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    Modeling and techno-economic study of a solar reverse osmosis desalination plant

    , Article International Journal of Environmental Science and Technology ; Volume 19, Issue 9 , 2022 , Pages 8727-8742 ; 17351472 (ISSN) Ebrahimpour, B ; Hajialigol, P ; Boroushaki, M ; Shafii, M. B ; Sharif University of Technology
    Springer Science and Business Media Deutschland GmbH  2022
    Abstract
    In this research, the design of a solar reverse osmosis desalination plant was investigated by integrating various components using TRNSYS and ROSA software. To this goal, a two-stage reverse osmosis system with 50% recovery in the city of Chabahar was modeled. The calculations were performed in three different case studies, i.e., a photovoltaic power plant, a solar collector power plant with Organic Rankine Cycles, and a photovoltaic thermal power plant with Organic Rankine Cycles, with the reverse osmosis desalination plant being a novel investigation. Water production and electrical energy generation of each case study were evaluated both on a daily and yearly bases. The simulation... 

    Prioritization of solar electricity and hydrogen co-production stations considering PV losses and different types of solar trackers: A TOPSIS approach

    , Article Renewable Energy ; Volume 186 , 2022 , Pages 889-903 ; 09601481 (ISSN) Jahangiri, M ; Rezaei, M ; Mostafaeipour, A ; Goojani, A.R ; Saghaei, H ; Hosseini Dehshiri, S. J ; Hosseini Dehshiri, S. S ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Renewable hydrogen production plays a key role in transitioning to a hydrogen economy. For this, developing countries are encouraged to keep up with industrialized nations. As such, this study seeks to evaluate the potential of all capital cities of Iran in terms of solar-based hydrogen production and prioritize the nominated alternatives. This step is highly valued because finding the most suitable place for this purpose can lead to substantial outcomes and consequently avoid failure. Therefore, here a 20-kW solar power plant is simulated by PVsyst 6.7 software and meteorological data of 31 capital cities is extracted using Meteonorm 7.1 software. Considering all losses associated with... 

    Optimal design of solar concentrator in multi-energy hybrid systems based on minimum exergy destruction

    , Article Renewable Energy ; Volume 190 , 2022 , Pages 78-93 ; 09601481 (ISSN) Tavakol Moghaddam, Y ; Saboohi, Y ; Fathi, A ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    The paper presents a systematic approach to designing an imaging dish for a concentrator photovoltaic (CPV) system to minimize exergy destruction. The designed CPV system uniformly distributes light rays on the receiver (TPV/multi-junction PV) to enhance the conversion technology efficiency and lifetime. To this end, a parametric dish is designed using imaging optics and the numerical solution of a differential equation. Afterward, a Monte Carlo simulation is used to estimate the output energy and exergy of the CPV system with the parametric dish. Finally, an optimization algorithm finds the optimal design parameters to minimize the system's exergy destruction. The optimal design leads to a... 

    Application of hybrid nanofluids in a novel combined photovoltaic/thermal and solar collector system

    , Article Solar Energy ; Volume 239 , 2022 , Pages 102-116 ; 0038092X (ISSN) Kazemian, A ; Salari, A ; Ma, T ; Lu, H ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Because of the low outflow temperature of the conventional photovoltaic thermal systems and lack of electrical production of the solar thermal collectors, a novel combined system is proposed to solve the two mentioned drawbacks. This novel system is achieved by connecting a photovoltaic thermal unit to a solar thermal collector in series. To increase the overall performance of this novel combined system, different hybrid nanofluids include (1) multiwall carbon nanotube-aluminum oxide (2) multiwall carbon nanotube-silicon carbide (3) graphene-aluminum oxide, and (4) graphene-silicon carbide are compared. The investigation is performed based on the three-dimensional simulation, and the... 

    A simple SVM technique on three-phase mpuc7 inverter for solar photovoltaic system

    , Article Advances in Electrical and Electronic Engineering ; Volume 20, Issue 2 , 2022 , Pages 170-184 ; 13361376 (ISSN) Javan, E ; Asgari, M. P ; Sharif University of Technology
    VSB-Technical University of Ostrava  2022
    Abstract
    In This paper, a simple single-dimension Space Vector Modulation (SVM) technique is introduced to implement on three-phase thirteen-level Modified Packed U-Cell (MPUC) inverter for photo-voltaic system in which many DC sources are avail-able. The three-phase thirteen-level converter con-sists of three single-phase seven-level MPUCs that each phase has six switches and two isolated DC sources. One major advantage of proposed method is to produce an output voltage with nearly constant amplitude in desired range in case of input DC voltage fluctuations, which is common in renewable sources like Photovoltaic Systems (PV). On the other hand, the conventional Pulse Width Modulation (PWM)... 

