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    An exergetic model for the ambient air temperature impacts on the combined power plants and its management using the genetic algorithm

    , Article International Journal of Air-Conditioning and Refrigeration ; Volume 29, Issue 1 , 2021 ; 20101325 (ISSN) Khajehpour, H ; Norouzi, N ; Fani, M ; Sharif University of Technology
    World Scientific  2021
    Abstract
    4E analysis is used on a Brayton-Rankine combined cycle power plant (CCPP) with a dual pressure heat recovery steam generation (HRSG) system. A multi-objective genetic-based evolutionary optimization has been used to estimate the most optimal exergy efficiency status, exergy cost reduction, carbon emission reduction, and NOx emission reduction. For the validation of the data, the simulation results are compared with the plant's data. This study investigates the effect of every decisive parameter on the objective performance parameters of the CCPP. The primary estimated results are the emission rates, efficiencies, and the exergoeconomic cost of the system. At the optimum operational state,... 

    Exergoenvironmental and exergoeconomic modelling and assessment in the complex energy systems

    , Article Iranian Journal of Chemistry and Chemical Engineering ; Volume 41, Issue 3 , 2022 , Pages 989-1002 ; 10219986 (ISSN) Norouzi, N ; Choubanpisheh, S ; Talebi, S ; Khajehpour, H ; Sharif University of Technology
    Iranian Institute of Research and Development in Chemical Industries  2022
    Abstract
    Traditionally energy systems were analyzed technically, but current environmental issues and considerations have put new constraints on the planning and managing of energy systems. Such an exergoeconomic and exergoenvironmental analysis were born. This analysis is aimed to describe the necessity and application of a new concept in environmental liability accounting based on physical quantities to overcome the weaknesses of the developed allocation methods and the internalization of external environmental damages. The proposed method is modified in environmental analysis to consider the effect of non-energy flows on a macro-surface energy system. As a case study, this method is tuned for a... 

    Energy, Exergy, and exergoeconomic (3E) analysis of gas liquefaction and gas associated liquids recovery co-process based on the mixed fluid cascade refrigeration systems

    , Article Iranian Journal of Chemistry and Chemical Engineering ; Volume 41, Issue 4 , 2022 , Pages 1391-1410 ; 10219986 (ISSN) Norouzi, N ; Bashash Jafarabadi, Z ; Valizadeh, G ; Hemmati, M. H ; Khajehpour, H ; Sharif University of Technology
    Iranian Institute of Research and Development in Chemical Industries  2022
    Abstract
    In this study, energy, exergy, and exergoeconomic analysis is performed on the recent trend of joint production of liquefied natural gas and natural gas liquids based on mixed fluid cascade most important of refrigeration systems. The proposed process is first simulated and exergticly analyzed, and finally, an economic model is used to analyze the exergoeconomic performance. The results include the cost of exergy destruction, exergoeconomic factors, and exergy efficiency. The exergy analysis results show that the proposed process's exergy efficiency is about 53.84%, and the destruction rate is 42618 kW with LNG and NGL production rates of 69.00 kg/s and 27.42 kg/s, respectively. Also,... 

    Design of a PCM storage system for a solar absorption chiller based on exergoeconomic analysis and genetic algorithm

    , Article International Journal of Refrigeration ; Volume 36, Issue 1 , 2013 , Pages 88-101 ; 01407007 (ISSN) Godarzi, A. A ; Jalilian, M ; Samimi, J ; Jokar, A ; Vesaghi, M. A ; Sharif University of Technology
    2013
    Abstract
    In this article, a solar absorption chiller used in MehrAbad region of Tehran, Iran is optimized with exergoeconomic principles and genetic algorithm. After optimizing, a storage system with Phase Change Material technique (PCM) is designed for this optimum configuration for supporting system when sunshine is not received adequately, especially at night. Exergoeconomic analysis is based on finding some ways to improving the performance of a thermal system considering economic constrains. In this study, the exergoeconomic optimization is applied for LiBr-water absorption. The results show that total investment cost of main system, the whole of system except storage system, has increased... 

    Thermodynamic and thermoeconomic analysis of a novel combined cooling and power (CCP) cycle

    , Article Applied Thermal Engineering ; Volume 139 , 2018 , Pages 474-487 ; 13594311 (ISSN) Rostamzadeh, H ; Ghaebi, H ; Parikhani, T ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    A new combined cooling and power (CCP) cycle is proposed by a novel combination of the Kalina cycle (KC) and ejector refrigeration cycle (ERC) to produce simultaneous power output and cooling output. The exhaust of the turbine is fed to the ejector as a primary flow to draw the secondary flow (outlet of the evaporator) into the ejector. Energy, exergy, and exergoeconomic analysis of the proposed cycle are carried out leading to determine the first-law-efficiency, the second-law-efficiency, the sum unit cost of the product (SUCP) of the system, and the main source of the irreversibility. The thermal efficiency, exergy efficiency, overall exergy destruction rate, SUCP of the system, net... 

