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    The dynamics of gain-coupled distributed feedback dye laser: Feedback mechanism and laser field evolution

    , Article Laser Physics ; Volume 28, Issue 9 , 2018 ; 1054660X (ISSN) Pasandideh, K ; Alijabbari, M ; Gohari Kamel, N ; Golshani, M ; Sadighi Bonabi, R ; Sharif University of Technology
    Institute of Physics Publishing  2018
    Abstract
    The temporal and spatial evolution of the two counter-propagating laser waves inside the active medium of a gain coupled distributed feedback dye laser is studied via a dynamic model. More specifically, the feedback mechanism, the temporal and spatial evolution of laser waves, the interaction between them, and the effect of pump pulse characteristics on the feedback strength are explained. It is shown that a pumping configuration with a spatial Gaussian pattern strongly decreases the laser pulse energy. This has never proposed or described by other models in the literature. For a narrow Gaussian pump pulse, the distributed feedback lasing on both sides of the active medium vanishes and... 

    Performance improvement of mixed-flow centrifugal pumps with new impeller shrouds: Numerical and experimental investigations

    , Article Renewable Energy ; Volume 163 , 2021 , Pages 635-648 ; 09601481 (ISSN) Bozorgasareh, H ; Khalesi, J ; Jafari, M ; Gazori, H. O ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    A new impeller configuration with innovatively-designed shrouds is introduced, and its impact on the pressure head and efficiency of the semi-open centrifugal pump is explored using experimental and numerical approaches. The proposed design includes attaching specific plates called bladelets to a semi-open impeller to limit the secondary flows over the blades resulting in an increase in the pump head and efficiency. Hydraulic performance of a centrifugal pump with three different bladelets at angles of 30°, 60°, and 90° is investigated experimentally, and the results are compared to semi-open and closed impellers. The values of pressure head and efficiency of the proposed centrifugal pump... 

    Multi objective optimization of an irreversible thermoelectric heat pump using evolutionary algorithms and response surface method

    , Article Energy Sources, Part A: Recovery, Utilization and Environmental Effects ; 2021 ; 15567036 (ISSN) Meshginnezhad, S ; Assareh, E ; Erfani, A ; Alirahmi, M ; Jafarinejad, T ; Sharif University of Technology
    Taylor and Francis Ltd  2021
    Abstract
    In this study, modeling of an irreversible thermoelectric heat pump was conducted, and its performance was assessed in terms of exergy for 10, 20, 30 and 40 K difference in temperature (∆T) by changing the values of the design parameters. By employing this model, positive impact of increasing cross-section area, current and thermocouple’s length which in turn increases the exergy efficiency is realized. In addition, diminishing adverse impact of adding more thermocouples on the exergy efficiency of the system is illustrated. Afterward, exergoeconomic performance of the thermoelectric heat pump is evaluated. Then, exergoeconomic factor for each of the system’s components is diagnosed. The... 

    Economic and environmental assessment of a solar-assisted ground source heat pump system in a heating-dominated climate

    , Article International Journal of Environmental Science and Technology ; Volume 16, Issue 7 , 2019 , Pages 3091-3098 ; 17351472 (ISSN) Biglarian, H ; Saidi, M. H ; Abbaspour, M ; Sharif University of Technology
    Center for Environmental and Energy Research and Studies  2019
    Abstract
    In recent years, increasing attention has been paid to the use of renewable energy sources in building sector. The ground source heat pumps are a promising alternative for heating and cooling applications. Despite the high coefficients of performance and significant environmental benefits, their performance may deteriorate over the long-term operation if the annual ground loads are not well balanced. An appropriate solution is the use of hybrid ground source heat pump system through which some portion of the thermal loads can be offset by supplemental components. The aim of this study is to assess the feasibility of a solar-assisted ground source heat pump system for heating a detached house... 

    Technical and Economical Feasibility Study of Applying Heat Pump Systems to Provide Utilities for Oil & Gas Industries

    , M.Sc. Thesis Sharif University of Technology Hamidzadeh, Zeinab (Author) ; Sattari, Sorena (Supervisor) ; Amidpour, Majid (Supervisor)
    Abstract
    Distillation is the most applied unit in the separation processess of the oil and gas industries. Because the distillation process requires energy in the form of the utilities, integration of heat pump systems in the distillation process as an application of these systems is considered in this research. A new and effective methodology of proper integrating of heat pump and distillation columns has been proposed by collecting thermodynamic and thermoeconomic tools. Then, this procedure has been applied on the ethane recovery and NGL fractionation units of 4 & 5 phases of the south pars field. The exergy analysis of the distillation columns is the first step of this methodology as the... 