    A new application of multi criteria decision making in energy technology in traditional buildings: A case study of Isfahan

    , Article Energy ; Volume 240 , 2022 ; 03605442 (ISSN) Hosseini Dehshiri, S.S ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    The use of hybrid renewable energy has increased in recent years due to the growing environmental concerns caused by the consumption of fossil fuels. The purpose of this study was the economic-environmental feasibility of using hybrid energy systems in one of the most polluted and populated provinces in Iran, Isfahan province. Various components of the hybrid energy system such as wind turbine (WT), photovoltaic panel (PV), diesel generator (DG), converter (CV) along with two scenarios of energy storage including battery (BT) and hydrogen storage have been considered in modeling the energy system. Six scenarios were considered based on the combination of different components for supplying... 

    Evaluation of optimal occasional tilt on photovoltaic power plant energy efficiency and land use requirements, Iran

    , Article Sustainability (Switzerland) ; Volume 13, Issue 18 , 2021 ; 20711050 (ISSN) Fathi, A ; Bararzadeh Ledari, M ; Saboohi, Y ; Sharif University of Technology
    MDPI  2021
    Abstract
    The paper studies the optimum panel horizontal orientation angle toward the Sun and the optimum time interval of the panel’s movement. The optimum time intervals or panel movement can change the rate of input energy to the panel surface in Iran. For this purpose, a neural network has been trained to estimate the intensity of solar radiation in Iran. After model validation, the intensity of solar radiation has been estimated by selecting adequate geographical regions. Based on the intensity of sunlight, Iran has been divided into ten regions. In these regions, 40 cities have been randomly selected to study the effect of the panel’s angle variations within appropriate time inter-vals, as well... 

    Optimization of a novel photovoltaic thermal module in series with a solar collector using Taguchi based grey relational analysis

    , Article Solar Energy ; Volume 215 , 2021 , Pages 492-507 ; 0038092X (ISSN) Kazemian, A ; Parcheforosh, A ; Salari, A ; Ma, T ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    The solar collectors absorb solar irradiation and then produce thermal energy; however, they cannot generate electrical power. Electricity and thermal energy can be produced by the photovoltaic thermal module, simultaneously, while the outlet temperature of the photovoltaic thermal module is not usually high enough to provide thermal requirements of a building such as hot water or space heating. This work proposes a novel compound system created by the connection of a solar collector in series with a photovoltaic thermal module to resolve the issue of low outlet temperature in the photovoltaic thermal module and lack of electrical power in solar collectors. To examine the feasibility of this... 

    A novel energy storage system for latent heat recovery in solar still using phase change material and pulsating heat pipe

    , Article Renewable Energy ; Volume 163 , 2021 , Pages 2115-2127 ; 09601481 (ISSN) Khalilmoghadam, P ; Rajabi Ghahnavieh, A ; Shafii, M. B ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    In this study, a latent heat storage unit and built-in condenser were integrated with a solar still. Storage of dissipated latent heat of vapor during the day and using it after sunset prolongs system operation. During the day, the entire solar radiation was consumed to heat the saline water and only the heat coming from the condensation of vapor was stored in the phase change material (PCM). The dissipated heat from the condenser body was transferred to the PCM and stored. Additionally, the existence of PCM on the outer surfaces of the condenser prevented the rise of condenser wall temperature during the day and kept the condenser temperature low. After sunset, the heat stored in the PCM... 

    Reliability assessment of distribution system with the integration of photovoltaic and energy storage systems

    , Article Sustainable Energy, Grids and Networks ; Volume 28 , 2021 ; 23524677 (ISSN) Ostovar, S ; Esmaeili Nezhad, A ; Moeini Aghtaie, M ; Fotuhi Firuzabad, M ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    With the current focus on energy and the environment, efficient integration of renewable energies, especially solar energy into power systems, is becoming indispensable. Moreover, to fully capture solar potentials and to recognize the unique characteristics associated with solar energy in power systems reliability assessment, a profound investigation is needed. Accordingly, this paper attempts to establish a comprehensive analytical approach for modeling the reliability of a hybrid system (Photovoltaic (PV) system with Energy Storage System (ESS)). To this end, the output of the PV system is modeled by a multi-state model, and the ESS system is modeled as a two-state Markov model. Moreover,... 

