ends and under various internal pressures were evaluated experimentally and theoretically. In the experimental part, the effects of pipe internal pressure on the resonant frequencies and damping of the pipe were evaluated. In the theoretical part, finite element analyses were performed to find dynamic response of pipes with various crack length and orientation respect to the axis of the pipe. The experimental results showed resonant...
Buckling of cracked cylindrical shells with internal pressure subjected to an axial load
, Article ASME International Mechanical Engineering Congress and Exposition, Proceedings ; 2002 , Pages 73-80 ; 0791836452 (ISBN); 9780791836453 (ISBN) ; Estekanchi, H. E ; Nayeb Hashemi, H ; Sharif University of Technology
American Society of Mechanical Engineers (ASME)
2002
Abstract
Cylindrical shells constitute the main structural component in pressure vessels and pipelines. Buckling is one of the main failure considerations when designing these cylindrical shells. Defects such as cracks may develop during manufacturing or service life of these structures. These defects can severely affect their buckling behavior due to high stress field generated around these defects. Finite Element Analyses are performed to study the buckling behavior of cylindrical shells with and without a crack, under various internal pressures. Effects of crack length and its orientation on the buckling loads of cylindrical shells having a through or a thumbnail crack are studied. The results...
Preparation of ethyl cellulose microcapsules containing perphenazine and polymeric perphenazine based on acryloyl chloride for physical and chemical studies of drug release control [electronic resource]
, Article Polymer International ; Volume 47, Issue 4, pages 413–418, December 1998 ; Pourjavadi, A ; Hashemi, S. A ; Arabi. , H ; Sharif University of Technology
Abstract
The preparation of microcapsules containing perphenazine by solvent evaporation using ethyl cellulose is described. The microparticles are formed after solvent evaporation and polymer precipitation. The drug was dissolved in a polymer solution and emulsified into an aqueous phase to form microcapsules. To study the effects on particle size, encapsulation efficiency and morphology, three different molecular weights of ethyl cellulose (Mw=47000, 71000 and 99000) were used. Covalent bonding of drugs to polymers via hydrolytically or enzymatically cleavable covalent bond was achieved for sustained drug delivery. The release rate of perphenazine from these systems was investigated
Pattern recognition analysis of gas chromatographic and infrared spectroscopic fingerprints of crude oil for source identification
, Article Microchemical Journal ; Volume 153 , 2020 ; Parastar, H ; Sharif University of Technology
Elsevier Inc
2020
Abstract
In this study, a chemometric strategy was developed for analysis of gas chromatographic (GC) and infrared spectroscopic (FT-IR) fingerprints of nine crude oil samples from the main oil wells of Iran to classify them and to find their origins. In this regard, a fractionation method based on saturated, aromatic, resin, and asphaltene (SARA) test was used. Then, these fractions were analyzed by GC-FID and GC–MS. Also, nine crude oil samples were analyzed by FT-IR. The obtained GC fingerprints were aligned using correlation optimized warping (COW) and auto-scaled, and then analyzed using principal component analysis (PCA) and hierarchical cluster analysis (HCA). Evaluation of PCA scores plot...
Mathematical performance modelling of adaptive wormhole routing in optoelectronic hypercubes
, Article Journal of Parallel and Distributed Computing ; Volume 67, Issue 9 , Volume 67, Issue 9 , 2007 , Pages 967-980 ; 07437315 (ISSN) ; Sarbazi Azad, H ; Sharif University of Technology
2007
Abstract
In this paper, an analytical performance model for adaptive wormhole routing in the hypercube-based optical transpose interconnection system (OTIS-hypercube) is proposed and validated. Using this model, the performance merits of the OTIS-hypercube are discussed. We also compare the performance of the OTIS-hypercube with that of equivalent hypercube network under different implementation constraints. Compared to pure simulation results, the presented model can serve as a more appropriate and compact method to display the performance characteristics of OTIS-hypercube networks. © 2007 Elsevier Inc. All rights reserved
Vis-NIR hyperspectral imaging coupled with independent component analysis for saffron authentication
, Article Food Chemistry ; Volume 393 , 2022 ; 03088146 (ISSN) ; Parastar, H ; Sharif University of Technology
Elsevier Ltd
2022
Abstract
In the present contribution, visible-near infrared hyperspectral imaging (Vis-NIR-HSI) combined with a novel chemometric approach based on mean-filed independent component analysis (MF-ICA) followed by multivariate classification techniques is proposed for saffron authentication and adulteration detection. First, MF-ICA was used to exploit pure spatial and spectral profiles of the components. Then, principal component analysis (PCA) and hierarchical cluster analysis (HCA) were used to find patterns of authentic samples based on their distribution maps. Then, detection of five common plant-derived adulterants of saffron including safflower, saffron style, calendula, rubia and turmeric were...
