Loading...
Search for:
mortazavi-moghaddam--a--r
0.141 seconds
Total 20187 records
Observation of cosmic-ray anisotropy in the decade below 1 PeV with a pentagon array OBSERVATION of COSMIC-RAY ANISOTROPY in the
, Article Physical Review D ; Volume 97, Issue 6 , 2018 ; 24700010 (ISSN) ; Bahmanabadi, M ; Sharif University of Technology
American Physical Society
2018
Abstract
The study of the anisotropy of the arrival directions is an essential tool to investigate the origin and propagation of cosmic rays primaries. A pentagon array has been designed to collect data around the knee region of cosmic ray spectrum. The experimental results of this array obtained from October 2016 to October 2017. During this period, more than 5.3×105 extensive air shower events at energies in the decade below 1 PeV has been accumulated by this array at Sharif University of Technology in Tehran (35°43′N, 51°20′E, 1200m a.s.l=890 g cm-2). In analyzing the data set, we have used appropriate techniques of analysis and considered environmental effects. We report the analysis of the...
Deformation modeling of an FGM plate under external force
, Article Advanced Materials Research ; Sharif University of Technology , Volume 622 , 2013 , Pages 246-253 ; 10226680 (ISSN) ; 9783037855638 (ISBN) ; Ahmadian, M. T ; Sarkeshi, M ; Kheradpisheh, A ; Sharif University of Technology
2013
Abstract
Deformation modeling of an infinite plate of functionally graded materials (FGMs) loaded by normal force to the plate surface is studied. The material properties of FGM plate are assumed to be graded in the thickness direction according to a simple power-law distribution in terms of the volume fractions of the constituents. The governing equations are based on stress-strain relation and the equilibrium force equation. Keeping generality, FGM plate has been assumed as a multilayer with linear material property in each layer while arbitrary exponential material property through the thickness. A plate made of Aluminum and Alumina is considered as an example to illustrate the effects of the...
Investigating the features of a pentagon array for studying Extensive Air Showers
, Article Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment ; Volume 962 , 2020 ; Rastegarzadeh, G ; Mortazavi Moghaddam, S ; Sharif University of Technology
Elsevier B.V
2020
Abstract
We used a method to evaluate angular accuracy for air showers direction recorded by a pentagon array of scintillation detectors. This is achieved by using the coincidences between the air showers recorded by the two sub-arrays. Also, using the CORSIKA code the angular precision of this array and the effect of inherent error on it is obtained at different energies of the primary particles and at different zenith angles. © 2020 Elsevier B.V
Alborz-I array: A simulation on performance and properties of the array around the knee of the cosmic ray spectrum
, Article Astroparticle Physics ; Volume 76 , 2016 , Pages 1-8 ; 09276505 (ISSN) ; Bahmanabadi, M ; Pezeshkian, Y ; Mortazavi Moghaddam, S ; Sharif University of Technology
Elsevier
2016
Abstract
The first phase of the Alborz Observatory Array (Alborz-I) consists of 20 plastic scintillation detectors each one with surface area of 0.25 m2spread over an area of 40 × 40 m2 realized to the study of Extensive Air Showers around the knee at the Sharif University of Technology campus. The first stage of the project including construction and operation of a prototype system has now been completed and the electronics that will be used in the array instrument has been tested under field conditions. In order to achieve a realistic estimate of the array performance, a large number of simulated CORSIKA showers have been used. In the present work, theoretical results obtained in the study of...
Optimization of dimensions and inner surface of water Cherenkov detector with one photomultiplier tube (PMT) for the Alborz observatory air shower array
, Article Astroparticle Physics ; Volume 35, Issue 12 , July , 2012 , Pages 792-796 ; 09276505 (ISSN) ; Khalaj, P ; Bahmanabadi, M ; Purmohammad, D ; Abdollahi, S ; Sharif University of Technology
2012
Abstract
In order to be more precise to find primary cosmic particles directions, nowadays detectors and data analysis for studying secondary particles in extensive air showers have an ongoing progress and water Cherenkov detector is considered as a secondary particles detector. Our aim in this paper is to optimize the size and the inner surface characteristic of a cylindrical water Cherenkov tank with one PMT in order to use at the Alborz observatory air shower array which consists of 20 plastic scintillation detectors and 10 water Cherenkov detectors. By comparing data gathered by tanks with diffusing and specular reflection inner surfaces, we show that the diffusing inner surface is more...
