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    Performance analysis and transient simulation of a vapor compression cooling system integrated with phase change material as thermal energy storage for electric peak load shaving

    , Article Journal of Energy Storage ; Volume 35 , 2021 ; 2352152X (ISSN) Riahi, A ; Jafari Mosleh, H ; Kavian, S ; Shafii, M. B ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    A vapor-compression cooling system utilizing PCM is studied whereby the electricity consumption peak load is shifted. More specifically, the dynamic performance of the cooling system with and without PCM is evaluated and is presented with details on the hottest day of the year in Tehran, Iran. The proposed system uses the cooling energy to freeze or “discharge” the PCM during nighttime when the cooling load is minimally needed and uses the stored cooling energy during the peak load hours by melting or “charging” the PCM. This leads to better performance during the peak load hours when higher cooling loads are required. Oleic acid was chosen as PCM. The simulation was performed in EES... 

    Evaluation of a cooling system integrated with different phase change materials and its effect on peak load shaving

    , Article International Journal of Energy Research ; Volume 45, Issue 7 , 2021 , Pages 10425-10449 ; 0363907X (ISSN) Riahi, A ; Kavian, S ; Jafari Mosleh, H ; Shafii, M. B ; Sharif University of Technology
    John Wiley and Sons Ltd  2021
    Abstract
    In this study, a vapor-compression cooling system utilizing different phase change materials (PCMs) has been studied whereby the electricity consumption peak load is shifted. More specifically, the dynamic performance of cooling systems with and without using PCM is evaluated for the hottest day of the year. The proposed system uses the cooling energy to freeze, or “discharge” the PCM during nighttime when the cooling load is minimally needed and uses the stored thermal energy during the peak load hours by melting, or “charging” the PCM. This leads to better performance during peak load hours when higher cooling loads are needed. Different PCMs including oleic acid, SP224A, CL, CaCl2·6H2O... 

    Dynamic simulation of a trigeneration system using an absorption cooling system and building integrated photovoltaic thermal solar collectors

    , Article Journal of Building Engineering ; Volume 43 , November , 2021 ; 23527102 (ISSN) Jalalizadeh, M ; Fayaz, R ; Delfani, S ; Jafari Mosleh, H ; Karami, M ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    Solar systems are the most promising technologies to reduce building energy consumption. In recent years, one of the popular solar technologies is building integrated photovoltaic-thermal collectors, because of profitability and no need for separate architectural space. In this study, a new combination of glazed building integrated photovoltaic thermal solar collectors and an absorption cooling system, as a trigeneration system, to provide thermal and electrical energy demands of a case study residential building, is proposed. Dynamic simulation of the proposed system is performed using the TRNSYS-MATLAB co-simulator. Because there is no model for the glazed photovoltaic thermal solar... 

    Linear parabolic trough solar power plant assisted with latent thermal energy storage system: A dynamic simulation

    , Article Applied Thermal Engineering ; Volume 161 , 2019 ; 13594311 (ISSN) Jafari Mosleh, H ; Ahmadi, R ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    One of the efficient solar energy harvesting technics is the parabolic trough concentrated solar power plant. However, if the concentrated solar power plant were not equipped with a storage system, the power plant capacity factor would be deficient. Latent thermal energy storage system using phase change material (PCM) is a high energy density storage system to provide durable energy with a constant temperature. In this study, first, a dynamic analysis is performed implementing TRNSYS software on the parabolic trough concentrated solar power plant located in Shiraz, Iran. Consequently, this system is assisted by the latent thermal energy storage system to improve its performance and capacity... 

    A modified solar desalination system using evacuated tube collector

    , Article Desalination ; Volume 396 , 2016 , Pages 30-38 ; 00119164 (ISSN) Shafii, M. B ; Jahangiri Mamouri, S ; Lotfi, M. M ; Jafari Mosleh, H ; Sharif University of Technology
    Elsevier  2016
    Abstract
    Solar energy is turning to one of the important types of clean energies, due to its availability, and its potential for wide range of applications. In this work, a new passive solar desalination system is introduced, which benefits from excellences of twin-glass evacuated tube collectors. For the first time, the evacuated tube collector is not only used as the solar thermal collector, but also as a basin to heat the water. Hence, the thermal resistance between the collector and basin is virtually eliminated. Results show a considerable increase in the rate of desalinated water production and the maximum production reaches up to 0.83 kg/(m2·h). It was observed that the maximum rate of the... 