    The Design of Ventricular Assist Devices and Analysis of Blood Flow Within them

    , M.Sc. Thesis Sharif University of Technology Tabrizchi, Zahra (Author) ; Ahmadian, Mohammad Taghi (Supervisor) ; Afshin, Hossein (Supervisor)
    Abstract
    Heart is a muscular organ, which pumps blood through the blood vessels of the circulatory system. The pumped blood carries oxygen and nutrients to the body, while carrying metabolic waste to the lungs. Heart is sort of like a pump, or two pumps in one. The right side of heart receives blood from the body and pumps it to the lungs. The left side of the heart does the exact opposite: It receives blood from the lungs and pumps it out to the body. However, in end-stage heart failure, the heart can no longer pump enough blood to meet the body’s needs, in which case implantable left ventricular assist devices provide support for patients at risk of death from end-stage heart failure.Centrimag... 

    Some optical properties of four-level media via coherent and incoherent pumping fields

    , Article Journal of the Optical Society of America B: Optical Physics ; Volume 30, Issue 3 , 2013 , Pages 641-648 ; 07403224 (ISSN) Naseri, T ; Asadpour, S. H ; Sadighi Bonabi, R ; Sharif University of Technology
    Optical Society of American (OSA)  2013
    Abstract
    The optical properties of a four-level atomic system via coherent and incoherent pumping fields are investigated. The giant Kerr nonlinearity with reduced linear and nonlinear absorption, which has a major role in decreasing the threshold of optical bistability (OB), can be obtained with subluminal light propagation via adjusting the intensities of coupling fields. An incoherent pumping field is noticed to be an extra parameter to reduce the threshold of OB and multistability, and it can be used as an effective parameter in producing lasing with or without population inversion. In this model, optical multistability is achieved simply by tuning the intensity of coupling laser fields.... 

    Lasing without population inversion in an Er 3+-doped YAG crystal

    , Article Journal of Modern Optics ; Volume 59, Issue 5 , Nov , 2012 , Pages 446-454 ; 09500340 (ISSN) Sahrai, M ; Asadpour, S. H ; Eslami Majd, A ; Sadighi Bonabi, R ; Sharif University of Technology
    2012
    Abstract
    Two atomic models are proposed for an Er 3+-doped YAG crystal with application to lasing with and without population inversion. It is shown how an incoherent pumping field and coherent control coupling field can produce a laser in the presence and absence of population inversion  

    Controlling Atrial fibrillation using Cohen's model

    , Article 2011 18th Iranian Conference of Biomedical Engineering, ICBME 2011, 14 December 2011 through 16 December 2011 ; December , 2011 , Pages 60-63 ; 9781467310055 (ISBN) Aghajari, S ; Bahrami, F ; Sharif University of Technology
    2011
    Abstract
    Drug administration using infusion pumps can find application in treating patients with arrhythmias. These pumps can obviate the need to use drugs several times a day and automatically adapt the dosage to patient situation. Considering the importance of administration of right dosage, a perfect-controlled pump is needed to approach this goal. This paper focuses on controlling Atrial fibrillation (AF) arrhythmia. The abnormal heart rhythm that affects RR interval sequence and there have been some attempts to model these effects. One of these models is proposed by Cohen and colleges. Searching through the variables of this model, selecting the potential control variable (the one that its... 

    Diffuser miniature pump with an extra ferrofluidic valve

    , Article Microfluidics and Nanofluidics ; Volume 19, Issue 5 , November , 2015 , Pages 1235-1244 ; 16134982 (ISSN) Ashouri, M ; Shafii, M. B ; Moosavi, A ; Sharif University of Technology
    Springer Verlag  2015
    Abstract
    This paper presents the prototype design and fabrication of a magnetically actuated miniature pump that utilizes self-sealing capability of ferrofluid-covered permanent magnets in both pumping and valving mechanisms. The valving action is performed by employing one active valve along with two nozzle/diffuser elements. Two cylindrical permanent magnets are placed inside the flat-wall channels: One magnet acts as the active valve and the other one serves as a reciprocating piston actuating the working fluid. In order to seal the gaps between the channel walls and the permanent magnet of the valve/piston, ferrofluid is used to cover the surfaces of both magnets. The valve and the piston are... 