    A new biogas-fueled bi-evaporator electricity/cooling cogeneration system: Exergoeconomic optimization

    , Article Energy Conversion and Management ; Volume 196 , 2019 , Pages 1193-1207 ; 01968904 (ISSN) Gholizadeh, T ; Vajdi, M ; Rostamzadeh, H ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    An innovative bi-evaporator electricity/cooling cogeneration system fueled by biogas is introduced. The plausibility of the introduced integrated power plant is examined from thermodynamic and economic vantage points. Later, single- and multi-objective optimization of the reckoned system are achieved by selecting appropriate parameters as decision variables and thermal and exergy efficiencies and total unit product cost (TUPC) of the system as objective functions. Four optimum modes of thermal efficiency optimum design (TEOD), exergy efficiency optimum design (EEOD), cost optimum design (COD), and multi-objective optimum design (MOOD) are selected for optimization and the attained results... 

    Exergoeconomic optimization of black liquor gasification combined cycle using evolutionary and conventional iterative method

    , Article International Journal of Chemical Reactor Engineering ; 2010 , Volume 8 ; 15426580 (ISSN) Fani, M ; Farhanieh, B ; Mozafari, A. A ; Sharif University of Technology
    2010
    Abstract
    Gasification of black liquor is an alternative recovery technology. Pulp and paper industries are turning their attention to black liquor gasification as a replacement for recovery boilers. Gasification-combined cycle exergoeconomic analyses have been used to study the economical and exergetical performance of black liquor. Both conventional iterative exergoeconomic optimization and multi objective evolutionary optimization have been applied. The iterative optimization results have been compared with evolutionary programming results in order to evaluate the accuracy. The strength of proposed optimization methods are elucidated in a case study applied to Mazandaran Wood and Paper Industries... 

    Exergoeconomic optimization and sensitivity analysis of a commercial parabolic trough collector for the climate of Tehran, Iran

    , Article Energy Science and Engineering ; Volume 7, Issue 6 , 2019 , Pages 2950-2965 ; 20500505 (ISSN) Hoseinzadeh, H ; Kasaeian, A ; Shafii, M. B ; Sharif University of Technology
    John Wiley and Sons Ltd  2019
    Abstract
    The exergoeconomic analysis is a powerful tool to study an energy system and provide rational decision-making for it. This paper is aimed at exergoeconomic optimization and sensitivity analysis evaluation of the results of a commercial parabolic trough collector (PTC). First, an analysis of optical, thermal, exergy, and economic equations of the PTC system is presented. Then, the objective function and variables are optimized through MATLAB software using the hybrid algorithm code. The objective function as the exergy loss rate is a combination of exergy loss and system cost. The evaluation of the results has been carried out considering the radiation intensity in different months of the... 

    Thermo – Economic Investigation Of A Multi-Generation System Based On Solar And Geothermal Energies Considering Emission Reduction And Relying On Maximum Utilization Of Renewable Energies

    , M.Sc. Thesis Sharif University of Technology Badri, Mohammad (Author) ; Saeedi, Mohammad Hassan (Supervisor)
    Abstract
    In this research, a multigeneration system was designed and evaluated, utilizing solar and geothermal energy to generate electricity, fresh water, hydrogen, and oxygen. The system's performance was assessed from energy, exergy, and economic perspectives. The setup involves a solar tower contributing energy to the gas cycle and a geothermal well supplying preheated water for the steam cycle. The system employs a molten salt cycle to capture heat from the solar receiver, transferring it to the air cycle. The remaining energy requirement is met by the Air Brayton cycle, which combines methane and hydrogen as fuels within the combustion chamber. Additionally, a steam cycle is integrated to... 

    Exergoeconomic optimization of a new trigeneration system driven by biogas for power, cooling, and freshwater production

    , Article Energy Conversion and Management ; Volume 205 , 2020 Gholizadeh, T ; Vajdi, M ; Rostamzadeh, H ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Anaerobic fermentation of crop straw/animal dug can be the most appropriate solution for biomass conversion into applicable renewable energy-based fuels. However, due to the imperfection matching between the biogas combustion process and energy conversion system, a painstakingly design procedure is required to devise high-efficient energy system for capturing biogas efficiently. For this aim, a new trigeneration system driven by biogas is devised for electricity, refrigeration, and potable freshwater generation. The devised system encompasses a gas turbine (GT) cycle, a new cooling/electricity cogeneration system based on organic Rankine cycle (ORC) and ejector cooling cycle (ECC), and a... 

    Thermal, thermodynamic and exergoeconomic investigation of a parabolic trough collector utilizing nanofluids

    , Article Applied Thermal Engineering ; Volume 206 , 2022 ; 13594311 (ISSN) Vahedi, B ; Golab, E ; Nasiri Sadr, A ; Vafai, K ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    The exploitation of solar energy facilitates the renewable energy paradigm. In this regard, parabolic trough collectors (PTC) are considered as a useful set-up to absorb solar energy. Simultaneous study of thermal, thermodynamic, and exergoeconomic performance of PTC systems paves the way for designers and manufacturers to not only have a better insight into understanding the underlying concepts about the operation of PTC systems but also to find the most effective and cost-effective circumstances. This study aims at analyzing a practical PTC system by considering an evacuated absorber tube with glass cover, non-uniform heat flux, and taking into account the convective and radiative heat... 