Numerical simulation of cold and hot water injection into naturally fractured porous media using the extended–FEM and an equivalent continuum model
, Article International Journal for Numerical and Analytical Methods in Geomechanics ; 2021 ; 03639061 (ISSN) ; Pirmoradi, P ; Khoei, A. R ; Sharif University of Technology
John Wiley and Sons Ltd
2021
Abstract
In this paper, a computational technique is presented for the isothermal and non-isothermal water injection into naturally fractured oil reservoirs. A remarkable number of naturally fractured reservoirs contain relatively heavy oils that could not be extracted economically; hence, the thermal recovery methods are extensively used for such reservoirs. In this study, the effectiveness of hot water injection over cold (isothermal) water injection in oil production is quantified. The influence of long and short fractures and their alignments on oil recovery are discussed. To this end, a 2D model for two-phase fluid flow and heat transfer is presented. The medium is assumed to be partially...
Numerical simulation of cold and hot water injection into naturally fractured porous media using the extended–FEM and an equivalent continuum model
, Article International Journal for Numerical and Analytical Methods in Geomechanics ; Volume 46, Issue 3 , 2022 , Pages 617-655 ; 03639061 (ISSN) ; Pirmoradi, P ; Khoei, A. R ; Sharif University of Technology
John Wiley and Sons Ltd
2022
Abstract
In this paper, a computational technique is presented for the isothermal and non-isothermal water injection into naturally fractured oil reservoirs. A remarkable number of naturally fractured reservoirs contain relatively heavy oils that could not be extracted economically; hence, the thermal recovery methods are extensively used for such reservoirs. In this study, the effectiveness of hot water injection over cold (isothermal) water injection in oil production is quantified. The influence of long and short fractures and their alignments on oil recovery are discussed. To this end, a 2D model for two-phase fluid flow and heat transfer is presented. The medium is assumed to be partially...
Modeling enhanced geothermal systems using a hybrid XFEM–ECM technique
, Article Applied Thermal Engineering ; Volume 230 , 2023 ; 13594311 (ISSN) ; Rezaie Beydokhti, O ; Khoei, A. R ; Sharif University of Technology
Elsevier Ltd
2023
Abstract
Heat extraction from Enhanced Geothermal Systems (EGS) involves several multi-physics coupling processes, including the seepage through the fractured porous media, the thermal exchange between the working fluid and the matrix, and the deformation of fractured porous media, which play essential roles in exploiting the geothermal energy contained in hot dry rocks. In this study, a fully coupled numerical model for Thermo-Hydro-Mechanical simulation of EGS is presented based on the local thermal non-equilibrium using the eXtended Finite Element Method (XFEM) and Equivalent Continuum Method (ECM). The ECM can provide the equivalent tensors of not only fluid permeability but also solid...
A two dimensional wavelet packet approach for ECG compression
, Article 6th International Symposium on Signal Processing and Its Applications, ISSPA 2001, Kuala Lumpur, 13 August 2001 through 16 August 2001 ; Volume 1 , 2001 , Pages 226-229 ; 0780367030 (ISBN); 9780780367036 (ISBN) ; Nayebi, K ; Sharif University of Technology
IEEE Computer Society
2001
Abstract
An improved compression algorithm for ECG signals is presented using temporal alignment of beats and 2-D wavelet packet transform (WPT). This 2-D transform based approach utilizes the fact that the electrocardiogram (ECG) signals generally show two types of correlation, namely correlation between subsequent samples within each ECG cycle (intrabeat) and correlation between subsequent cycles (interbeat). One simple compression algorithm in the 2-D WPT domain, which is applied to some records in the MIT-BIH arrhythmia database shows lower percent root mean square difference (PRD) than 1-D wavelet based compression methods for the same compression ratio (CR). © 2001 IEEE
Delivery of melittin-loaded niosomes for breast cancer treatment: an in vitro and in vivo evaluation of anti-cancer effect
, Article Cancer Nanotechnology ; Volume 12, Issue 1 , 2021 ; 18686958 (ISSN) ; Akbarzadeh, I ; Marzbankia, E ; Farid, M ; khaledi, L ; Reihani, A. H ; Javidfar, M ; Mortazavi, P ; Sharif University of Technology
BioMed Central Ltd
2021
Abstract
Background: Melittin, a peptide component of honey bee venom, is an appealing candidate for cancer therapy. In the current study, melittin, melittin-loaded niosome, and empty niosome had been optimized and the anticancer effect assessed in vitro on 4T1 and SKBR3 breast cell lines and in vivo on BALB/C inbred mice. "Thin-layer hydration method" was used for preparing the niosomes; different niosomal formulations of melittin were prepared and characterized in terms of morphology, size, polydispersity index, encapsulation efficiency, release kinetics, and stability. A niosome was formulated and loaded with melittin as a promising drug carrier system for chemotherapy of the breast cancer cells....
