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    The effect of soil-structure interaction on hysteretic energy demand of buildings

    , Article Structural Engineering and Mechanics ; Volume 24, Issue 5 , 2006 , Pages 641-645 ; 12254568 (ISSN) Nakhaei, M ; Ghannad, M. A ; Sharif University of Technology
    Techno-Press  2006
    Abstract
    The effect of soil-structure interaction (SSI) on hysteresis energy demand of buildings using an ensemble of alluvium site records was investigated. The structure and the soil were molded separately and then combined to constitute the soil-structure model using the sub-structure method. The key parameters effecting the response of the soil-structure system were found to be a non-dimensional frequency as a representative of structure to soil stiffness ratio; and aspect ratio of the building. It was found that the hysteric energy dissipated in a structure under an earthquake can be highly effected when the stiffness of the soil beneath the structure is altered  

    A decomposed solution to multiple-energy carriers optimal power flow

    , Article IEEE Transactions on Power Systems ; Vol. 29, issue. 2 , March , 2014 , p. 707-716 ; ISSN: 8858950 Moeini-Aghtaie, M ; Abbaspour, A ; Fotuhi-Firuzabad, M ; Hajipour, E ; Sharif University of Technology
    Abstract
    Presence of energy hubs in the future vision of energy networks creates a great opportunity for system planners and operators to move towards more efficient systems. The role of energy hubs as the intermediate in multi-carrier energy (MCE) systems calls for a generic framework to study the new upcoming technical as well as economical effects on the system performance. In response, this paper attempts to develop a general optimization and modeling framework for coupled power flow studies on different energy infrastructures. This, as a large-scale nonlinear problem, is approached through a robust optimization technique, i.e., multi-agent genetic algorithm (MAGA). The proposed procedure... 

    Energy saving in HVAC systems using nanofluid

    , Article Applied Thermal Engineering ; Volume 31, Issue 8-9 , 2011 , Pages 1543-1545 ; 13594311 (ISSN) Firouzfar, E ; Soltanieh, M ; Noie, S. H ; Saidi, S. H ; Sharif University of Technology
    Abstract
    The present study tries to use the methanol-silver nanofluid filled thermosyphon heat exchanger and compares the effectiveness as well as energy saving with pure methanol. Experimental results show that using methanol-silver nanofluid, leads to energy saving around 8.8-31.5% for cooling and 18-100% for reheating the supply air stream in an air conditioning system  

    Content delivery networks: interactions between storage/delay/cost

    , Article 2018 Iran Workshop on Communication and Information Theory, IWCIT 2018, 25 April 2018 through 26 April 2018 ; 2018 , Pages 1-6 ; 9781538641491 (ISBN) Salehi, M. J ; Motahari, S. A ; Khalaj, B. H ; Shariatpanahi, S. P ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    We propose a novel way of spreading data over multiple servers in Content Delivery Networks. Such approach provides a framework to explore trade-off between three key parameters of a content delivery network; namely, delay, storage size and communication cost. After presenting proper models for such trade-off, fundamental limits and lower and upper bounds on parameters of interest are provided for basic one-and two-dimensional spatial server arrangements. The observation that both delay and storage size can be reduced at the expense of moderate communication cost can be of great importance in a number of practical scenarios of interest. © 2018 IEEE  

    Optimal control of rotary motors

    , Article Physical Review E ; Volume 99, Issue 1 , 2019 ; 24700045 (ISSN) Lucero, J. N. E ; Mehdizadeh, A ; Sivak, D. A ; Sharif University of Technology
    American Physical Society  2019
    Abstract
    Single-molecule experiments have found near-perfect thermodynamic efficiency in the rotary motor F1-ATP synthase. To help elucidate the principles underlying nonequilibrium energetic efficiency in such stochastic machines, we investigate driving protocols that minimize dissipation near equilibrium in a simple model rotary mechanochemical motor, as determined by a generalized friction coefficient. Our simple model has a periodic friction coefficient that peaks near system energy barriers. This implies a minimum-dissipation protocol that proceeds rapidly when the system is overwhelmingly in a single macrostate but slows significantly near energy barriers, thereby harnessing thermal... 