    A new desalination system using a combination of heat pipe, evacuated tube and parabolic through collector

    , Article Energy Conversion and Management ; Volume 99 , July , 2015 , Pages 141-150 ; 01968904 (ISSN) Jafari Mosleh, H ; Mamouri, S. J ; Shafii, M. B ; Hakim Sima, A ; Sharif University of Technology
    Elsevier Ltd  2015
    Abstract
    The solar collectors have been commonly used in desalination systems. Recent investigations show that the use of a linear parabolic through collector in solar stills can improve the efficiency of a desalination system. In this work, a combination of a heat pipe and a twin-glass evacuated tube collector is utilized with a parabolic through collector. Results show that the rate of production and efficiency can reach to 0.27 kg/(m2 h) and 22.1% when aluminum conducting foils are used in the space between the heat pipe and the twin-glass evacuated tube collector to transfer heat from the tube collector to the heat pipe. When oil is used as a medium for the transfer of heat, filling the space... 

    Dynamic simulation of a solar ejector-based trigeneration system using TRNSYS-EES co-simulator

    , Article Energy Science and Engineering ; Volume 10, Issue 3 , 2022 , Pages 707-725 ; 20500505 (ISSN) Pourmoghadam, P ; Jafari Mosleh, H ; Karami, M ; Sharif University of Technology
    John Wiley and Sons Ltd  2022
    Abstract
    In this paper, a new configuration of a solar combined cooling, heating, and power (CCHP) system is proposed to recover the waste thermal energy of a steam power plant, which provides the cooling and heating needs of an apartment complex located in Tehran. The required energy of the system is supplied by the parabolic trough solar collectors (PTCs) and, if necessary, an auxiliary heater is also used. An ejector refrigeration cycle (ERC) and a steam Rankine cycle are used for cooling and power generation, respectively. The cycle is dynamically modeled over a year using a TRNSYS-EES co-simulator. It is found that the highest Rankine cycle efficiency is obtained in the cold months (January)... 

    A novel concentrating photovoltaic/thermal solar system combined with thermoelectric module in an integrated design

    , Article Renewable Energy ; Volume 113 , 2017 , Pages 822-834 ; 09601481 (ISSN) Mohsenzadeh, M ; Shafii, M. B ; Jafari mosleh, H ; Sharif University of Technology
    Elsevier Ltd  2017
    Abstract
    The use of solar energy concentration systems for achieving performance enhancements in the Photovoltaic/thermal hybrid solar systems and reduction of initial costs is an idea that has been studied for years. In this article a new structure for parabolic trough photovoltaic/thermal collector is proposed and its thermal and electrical performances are experimentally investigated. The receiver of this concentrator contains a triangular channel with an outer surface covered with photovoltaic cells and thermoelectric modules with a specific arrangement so that in addition to absorbing heat, a larger portion of the solar radiation is directly converted to electricity. Hence, the performance of... 

    A year-round dynamic simulation of a solar combined, ejector cooling, heating and power generation system

    , Article Applied Thermal Engineering ; Volume 153 , 2019 , Pages 1-14 ; 13594311 (ISSN) Jafari Mosleh, H ; Hakkaki Fard, A ; DaqiqShirazi, M ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    In this study, a year-round dynamic simulation of a Combined Cooling, Heating and Power generation (CCHP) system has been performed. The proposed system is composed of an ejector cooling system, an Organic Rankine Cycle (ORC), a solar collector field, heat exchangers and hot and cold storage tanks. It is considered that, a portion of the system input energy is provided by a solar collector field and an auxiliary heater supplies the extra required energy. The dynamic simulation of the introduced CCHP system is performed. The developed model is used to evaluate a year-round performance of the system for a residential building located in Tehran. The obtained results indicated that the proposed... 

    Energy performance and economic feasibility of hot spring-based district heating system – A case study

    , Article Energy ; Volume 211 , 2020 Kavian, S ; Hakkaki Fard, A ; Jafari Mosleh, H ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    As a versatile platform for integrating renewable energies, District Heating systems (DHSs) offer a pragmatic approach toward an environmentally benign and sustainable future. This paper puts forward the feasibility evaluation of using geothermal hot spring source Heat pumps (HPs) for district heating of a village situated in the north-west of Iran, with a cold mountain climate. Solar collectors are also integrated into the DHS as a supplementary heat source. To this aim, three different renewable-energy-based district heating scenarios, viz. a Ground-Source-HP-based (GSHP), a combined GSHP-flat-plate-solar-collector (GSHP-SFPC), and a combined GSHP-linear-parabolic-solar-collector... 