    Design and implementation of an online precise monitoring and performance analysis system for centrifugal pumps

    , Article IEEE Transactions on Industrial Electronics ; 2017 ; 02780046 (ISSN) Emami, S. A ; Emami, M. H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2017
    Abstract
    Development of design and production technology of centrifugal pumps for achieving better performance and less energy consumption in these devices has increasingly been taken into consideration. This is due to the fact that centrifugal pumps have an important contribution in industrial applications and energy consumption around the world. Accordingly, the international standards of centrifugal pumps, urge more precise analysis systems for obtaining the performance curves of these pumps. For this reason, a complete, precise and real-time monitoring and performance analysis system for centrifugal pumps is introduced in this paper. The pump characteristics are measured by precise measuring... 

    Experimental investigation of the thermal characteristics of single-turn pulsating heat pipes with an extra branch

    , Article International Journal of Thermal Sciences ; Volume 134 , 2018 , Pages 258-268 ; 12900729 (ISSN) Sedighi, E ; Amarloo, A ; Shafii, M. B ; Sharif University of Technology
    Elsevier Masson SAS  2018
    Abstract
    In addition to some approaches such as changing the working fluid or number of turns in a pulsating heat pipe (PHP), geometrical changes are also appealing for enhancing the thermal performance of this type of heat pipes. The main idea of this investigation is to increase heat transfer rate by increasing flow circulation of working fluid. By placing an additional branch in the evaporator section, a secondary bubble pump was created which improved the circulation of fluid inside PHP. In order to investigate the impact of this additional branch, two similar one-turn copper heat pipes were fabricated. One of them was the conventional PHP and the other had an additional branch and is named... 

    Assessment and comparison of different arrangements of horizontal ground heat exchangers for high energy required applications

    , Article Applied Thermal Engineering ; Volume 167 , 2020 Asgari, B ; Habibi, M ; Hakkaki Fard, A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Horizontal ground heat exchangers (GHEs) have a lower initial installation cost in comparison to vertical ones; however, they require more land area. In order to reduce the required land area of horizontal GHEs, their heat exchange rate per unit land area needs to be enhanced. A remedy to this problem is installing horizontal GHEs in an arrangement with maximum heat exchange rate per unit land area. However, such arrangements have not been introduced for different types of horizontal GHEs thus far. To this end, in this study, the thermal performance of various GHE pipe arrangements for three different types (linear, spiral, and slinky) of horizontal GHEs is evaluated. Comparing the obtained... 

    Electrical analogies applied on MMR micropump

    , Article Sensors and Actuators, A: Physical ; Volume 301 , 2020 Karmozdi, M ; Afshin, H ; Shafii, M. B ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    Micropumps are among useful equipment in microsystems. The magnetically actuated mercury micropump, which has been introduced for less than a decade, is an innovative kind of micropumps which uses mercury droplets motion as a pumping agent. The equations governing this micropump are complex and their numerical solution is a time-consuming process, due to electromagnetic, hydrodynamic, and unsteady effects. In the present study, for the first time, using simplifying assumptions, the performance of a Magneto Mercury Reciprocating (MMR) micropump with electromagnetic actuation is studied through electrical analogy and then, the components and operational stages of the micropump are simulated... 

    A moment method for analysis the gain spectrum in fiber Raman amplifier with broadband pumps

    , Article Optics Communications ; Volume 281, Issue 4 , 2008 , Pages 587-591 ; 00304018 (ISSN) Bahrampour, A. R ; Teimourpour, M. H ; Rahimi, L ; Sharif University of Technology
    2008
    Abstract
    The governing equations of optical fiber Raman amplifier with broadband pumps in the steady state are systems of uncountable nonlinear ordinary differential equations (NODE). In this paper, the Moment method is used to reduce the uncountable system of NODE to a system of finite number of NODE. This system of equations is solved numerically. The results are compared with that of the full numerical method. It was shown that the Moment method is a precise and efficient technique for analysis of optical fiber Raman amplifier with broadband pumps. © 2007 Elsevier B.V. All rights reserved  

    Theoretical study of high repetition rate short pulse generation with fiber optical parametric amplification