    Implementation of green management concepts in sport complexes

    , Article International Journal of Environmental Science and Technology ; Volume 3, Issue 3 , 2006 , Pages 213-219 ; 17351472 (ISSN) Abbaspour, M ; Karbassi, A. R ; Khadivi, S ; Sharif University of Technology
    CEERS  2006
    Abstract
    Implementation of green management in sport complexes can ensure the continuous arrangement and assessment of activities from the environmental perspective and will end up in control and prevention of contaminants. Enghelab sport complex (ESC) in Iran is selected for this study due to its size and long-term activities. Due to the comprehensive plan of the aforesaid sports complex, numerous centers and departments were established in this site in order to materialize its envisioned sports, recreational and cultural objectives. The results of the questionnaires distributed amongst the members and the personnel of the complex revealed that approximately 50 % occupants were not acquainted with... 

    Analysis and modification of a common energy harvesting system using magnetic shape memory alloys

    , Article Journal of Intelligent Material Systems and Structures ; Volume 32, Issue 5 , 2021 , Pages 568-583 ; 1045389X (ISSN) Sayyaadi, H ; Mehrabi, M ; Hoviattalab, M ; Sharif University of Technology
    SAGE Publications Ltd  2021
    Abstract
    In this paper, a common energy harvester is investigated which uses a specimen of magnetic shape memory alloy (MSMA). The aim of this study is to improve system performance and to evaluate the magneto-mechanical loading on the MSMA material. Since demagnetization effect is not included in the employed original MSMA model, a method to incorporate this effect is proposed which has a good performance for the specific magneto-mechanical loading of this problem. In order to decrease the need for bias magnetic field and increase system efficiency, a new return mechanism for the MSMA specimen is proposed. The results indicate that the maximum harvested power from the improved system is obtained at... 

    Mechanically stable superhydrophobic nanostructured aluminum mesh with reduced water surface friction

    , Article Nanotechnology ; Volume 32, Issue 19 , 2021 ; 09574484 (ISSN) Taghvaei, E ; Afzali, N ; Taghvaei, N ; Moosavi, A ; Sharif University of Technology
    IOP Publishing Ltd  2021
    Abstract
    Superhydrophobic surfaces demonstrate significant characteristics which make them suitable for a wide variety of applications. In this study, we propose a facile, one-step, and cost-effective anodizing scheme using aluminum nitrate/stearic acid mixture solution to create a superhydrophobic surface on an aluminum mesh. The surface outperforms the surface anodized by the widely used oxalic acid solution in terms of superhydrophobicity and water-surface friction behavior. The proposed surface reduced the friction by 11% on average respective to the surface prepared by oxalic acid. The durability of the introduced superhydrophobic surface has also been investigated. The proposed surface retained... 

    CATNAP-Sim: A comprehensive exploration and a nonvolatile processor simulator for energy harvesting systems

    , Article IEEE Design and Test ; Volume 38, Issue 2 , April , 2021 , Pages 69-77 ; 21682356 (ISSN) Hosseinghorban, A ; Abbasinia, M ; Paridari, A ; Ejlali, A ; Sharif University of Technology
    IEEE Computer Society  2021
    Abstract
    This article introduces an architecture exploration tool to study and understand the tradeoffs of future processor systems using nonvolatile memory and help guide the design of the future. Energy efficiency serves as a critical factor in designing embedded systems. Furthermore, the growing dominance of energy harvesting systems (EHSs) in sensor-rich applications has eventuated an emerging trend in wearable-systems and IoT devices as an alternative to battery-powered embedded systems. In this article, researchers have presented CATNAP-Sim, a simulator for EHSs, with NVP and hybrid NVM-SRAM memory  

    TiO2/nanoporous silicon hybrid contact for heterojunction crystalline solar cell

    , Article RSC Advances ; Volume 6, Issue 60 , 2016 , Pages 55046-55053 ; 20462069 (ISSN) Ghorbani Shiraz, H ; Razi Astaraei, F ; Mohammadpour, R ; Sharif University of Technology
    Royal Society of Chemistry  2016
    Abstract
    The conventional solar cell architectures include a p-n junction of c-Si sandwiched by rear and front contacts. The conventional approach features a complex as well as expensive procedure. Here, we propose a new architecture for p-n heterojunction solar cells prepared by a simple and cost-effective procedure. In this regard, (1) a silicon wafer underwent surface treatment through electrochemical anodization. To prepare a stick junction, (2) photoactive TiO2 nanoparticles were deposited over the porous layer by electrophoretic technique. Finally, (3) indium tin oxide (ITO) was sputtered. During the fabrication steps, we examined various anodization times ranging from 6 to 12 min to study the... 