    Experimental evaluation of a vapor compression cycle integrated with a phase change material storage tank based on two strategies

    , Article Energy Reports ; Volume 10 , 2023 , Pages 850-863 ; 23524847 (ISSN) Riahi, A ; Jafari Mosleh, H ; Shafii, M. B ; Sharif University of Technology
    Elsevier Ltd  2023
    Abstract
    In this survey, the integration of a vapor compression cycle with a phase change material (PCM) storage tank has been evaluated experimentally during the hottest days of five cities with different weather conditions: Tehran, Ramsar Hamedan, Bushehr, and Ahvaz. The temperature conditions for outdoor (condenser, compressor, etc.) and indoor (evaporator) air conditioning units are provided with the help of two separated test chambers and a controller system. The desired system has been examined based on two scenarios. In each scenario, the system is assessed for the conventional air conditioning (AC) system (with no PCM involved) and the AC plus PCM unit. Based on scenario 1 operating strategy,... 

    Seismic Performance of Composite Frames Consisting of Reinforced Concrete Columns and Steel Beams

    , M.Sc. Thesis Sharif University of Technology Mosleh Khorrami, Kamran (Author) ; Kazemi, Mohammad Taghi (Supervisor)
    Abstract
    Composite systems consisting of concrete columns and steel beams are introduces as structural systems in recent years. These structural systems enjoy merits of both steel and concrete frames by efficiently combining the advantages of them. This study is allocated to lateral force resistance system using armed concrete and structural steel. Advantages of composite structures rather to those of two other conventional ones are among performance characteristics under ultimate loads, economical conservation, and higher speed of construction.In this research the aim is to study these frame under earthquake induced loads. The seismic performances of these composite frames with through column beams,... 

    Design, Manufacture and Study of a Desalination System with Heat Pipe and PTC

    , M.Sc. Thesis Sharif University of Technology Jafari Mosleh, Hassan (Author) ; Behshad Shafii, Mohammad (Supervisor)
    Abstract
    According to studies on solar stills, there has been designed an industrial solar still with a linear parabolic through collector (PTC) having higher efficiency than similar systems. Linear PTC coupled with heat pipe is very effective for increasing the efficiency of solar still. This system includes a parabolic trough collector functions by focusing the sunlight on a heat pipe and absorption of heat by a heat pipe. To minimize heat loss, heat pipe is embedded in an evacuated tube collector. By absorbing the heat, the working fluid of the heat pipe (ethanol) will be evaporated and due to its reduced density, it moves upwards and attains to the condenser. The external part of the condenser is... 

    A comprehensive comparative investigation on solar heating and cooling technologies from a thermo-economic viewpoint—A dynamic simulation

    , Article Energy Science and Engineering ; December , 2020 Jafari Mosleh, H ; Behnam, P ; Abbasi Kamazani, M ; Mohammadi, O ; Kavian, S ; Ahmadi, P ; Rosen, M. A ; Sharif University of Technology
    John Wiley and Sons Ltd  2020
    Abstract
    The yearly thermo-economic performance is dynamically investigated for three solar heating and cooling systems: solar heating and absorption cooling (SHAC), solar heating and ejector cooling (SHEC), and heating and solar vapor compression cooling (HSVC). First, the effects of important design parameters on the thermo-economic performance of the systems to supply the heating and cooling loads of the building are evaluated. The systems are parametrically analyzed with the weather conditions of Tehran, Iran. The results show that the life cycle costs (LCC) of the SHAC and HSVC systems are alike and much lower than those of the SHEC system. The HSVC system exhibits the best performance from... 

    Nonisothermal two-phase modeling of the effect of linear nonuniform catalyst layer on polymer electrolyte membrane fuel cell performance

    , Article Energy Science and Engineering ; Volume 8, Issue 10 , 2020 , Pages 3575-3587 Sabzpoushan, S ; Jafari Mosleh, H ; Kavian, S ; Saffari Pour, M ; Mohammadi, O ; Aghanajafi, C ; Ahmadi, M. H ; Sharif University of Technology
    John Wiley and Sons Ltd  2020
    Abstract
    In this research, it is investigated to numerically evaluate the performance of a polymer electrolyte membrane fuel cell (PEMFC). The performance is investigated through the nonuniformity gradient loading at the catalyst layer (CL) of the considered PEMFC. Computational fluid dynamics is used to simulate a 2D domain in which a steady-state laminar compressible flow in two-phase for the PEMFC has been considered. In this case, a particular nonuniform variation inside the CL along the channel is assumed. The nonuniform gradient is created using a nonisothermal domain to predict the flooding effects on the performance of the PEMFC. The computational domain is considered as the cathode of PEMFC,... 