    , Article Journal of Lightwave Technology ; Volume 30, Issue 9 , 2012 , Pages 1263-1268 ; 07338724 (ISSN) Vedadi, A ; Ariaei, A. M ; Jadidi, M. M ; Salehi, J. A ; Sharif University of Technology
    2012
    Abstract
    In this paper, we study theoretically the generation of high repetition rate short pulses using fiber optical parametric amplification. We show that the pulse shape and duration depend on the signal location relatively to the pump frequency. We demonstrate that in order to get the shortest pulse width, the signal must be located at one of the extremities of the gain spectrum associated with the pump peak power. We derive the analytical expression of the pulse shape in this case and compare it to the exponential gain regime case. Using numerical simulations, we also analyze the impact of walk-off and pump phase modulation that is required to suppress Stimulated Brillouin Scattering and derive... 

    Capture zone of a partially penetrating well with skin effects in confined aquifers

    , Article Transport in Porous Media ; Volume 91, Issue 2 , January , 2012 , Pages 437-457 ; 01693913 (ISSN) Ataie Ashtiani, B ; Shafei, B ; Rashidian Dezfouli, H ; Mohamadzadeh, M ; Sharif University of Technology
    2012
    Abstract
    The analysis of the capture zone of wells is useful to design pumping systems and wellhead protection programs. In this study, an analytical solution for the head distribution of a partially penetrating well, and semi-analytical methods to determine the geometry of the capture surface are presented. The analytical solution is derived based on an infinitesimal radius under a constant pumping rate in a two-zone confined aquifer. Using the developed solution, a sensitivity analysis is performed to study the influence of skin on the drawdown, location of the stagnation point, maximum horizontal and vertical extent of the capture surface. The results show the efficiency of a partially penetrating... 

    Numerical simulation of two-phase flow in airlift pumps using the Physical Influence Scheme

    , Article Progress in Computational Fluid Dynamics ; Volume 10, Issue 3 , 2010 , Pages 186-194 ; 14684349 (ISSN) Hanafizadeh, P ; Saidi, M. H ; Darbandi, M ; Kebriaee, A ; Sharif University of Technology
    2010
    Abstract
    A new approach has been presented to solve gas-liquid flow numerically in vertical pipes of air-lift pumps. To improve modelling, a new strategy has been employed with the capability of coupling the continuity and momentum equations and enforcing the role of pressure directly in the continuity equation. This is achieved via applying a novel scheme called the Physical Influence Scheme (PIS). The current finite volume solution is compared with other available numerical solutions. Indeed, they are in fair agreement. However, the present predictions are far superior to those obtained from an existing simple method, which is widely used in airlift pump modelling  

    Representative pumping wells network to estimate groundwater withdrawal from aquifers: Lessons from a developing country, Iran

    , Article Journal of Hydrology ; Volume 578 , 2019 ; 00221694 (ISSN) Parizi, E ; Mossa Hosseini, S ; Ataie Ashtiani, B ; Simmons, C. T ; Sharif University of Technology
    Elsevier B.V  2019
    Abstract
    In this study a review of the developed methods to estimate groundwater withdrawal (GWW) from aquifers by pumping wells is provided. Then, a method adopted by Iran's Basic Studies Bureau of Water Resources Management Company for estimation of GWW through 536 aquifers across Iran is presented and modified. This so-called “representative pumping wells network” (RPWN) approach is a combination of statistical and rate-and-time methods which has been implemented for all aquifers in Iran since 2007. The RPWN approach is based on the overlaying of 10 important features in a GIS environment and classified in a number of zones in which their withdrawals are statistically different. The representative... 

    Transient and stability analysis in single-phase natural circulation

    , Article Annals of Nuclear Energy ; Volume 31, Issue 10 , 2004 , Pages 1177-1198 ; 03064549 (ISSN) Mousavian, S. K ; Misale, M ; D'Auria, F ; Salehi, M. A ; Sharif University of Technology
    2004
    Abstract
    This paper presents the mathematical modeling of single-phase natural circulation of the University of Genoa's rectangular loop (LOOP#1) by a computer program and using RELAP5 system code. The mass, momentum and energy conservation equations in transient form were solved numerically using the finite difference method. One-dimensional linear stability analysis was performed for the single-phase natural circulation loop and the numerical perturbation technique was used in this analysis. The Nyquist criterion was employed to find the stability map of the LOOP#1. The obtained transient results using the first order upwind scheme of the fluid temperatures in various sectors of the LOOP#1 are...