Hydrothermally coated Mg–1Zn–0.2Ag alloy with improved mechanical and corrosion properties: a comparative study on the role of substrate
, Article Journal of Materials Science ; Volume 59, Issue 34 , 2024 , Pages 16324-16340 ; 00222461 (ISSN) ; Alizadeh, R ; Aashuri, H ; Sharif University of Technology
2024
Abstract
The use of magnesium as an implant in a physiological environment is seriously challenged by its fast degradation rate, an effect that results in loss of mechanical support before the completion of the tissue healing. Among different methods, this paper focuses on the hydrothermal coating method, where the main focus is on the role of substrate microstructure on the overall quality of the formed coating under the same coating condition. In this study, an as-cast Mg–1Zn–0.2Ag alloy was processed using a variety of techniques, including solution heat treatment, extrusion and equal-channel angular pressing (ECAP). Hydrothermal coating was formed by placing samples in distilled water for 5 h at...
Free vibration of generally laminated plates with various shapes
, Article Polymer Composites ; Volume 32, Issue 3 , FEB , 2011 , Pages 445-454 ; 02728397 (ISSN) ; Kargarnovin, M. H ; Hosseini Hashemi, S. H ; Sharif University of Technology
2011
Abstract
This article is focused on a simple approach for determining the natural frequency and mode shape of laminated angle-ply plates with various shapes by rectangular orthotropy. Since the boundary of the domain for all shapes are not natural to the material coordinate axes it seems appropriate to express the plate displacement amplitude in terms of a polynomial and a general shape function multiplication in the x and y coordinates. The boundary conditions considered are clamped and simply supported edges. The effect of the fiber orientation, layer number, and lamination sequence on the natural frequencies of plates is also considered. The natural frequency determinant has been generated using...
Buckling of the composite cracked cylindrical shells subjected to axial load
, Article 2003 ASME International Mechanical Engineering Congress, Washington, DC, 15 November 2003 through 21 November 2003 ; Volume 470 , 2003 , Pages 87-93 ; 0277027X (ISSN) ; Nayeb Hashemi, H ; Estekanchi, H. E ; ASME ; Sharif University of Technology
American Society of Mechanical Engineers (ASME)
2003
Abstract
Cylindrical shells constitute the main structural components in pressure vessels and pipelines. Cylindrical shells made of fiber-reinforced composites are now being considered in the design of many components due to their high specific strength and stiffness. Buckling is one of the main failure considerations, when designing the cylindrical shells. The buckling behavior of the composite cylindrical shells can severely be compromised by introducing defect in the structure, due to high stress field generated around these defects. Defects could be generated during service due to cyclic loading or during manufacturing. A reliable operation of these structures require to understand the effects of...
Permeability of Fusion-bonded epoxy coating to cathodic current: Pulsed current vs. direct current cathodic protection
, Article Materials Chemistry and Physics ; Volume 319 , 2024 ; 02540584 (ISSN) ; Keshavarz, H ; Paydar, M. H ; Hashemi, B ; Sharif University of Technology
2024
Abstract
This work aimed at investigating the permeability of Fusion-Bonded Epoxy (FBE) coating to cathodic current resulting from pulsed current cathodic protection (PCCP) in comparison to direct-current cathodic protection (DCCP). To accomplish this objective, a series of experimental techniques were employed, including chronoamperometry, chronopotentiometry, electrochemical impedance spectroscopy (EIS), and in-situ pH measurements. Subsequently, Fourier-transform infrared spectroscopy (FTIR), Raman spectroscopy and, X-ray photoelectron spectroscopy (XPS) analyses were conducted to examine the alterations in the chemistry of FBE. The FBE coating exhibits slight permeability to the cathodic current...