    Reverse osmosis desalination for irrigation in a pistachio orchard

    , Article Desalination ; Volume 516 , 2021 ; 00119164 (ISSN) Rahimi, B ; Afzali, M ; Farhadi, F ; Alamolhoda, A. A ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    Nowadays, the salinisation of groundwaters causes a substantial reduction in the yield of agricultural lands. To reduce the impact of this problem on the profitability of the lands, farmers tend to use desalination processes. However, this transition is not simple and some technical, economic, and environmental issues should be considered. In this study, we highlight some key factors for the use of desalination processes in the agricultural sector. Also, we conduct a techno-economic evaluation of using reverse osmosis desalination in a pistachio orchard as a high-value crop. Moreover, because of the solar energy potential in the location of the case study, the use of solar panels is assessed... 

    A feasibility study of solar-powered reverse osmosis processes

    , Article Desalination ; Volume 500 , 2021 ; 00119164 (ISSN) Rahimi, B ; Shirvani, H ; Alamolhoda, A. A ; Farhadi, F ; Karimi, M ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    The use of solar-powered reverse osmosis desalination systems is a sustainable and environmentally friendly solution in the desalination industry. However, there are some substantial technical and economic challenges due to the intermittency and fluctuation of solar energy. Recent technological improvement and feed-in tariff policies enable these systems to be competitive with conventional grid-connected reverse osmosis systems. In this paper, a feasibility study of the integration of solar panels with the grid to power small-scale reverse osmosis systems (namely up to 2000 m3/day) is conducted in Iran, as a country with a low price of electricity. For this purpose, a city located on the... 

    Improving the performance of the finned absorber inclined rooftop solar chimney combined with composite PCM and PV module

    , Article Solar Energy ; Volume 228 , 2021 , Pages 562-574 ; 0038092X (ISSN) Ashouri, M ; Hakkaki Fard, A ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    Solar Chimney (SC) can play a significant role in energy consumption reduction of ventilation applications. The primary purpose of this study is to ameliorate the performance of an inclined rooftop SC integrated with the Phase Change Material (PCM) and Photovoltaic (PV) module, called the SC-PCM-PV system. To this aim, the effects of using finned absorbers and composite PCMs on the performance of the SC-PCM-PV system are investigated for the first time. A 3D-CFD model is developed via the finite volume method to examine the impact of various design parameters, including fin number, fin thickness, PCM type, and PCM mass on natural ventilation duration, ventilation capacity, and power output.... 

    Numerical analysis of photovoltaic solar panel cooling by a flat plate closed-loop pulsating heat pipe

    , Article Solar Energy ; Volume 206 , 2020 , Pages 455-463 Alizadeh, H ; Alhuyi Nazari, M ; Ghasempour, R ; Shafii, M. B ; Akbarzadeh, A. A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Photovoltaic (PV) panels provide a suitable way for the direct conversion of solar energy into electricity. The electrical output and efficiency of PV modules are dependent on working temperature. The present study contributes to investigate the efficiency of utilizing a flat plate closed-loop pulsating heat pipe (CLPHP) to cool down a PV panel in both thermal and economic aspects. Accordingly, a numerical investigation is employed to obtain the surface temperature and electrical gain of the PV panel through four scenarios, including natural cooling without additional equipment, CLPHP-based passive cooling, CLPHP-based active cooling, and a conventional flat plate cooling methods. The... 

    Multi-input high step-up inverter with softswitching capability, applicable in photovoltaic systems

    , Article IET Power Electronics ; Volume 13, Issue 1 , 2020 , Pages 133-143 Babaei, E ; Tarzamni, H ; Tahami, F ; Khoun Jahan, H ; Bannae Sharifian, M. B ; Sharif University of Technology
    Institution of Engineering and Technology  2020
    Abstract
    In this study, a new multi-input high step-up inverter, based on isolated soft-switching DC-DC converter blocks is proposed. Each of these blocks can provide zero-voltage and zero-current switching for its semiconductors, which improve power efficiency. The interesting feature of this DC-DC converter is using bidirectional switches to generate both positive and negative output voltage levels in each DC-DC block with an appropriate control scheme. Each DC-DC converter operates by simple pulse width modulation control through fixed frequency and has two degrees of freedom, which provide the capability of output voltage regulation or maximum power point tracking. The proposed inverter consists... 