    A hybrid Non-Volatile Cache Design for Solid-State Drives using comprehensive I/O characterization

    , Article IEEE Transactions on Computers ; Volume 65, Issue 6 , 2016 , Pages 1678-1691 ; 00189340 (ISSN) Tarihi, M ; Asadi, H ; Haghdoost, A ; Arjomand, M ; Sarbazi Azad, H ; Sharif University of Technology
    IEEE Computer Society 
    Abstract
    The emergence of new memory technologies provides us with opportunity to enhance the properties of existing memory architectures. One such technology is Phase Change Memory (PCM) which boasts superior scalability, power savings, non-volatility, and a performance competitive to Dynamic Random Access Memory (DRAM). In this paper, we propose a write buffer architecture for Solid-State Drives (SSDs) which attempts to exploit PCM as a DRAM alternative while alleviating its issues such as long write latency, high write energy, and finite endurance. To this end and based on thorough I/O characterization of desktop and enterprise applications, we propose a hybrid DRAM-PCM SSD cache design with an... 

    A novel integrated framework to evaluate greenhouse energy demand and crop yield production

    , Article Renewable and Sustainable Energy Reviews ; Volume 96 , 2018 , Pages 487-501 ; 13640321 (ISSN) Golzar, F ; Heeren, N ; Hellweg, S ; Roshandel, R ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    Greenhouses are complex systems that require considerable amounts of energy. In order to optimize their performance, it is necessary to reduce the amount of energy per unit of crop produced. This requires a combined assessment of greenhouse energy balance and crop growth, as well as their interaction. In this work, more than 30 existing greenhouse models are reviewed and different algorithms are combined to propose an integrated energy-yield model. The physical model of greenhouse energy demand is based on the dynamic energy and mass balance while yield production is based on a physiological crop model. The integrated model is validated with observed energy demand and crop yield datasets... 

    Microstructure and characteristic properties of gelatin/chitosan scaffold prepared by the freeze-gelation method

    , Article Materials Research Express ; Volume 6, Issue 11 , 2019 ; 20531591 (ISSN) Shamloo, A ; Kamali, A ; Bahrani Fard, M. R ; Sharif University of Technology
    Institute of Physics Publishing  2019
    Abstract
    Three-dimensional porous scaffolds are essential in tissue engineering applications. One of the most conventional methods to form porosity in scaffolds is freeze-drying, which is not energy efficient and cost effective. Therefore in this work, it was experimentally investigated whether gelatin, with its unique mechanical properties and cell binding applications, could be used as a comprising polymer of scaffolds with porous structure made by the freeze-gelation method. Chitosan, gelatin and chitosan/gelatin scaffolds were fabricated by the freeze-gelation method and their behaviors, determined by analysis of scanning electron microscopy images, Fourier transform infrared spectroscopy,... 

    Bi-objective green scheduling in uniform parallel machine environments

    , Article Journal of Cleaner Production ; Volume 217 , 2019 , Pages 559-572 ; 09596526 (ISSN) Safarzadeh, H ; AkhavanNiaki, S. T ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    Green and sustainability issues are being considered extensively in industry and in the literature. Most of the green-related effects in the manufacturing sector can be modeled by the costs associated with the production machines due to their resource consumption and/or pollutant emission, as a part of the operation cost. Accordingly, taking into account the machine processing costs alongside the other production criteria is one of the main approaches to consider green issues in the production management problems. In the same way, scheduling as one of the major operational problems in the factories can benefit this point of view to involve sustainability aspects. In this paper, the... 

    A quasi-Gaussian approximation method for the Duffing oscillator with colored additive random excitation

    , Article Nonlinear Dynamics ; Volume 96, Issue 2 , 2019 , Pages 825-835 ; 0924090X (ISSN) Makarem, H ; Pishkenari, H. N ; Vossoughi, G. R ; Sharif University of Technology
    Springer Netherlands  2019
    Abstract
    Statistical analysis of stochastic dynamical systems is of considerable importance for engineers as well as scientists. Engineering applications require approximate statistical methods with a trade-off between accuracy and simplicity. Most exact and approximate methods available in the literature to study stochastic differential equations (SDEs) are best suited for linear or lightly nonlinear systems. When a system is highly nonlinear, e.g., a system with multiple equilibria, the accuracy of conventional methods degrades. This problem is addressed in this article, and a novel method is introduced for statistical analysis of special types of essentially nonlinear SDEs. In particular,... 