Sandwich beam model for free vibration analysis of bilayer graphene nanoribbons with interlayer shear effect
, Article Journal of Applied Physics ; Vol. 115, issue. 17 , May , 2014 ; ISSN: 00218979 ; Shokrollahi, H ; Hosseini-Hashemi, S ; Sharif University of Technology
2014
Abstract
In this study, sandwich beam model (SM) is proposed for free vibration analysis of bilayer graphene nanoribbons (BLGNRs) with interlayer shear effect. This model also takes into account the intralayer (in-plane) stretch of graphene nanoribbons. The molecular dynamics (MD) simulations using the software LAMMPS and Adaptive Intermolecular Reactive Empirical Bond Order (AIREBO) potential are done to validate the accuracy of the sandwich model results. The MD simulation results include the two first frequencies of cantilever BLGNRs with different lengths and two interlayer shear moduli, i.e., 0.25 and 4.6GPa. These two interlayer shear moduli, 0.25 and 4.6GPa, can be obtained by sliding a small...
Throughput-memory footprint trade-off in synthesis of streaming software on embedded multiprocessors
, Article Transactions on Embedded Computing Systems ; Volume 13, Issue 3 , December , 2013 ; 15399087 (ISSN) ; Foroozannejad, M. H ; Ghiasi, S ; Sharif University of Technology
2013
Abstract
We study the trade-off between throughput and memory footprint of embedded software that is synthesized from acyclic static dataflow (task graph) specifications targeting distributed memory multiprocessors. We identify iteration overlapping as a knob in the synthesis process by which one can trade application throughput for its memory requirement. Given an initial processor assignment and non-overlapped task schedule, we formally present underlying properties of the problem, such as constraints on a valid iteration overlapping, maximum possible throughput, and minimum memory footprint. Moreover, we develop an effective algorithm for generation of a rich set of design points that provide a...
Simulation of thermally developing laminar ow in partially filled porous pipes under wall suction
, Article Scientia Iranica ; Volume 23, Issue 6 , 2016 , Pages 2641-2649 ; 10263098 (ISSN) ; Seyyed Hashemi, M. H ; Sharif University of Technology
Sharif University of Technology
2016
Abstract
This study numerically investigates uid ow and heat transfer enhancement of a two-dimensional developing laminar ow in an axisymmetric pipe with partially filled porous material attached to the wall. The effects of porous layer in the range of 0 ≤ δ=R < 1 and Darcy number in the range of 10-6 ≤ Da ≤ 10-4 are investigated. It is found that thermal entrance length increases with porous layer thickness and is longer than a plain pipe. In addition, the dependence of Nusselt number on the thickness of the porous layer is not monotonic. A critical value of the porous layer thickness exists at which the Nusselt number value reaches the minimum. As the porous layer is thickening, more uid is pushed...
Silane–based modified papers and their extractive phase roles in a microfluidic platform
, Article Analytica Chimica Acta ; Volume 1128 , 2020 , Pages 31-41 ; Rezvani, O ; Bagheri, H ; Sharif University of Technology
Elsevier B.V
2020
Abstract
Herein, some (modified) paper–based substrates were prepared and utilized as extractive phases in a microfluidic device and their extraction performances examined for analytes with different polarities. Reagents including hexadecyltrimethoxysilane (HDTMS), phenyltrimethoxysilane (PTES), (3-aminopropyl) triethoxysilane (APTES) and 3–(2,3–epoxypropoxy) propyltrimethoxysilane (EPPTMOS) were implemented for the modification process. Due to the induction of different silane functional groups, it was anticipated to have various interactions for the tested analytes. Eventually, the prepared paper sheets were used as extractive phases for solid–phase extraction within a microfluidic system. The...