    Unbalance mitigation by optimal placement of static transfer switches in low voltage distribution feeders

    , Article IET Generation, Transmission and Distribution ; Volume 14, Issue 20 , 2020 , Pages 4612-4621 Heidari Akhijahani, A ; Safdarian, A ; Lehtonen, M ; Sharif University of Technology
    Institution of Engineering and Technology  2020
    Abstract
    With the rapid proliferation of residential rooftop photovoltaic (PV) systems, current and voltage unbalance issues have become a matter of great concern in low voltage (LV) distribution feeders. To overcome the issues, this study proposes a model to optimally rephase customers and PVs among the three phases via static transfer switches (STSs). The optimal STS placement is also considered in the model to achieve a cost effective solution with optimum number and location of STSs. The objective is to minimise total energy losses caused by current unbalance, minimise the number of STSs, and keep voltage unbalance along the feeder within the acceptable range. The model is solved via a... 

    Enhanced performance of planar perovskite solar cells using TiO2/SnO2 and TiO2/WO3 bilayer structures: Roles of the interfacial layers

    , Article Solar Energy ; Volume 208 , 2020 , Pages 697-707 Kazemzadeh Otoufi, M ; Ranjbar, M ; Kermanpur, A ; Taghavinia, N ; Minbashi, M ; Forouzandeh, M ; Ebadi, F ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In planar perovskite solar cells (PSCs), engineering the extraction and recombination of electron–hole pairs by modification of the electron transport layer (ETL)/perovskite interface is very vital for obtaining high performance. The main idea here is to improve properties of the TiO2/perovskite interface by inserting an ultra-thin layer (UTL) of WO3 or SnO2 with the thickness of less than 10 nm by RF magnetron sputtering method. The structural and electrical characteristics of the samples were tested by XRD, AFM, FE-SEM, Mott-Schottky analysis, UV–Vis spectroscopy, J-V characterization and electrochemical impedance spectroscopy (EIS). It was found that the bilayer structured ETLs exhibit... 

    Suppressing recombination in perovskite solar cells via surface engineering of TiO2 ETL

    , Article Solar Energy ; Volume 197 , 2020 , Pages 50-57 Prochowicz, D ; Tavakoli, M. M ; Wolska Pietkiewicz, M ; Jędrzejewska, M ; Trivedi, S ; Kumar, M ; Zakeeruddin, S. M ; Lewiński, J ; Graetzel, M ; Yadav, P ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Hybrid perovskite solar cells (PSCs) have gained significant attention owing to their excellent physicochemical and photovoltaic properties. PSCs typically consist of a perovskite light absorber sandwiched between two carrier selective layers optimized with respect to optimal band alignment and low interfacial recombination. The quality of the perovskite layer and interfaces play major roles in the fabrication of high-performance PSCs. In the present work, we systematically investigate the planar structure PSCs based on TiO2 and TiO2/ZnO electron transport layers (ETLs), which provide deeper insight into the charge recombination and accumulation mechanisms. We show that the double-layer... 

    On the performance of inclined rooftop solar chimney integrated with photovoltaic module and phase change material: A numerical study

    , Article Solar Energy ; Volume 211 , 2020 , Pages 1159-1169 Salari, A ; Ashouri, M ; Hakkaki Fard, A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In an attempt to prolong the performance of the conventional Solar Chimney (SC) and enhance its efficiency, this contribution presents a kind of novel compound SC with the Photovoltaic (PV) module and Phase Change Material (PCM) called the SC-PV-PCM system. Using PCM not only improves the PV module performance but also extends the productive period of the SC. A three-dimensional quasi-steady computational fluid dynamics (CFD) model of the proposed system is developed. The developed model is used to investigate the effect of using PCMs with different melting points on the performance of the proposed system. It is demonstrated that the RT-50 provides superior performance among the studied... 

    A numerical study on a photovoltaic thermal system integrated with a thermoelectric generator module

    , Article Renewable Energy ; Volume 153 , 2020 , Pages 1261-1271 Salari, A ; Parcheforosh, A ; Hakkaki Fard, A ; Amadeh, A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In this work, a three-dimensional numerical model is developed to investigate the performance of a photovoltaic thermal system integrated with a thermoelectric generator module (PVT/TE). Furthermore, the effects of various operating parameters such as solar radiation, coolant mass flow rate, and inlet and ambient temperatures on the performance of both the PVT and PVT/TE systems are investigated and compared. Based on the obtained results, the electrical efficiency of the PVT/TE system, when exposed to solar radiation of 600 and 1000 W/m2, is 6.23% and 10.41% higher than that of the PVT system, respectively. Besides, the electrical efficiency of the PVT and PVT/TE by increasing the inlet...