Conceptual design and simulation of a semi-automatic cell for the washing and preparation of a corpse prior to an islamic burial
, Article International Journal of Advanced Robotic Systems ; Volume 9 , 2012 ; 17298806 (ISSN) ; Osgouie, K. G ; Nasiri, E ; Nemati, A. R ; Mortazavi, A. M ; Sharif University of Technology
IJARS
2012
Abstract
Washing the corpse and dressing the body prior to burial is an act of love and necessity in many religions. Applying robotics and automation technologies for the washing and preparation of a deceased Muslim in accordance with the Islamic Shari'at laws has been the challenging foundation of this research. With an increasing annual population growth resulting in an increase in the number of deaths (historically and/or immediately after a national disaster), automating part of this procedure to increase the speed of operation, reducing the health risks to the personnel of washing rooms "Ghassalkhaneh™ at the cemeteries and enhancing their quality of life have been the primary objectives of this...
Seismic performance of stainless-steel built-up box columns subjected to constant axial loads and cyclic lateral deformations
, Article Structures ; Volume 33 , 2021 , Pages 4080-4095 ; 23520124 (ISSN) ; Sadrara, A ; Jalali, S. R ; Sharif University of Technology
Elsevier Ltd
2021
Abstract
The seismic behavior of stainless-steel built-up box columns subjected to constant axial loads and cyclic lateral deformation that are used in special moment frames (SMFs) has been investigated through finite element (FE) analysis. A total of 208 numerical models were conducted to cover a range of parameters affecting the seismic behavior of the columns. These include the web slenderness ratio, flange slenderness ratio, global slenderness ratio, axial load level, and lateral loading protocol. The performance indices of overstrength factor, axial shortening, out-of-plane deformation, plastic hinge length, and rotation capacity were calculated and compared. Local buckling of the columns also...
Coupling between microring resonators in presence of Kerr effect
, Article Optics Communications ; Volume 281, Issue 9 , 2008 , Pages 2644-2650 ; 00304018 (ISSN) ; Bahrampour, A. R ; Farrahi Moghaddam, R ; Taraz, M ; Sharif University of Technology
2008
Abstract
The high degree of intensity values in microring resonators needs a careful treatment of nonlinear phenomena. Nonlinear effects are analyzed in coupling problem of ring-ring directional couplers. It has been observed that the nonlinearity affects the coupling device dramatically, and can be used as controlling techniques in such as coupled resonator optical waveguides. © 2007 Elsevier B.V. All rights reserved
All-optical flip-flop by nonlinear coupling of microring and waveguide
, Article Optics Communications ; Volume 281, Issue 17 , 1 September , 2008 , Pages 4504-4508 ; 00304018 (ISSN) ; Ghadi, A ; Farrahi Moghaddam, R ; Sohbatzadeh, F ; Sharif University of Technology
2008
Abstract
Careful studies of coupling show that transmittance power between microring and waveguide is dependant to field intensity. Also more researches show that optical multistable behavior of microring had been affected by nonlinear power coupling efficiency in high field intensities. Operation of microring in nonlinear regions can be so useful in designing all optical switches and control techniques. In this paper has been proposed an all-optical flip-flop based on nonlinear treatment of microring. © 2008 Elsevier B.V. All rights reserved
A one-pot multicomponent synthesis of polysubstituted thiophenes via the reactions of an isocyanide, α-haloketones, and β-ketodithioesters in water
, Article Tetrahedron Letters ; Vol. 55, Issue. 6 , 5 February , 2014 , pp. 1251-1254 ; ISSN: 00404039 ; Khodabakhshi, M. R ; Latifkar, A ; Sharif University of Technology
2014
Abstract
An efficient synthesis of polysubstituted thiophene derivatives is achieved via the multicomponent reaction of β-ketodithioesters, α-haloketones, and cyclohexylisocyanide in aqueous medium
Generation of various carbon nanostructures in water using IR/UV laser ablation
, Article Journal of Physics D: Applied Physics ; Volume 46, Issue 16 , March , 2013 ; 00223727 (ISSN) ; Parvin, P ; Reyhani, A ; Mirershadi, S ; Sadighi Bonabi, R ; Sharif University of Technology
2013
Abstract