    A comprehensive comparative investigation on solar heating and cooling technologies from a thermo-economic viewpoint—A dynamic simulation

    , Article Energy Science and Engineering ; Volume 9, Issue 5 , 2021 , Pages 724-742 ; 20500505 (ISSN) Jafari Mosleh, H ; Behnam, P ; Abbasi Kamazani, M ; Mohammadi, O ; Kavian, S ; Ahmadi, P ; Rosen, M. A ; Sharif University of Technology
    John Wiley and Sons Ltd  2021
    Abstract
    The yearly thermo-economic performance is dynamically investigated for three solar heating and cooling systems: solar heating and absorption cooling (SHAC), solar heating and ejector cooling (SHEC), and heating and solar vapor compression cooling (HSVC). First, the effects of important design parameters on the thermo-economic performance of the systems to supply the heating and cooling loads of the building are evaluated. The systems are parametrically analyzed with the weather conditions of Tehran, Iran. The results show that the life cycle costs (LCC) of the SHAC and HSVC systems are alike and much lower than those of the SHEC system. The HSVC system exhibits the best performance from... 

    Experimental and numerical investigation of using pulsating heat pipes instead of fins in air-cooled heat exchangers

    , Article Energy Conversion and Management ; Volume 181 , 2019 , Pages 653-662 ; 01968904 (ISSN) Jafari Mosleh, H ; Bijarchi, M. A ; Shafii, M. B ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    The goal of this study is the experimental and numerical investigation of using pulsating heat pipes (PHPs) as substitutes for fins in a typical air-cooled heat exchanger. Due to the small temperature difference between the cooling air and internal airflow in the case study, it was necessary that appropriate PHPs with the capability to work in small temperature difference conditions be investigated and an appropriate working fluid be selected. After reviewing various studies, R134a was selected as the best working fluid from the heat transfer standpoint. Afterward, a testing device was designed and fabricated. Additionally, in order to predict the behaviors of the main tubes with pulsating... 

    Optimized sectionalizing switch placement strategy in distribution systems

    , Article IEEE Transactions on Power Delivery ; Vol. 27, issue. 1 , 2012 , p. 362-370 ; ISSN: 08858977 Abiri-Jahromi, A ; Fotuhi-Firuzabad M ; Parvania, M ; Mosleh, M ; Sharif University of Technology
    2012
    Abstract
    Automation is acknowledged by distribution utilities as a successful investment strategy to enhance reliability and operation efficiency. However, practical approaches that can handle the complex decision-making process faced by decision makers to justify the long-term financial effects of distribution automation have remained scarce. An automated and remote-controlled sectionalizing switch play a fundamental role in an automated distribution network. This paper introduces a new optimization approach for distribution automation in terms of automated and remotely controlled sectionalizing switch placement. Mixed-integer linear programming (MILP) is utilized to model the problem. The proposed... 

    Optimized sectionalizing switch placement strategy in distribution systems

    , Article IEEE Transactions on Power Delivery ; Volume 27, Issue 1 , 2012 , Pages 362-370 ; 08858977 (ISSN) Abiri Jahromi, A ; Fotuhi Firuzabad, M ; Parvania, M ; Mosleh, M ; Sharif University of Technology
    2012
    Abstract
    Automation is acknowledged by distribution utilities as a successful investment strategy to enhance reliability and operation efficiency. However, practical approaches that can handle the complex decision-making process faced by decision makers to justify the long-term financial effects of distribution automation have remained scarce. An automated and remote-controlled sectionalizing switch play a fundamental role in an automated distribution network. This paper introduces a new optimization approach for distribution automation in terms of automated and remotely controlled sectionalizing switch placement. Mixed-integer linear programming (MILP) is utilized to model the problem. The proposed... 

    Performance comparison of the neyman-pearson fusion rule with counting rules for spectrum sensing in cognitive radio

    , Article Iranian Journal of Science and Technology - Transactions of Electrical Engineering ; Volume 36, Issue E1 , 2012 , Pages 1-17 ; 22286179 (ISSN) Mosleh, S ; Tadaion, A. A ; Derakhtian, M ; Aref, M. R ; Sharif University of Technology
    2012
    Abstract
    Distributed spectrum sensing (DSS) is of great importance in Cognitive Radio, especially under fading or shadowing effects. In order to evaluate the performance of a distributed system, it is commonly compared with the centralized system as an upper performance bound. Now the question is whether or not one can obtain a distributed strategy serving as an upper bound to benchmark any distributed strategy, tighter than that of the centralized scheme. Here, we suggest employing the Neyman-Pearson (NP) fusion rule to achieve an upper bound. Furthermore, the analysis of a randomized fusion rule has been provided, which is a long-existing problem in this field. For this purpose, theoretical...