    Performance evaluation of slurry seals containing reclaimed asphalt pavement

    , Article Transportation Research Record ; Volume 2673, Issue 1 , 2019 , Pages 358-368 ; 03611981 (ISSN) Saghafi, M ; Tabatabaee, N ; Nazarian, S ; Sharif University of Technology
    SAGE Publications Ltd  2019
    Abstract
    Preventive pavement maintenance methods such as slurry seals are cost-effective treatments that increase the longevity of pavements. The incorporation of recycled materials such as reclaimed asphalt pavement (RAP) into asphalt pavement helps to further reduce costs and energy consumption. The present research studied the feasibility of incorporating RAP into slurry seal mixtures or RAP slurry seals. Two slurry seal mixtures containing cement and hydrated lime as fillers were tested. The first mixture comprised slurry seal made with virgin aggregate and the second used RAP as the aggregate. The wet track abrasion test (WTAT) and loaded wheel test (LWT) were conducted to evaluate the... 

    Analysis and modification of a common energy harvesting system using magnetic shape memory alloys

    , Article Journal of Intelligent Material Systems and Structures ; 2020 Sayyaadi, H ; Mehrabi, M ; Hoviattalab, M ; Sharif University of Technology
    SAGE Publications Ltd  2020
    Abstract
    In this paper, a common energy harvester is investigated which uses a specimen of magnetic shape memory alloy (MSMA). The aim of this study is to improve system performance and to evaluate the magneto-mechanical loading on the MSMA material. Since demagnetization effect is not included in the employed original MSMA model, a method to incorporate this effect is proposed which has a good performance for the specific magneto-mechanical loading of this problem. In order to decrease the need for bias magnetic field and increase system efficiency, a new return mechanism for the MSMA specimen is proposed. The results indicate that the maximum harvested power from the improved system is obtained at... 

    Effect of microstructure on rolling behavior of NiTi memory alloy

    , Article Materials and Manufacturing Processes ; Volume 23, Issue 7 , 26 August , 2008 , Pages 646-650 ; 10426914 (ISSN) Sadrnezhaad, S. K ; Badakhshan Raz, S ; Sharif University of Technology
    2008
    Abstract
    NiTi shape memory alloy (SMA) ingots were produced by vacuum induction melting/casting unit. The effect of microstructure on the hot (1000C) and cold (room temperature) rolling workability of cast samples was investigated. Microstructure of the cast samples was related to the type of crucible which used for melting and the average vacuum pressure of VIM furnace. Optical microscope, scanning electron microscope (SEM), and energy dispersive technology (EDS) methods were used to inspect the origins of observed cracks after rolling processes. The results showed that the formation of both Ti4Ni2O and TiC impurities formed due to inappropriate melting conditions had detrimental effects on... 

    An overview of sustainable energy development by using cogeneration technology and opportunity for improving process

    , Article International Journal of Energy Research ; Volume 45, Issue 8 , 2021 , Pages 11423-11439 ; 0363907X (ISSN) Salehi, A. A ; Ghannadi Maragheh, M ; Torab Mostaedi, M ; Torkaman, R ; Asadollahzadeh, M ; Sharif University of Technology
    John Wiley and Sons Ltd  2021
    Abstract
    Nowadays, energy supply is one of the most prominent demands of countries in the world. The enhancement in energy efficiency, flexibility for applications in various industrial processes, and the reduction in the environmental impacts of pollutant emissions can be accomplished by using sustainable energy sources. Alternative procedures for heat and electricity production have been developed in the commercial and industrial sectors and focusing on the cogeneration systems, and the contribution of nuclear energy has been increased for improving processes. Nuclear reactors play an essential role in nonelectric applications, and combined heat and energy at different operating temperatures can be... 

    Integrated analysis of energy-pollution-health nexus for sustainable energy planning

    , Article Journal of Cleaner Production ; Volume 356 , 2022 ; 09596526 (ISSN) Rezazadeh, A. A ; Alizadeh, S ; Avami, A ; Kianbakhsh, A ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    In recent years, the emission of various pollutants has caused many problems for human life and the ecosystem. The prioritization between different air pollution control scenarios is a challenge between scientists and policy-makers. This study develops an integrated method for sustainable energy planning considering the energy-pollution-health nexus. The paper investigates three main pollutants (i.e., PM2.5, SO2, and NOx) of different emission sources (i.e., industrial, residential, and intra-city and suburban transportations) in twelve scenarios. The American Meteorological Society/Environmental Protection Agency Regulatory Model (AERMOD) is applied to model the air pollution dispersion,...