A wide variety of carbon nanostructures were generated by a Q-switched Nd : YAG laser (1064 nm) while mostly nanodiamonds were created by an ArF excimer laser (193 nm) in deionized water. They were characterized by transmission electron microscopy, Raman spectroscopy and x-ray photoelectron spectroscopy. It was found that the IR laser affected the morphology and structure of the nanostructures due to the higher inverse bremsstrahlung absorption rate within the plasma plume with respect to the UV laser. Moreover, laser-induced breakdown spectroscopy was carried out so that the plasma created by the IR laser was more energetic than that generated by the UV laser
FMNV continuous non-malleable encoding scheme is more efficient than believed
, Article 13th International ISC Conference on Information Security and Cryptology, 7 September 2016 through 8 September 2016 ; 2016 , Pages 72-78 ; 9781509039494 (ISBN) ; Salmasizadeh, M ; Daneshgar, A ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2016
Abstract
Non-malleable codes are kind of encoding schemes which are resilient to tampering attacks. The main idea behind the non-malleable coding is that the adversary can't be able to obtain any valuable information about the message. Non-malleable codes are used in tamper resilient cryptography and protecting memory against tampering attacks. Several kinds of definitions for the non-malleability exist in the literature. The Continuous non-malleability is aiming to protect messages against the adversary who issues polynomially many tampering queries. The first continuous non-malleable encoding scheme has been proposed by Faust et al. (FMNV) in 2014. In this paper, we propose a new method for proving...
Enhancing water desalination in graphene-based membranes via an oscillating electric field
, Article Desalination ; Volume 495 , December , 2020 ; Moosavi, A ; Nouri Borujerdi, A ; Sharif University of Technology
Elsevier B.V
2020
Abstract
Water desalination methods on the basis of newly developed graphene-based membrane have been introduced as a more efficient alternative for the conventional water purification technologies such as classical thermal desalination and reverse osmosis (RO). However, the increase of water permeation rate and ion rejection are still the main subjects in this field. In this study, a new method based on using oscillating electric field is proposed to improve the performance of nanoporous graphene. The effects of the amplitude and oscillation frequency of the electric field and the pore size of the membrane on the water permeation and salt rejection are studied by conducting molecular dynamics...
Strong continuous non-malleable encoding schemes with tamper-detection
, Article Information Sciences ; Volume 451-452 , 2018 , Pages 253-270 ; 00200255 (ISSN) ; Salmasizadeh, M ; Daneshgar, A ; Sharif University of Technology
Elsevier Inc
2018
Abstract
A non-malleable encoding scheme is a keyless encoding scheme which is resilient to tampering attacks. Such a scheme is said to be continuously secure if the scheme is resilient to attacks containing more than one tampering procedure. Moreover, such a scheme is said to have the T-tamper-detection property if any kind of tampering attack by an adversary chosen from a predetermined class of algorithms T is detected. Faust et al. have introduced a continuous non-malleable encoding scheme based on non-interactive zero-knowledge (NIZK) which is secure in a strong model for which the adversary receives the tampered codeword as a response to its tampering query if the tampered codeword is not...
Water desalination by charged multilayer graphene membrane: A molecular dynamics simulation
, Article Journal of Molecular Liquids ; Volume 355 , 2022 ; 01677322 (ISSN) ; Moosavi, A ; Nouri Borujerdi, A ; Sharif University of Technology
Elsevier B.V
2022
Abstract
Graphene, due to its unique excellent properties, is proposed as a developing method with high efficiency compared to classical water desalination methods. In this regard, charging the membrane is considered a promising and effective approach to enhance the performance of the graphene membrane. In this research, by using molecular dynamics simulations, the water desalination by charged multilayer graphene is evaluated and the influence of electric charge amount and geometric parameters, including the pore diameter and the interlayer distance, are investigated. According to the results, the multilayer nanoporous graphene with 16.35 Å pore diameter, in which the electric charge is distributed...