    Thermodynamic Analysis of the Fluidized Bed Waste Gasification

    , M.Sc. Thesis Sharif University of Technology Fakhim Ghanbarzadeh, Babak (Author) ; Farhanieh, Bijan (Supervisor)
    Abstract
    Biomass's utilization provides sufficient energy which can be used for electricity generation, engine applications and etc. In gasitication process, biomass will be converted into clean and combustible gas in presence of steam and air. Biomass integrated-gasifier/gas turbine combined cycle (BIG/GTCC) systems are capable of producing up to twice as much electricity per unit of biomass consumed and are expected to have lower capital investment requirements per kilo Watt of capacity than condensing-extraction steam turbine (CEST) systems. In this Thesis thermodynamic analyses (both energy and exergy analyses) have been conducted for a combined cycle power plant, the investigated system... 

    Optimization of Pulp and Paper Process in Order to Save Energy, Fuel and Capital Investment

    , Ph.D. Dissertation Sharif University of Technology Fani, Maryam (Author) ; Farhanieh, Bijan (Supervisor) ; Mozafari, Aliasghar (Supervisor)
    Abstract
    By applying the Pinch Technology and Exergoeconomic simultaneously, to a complex process system, beneficial and energy-efficient measures are identified.In the present research “Three-link-model” Exergoeconomic methodology optimizes the system and contrary to traditional exergoeconomic methods, reversed method is used. The approach proposed for optimization of such a complex system is to iteratively optimize subsystems. Since assumptions considered by conventional Exergoeconomic for calculating the cost-optimal exergetic efficiency and relative cost difference, are not applicable, new assumptions are to be considered. Unlike traditional Exergoeconomic method, product’s exergetic specific... 

    Exergoeconomic Analysis and Optimization of Multi Effect Desalination System Integrated with Gas Turbine Considering Solar Pre-Heater

    , M.Sc. Thesis Sharif University of Technology Moghtaderi, Hamed (Author) ; Roshandel, Ramin (Supervisor) ; Farhanieh, Bijan (Co-Advisor)
    Abstract
    Considering the increasing growth of population and the economical development in our country, the need to drinking water as well as agricultural water sources is felt more. In this respect and with regard to the lack of water sources in central and southern parts of our country, the present project suggests a system which can be used in south of the country to produce desalinated water from the salt water of sea. This system is recommended due to the comparative advantages of the southern part of the country including the prevalence of gas turbine plants, proper solar insulation and the access to salt water. The system is suggested with the presupposition of accessibility to a working gas... 

    Exergoeconomic Composite Curves-from theory to practice

    , Article 11th World Multi-Conference on Systemics, Cybernetics and Informatics, WMSCI 2007, Jointly with the 13th International Conference on Information Systems Analysis and Synthesis, ISAS 2007, Orlando, FL, 8 July 2007 through 11 July 2007 ; Volume 5 , 2007 , Pages 332-337 ; 1934272191 (ISBN); 9781934272190 (ISBN) Fani, M ; Farhanieh, B ; Mozafari, A. A ; International Institute of Informatics and Systemics (IIIS) ; Sharif University of Technology
    2007
    Abstract
    Exergoeconomic Composite Curves (EECC) - a synergy of Exergoeconomic and Composite Curves of Pinch Analysis is a novel method and propounded for the first time in this Paper. This is the first attempt to represent investment and annual operating and maintenance costs in addition to Exergy in a graphical form similar to Composite Curves. In this Paper a simplified methodology that represents the Exergy of chemical units of a process in a graphical form and preliminary investment strategy is developed for use with the EECC. The object has therefore been to study the possibilities to save money in Northern Pulp and Paper Mill, an Iranian mill with a capacity of 600 tons/day  

    Robust and efficient zero liquid discharge design strategy using four novel desalination systems: A comprehensive 4E assessment

    , Article Journal of Cleaner Production ; Volume 310 , 2021 ; 09596526 (ISSN) Ghofrani, I ; Moosavi, A ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    Discharging unconventional water sources having a high content of inorganic compounds is extremely destructive to the environment. In this research, four novel semi-open-air and closed-air configurations of brine-recycle humidification-dehumidification (BRHDH) systems with zero liquid discharge (ZLD) approach are presented to treat unconventional waters cost-effectively. Bubble-column humidifiers and dehumidifiers are used to have a low initial expenditure, and system multi-staging is implemented to reduce the operating expense of the configurations. The configurations are evaluated for high saline brine treatment using comprehensive energy, exergy, exergoeconomic, and exergoenvironmental... 

    Exergoeconomic optimization of a trigeneration system for heating, cooling and power production purpose based on TRR method and using evolutionary algorithm

    , Article Applied Thermal Engineering ; Volume 36, Issue 1 , 2012 , Pages 113-125 ; 13594311 (ISSN) Ghaebi, H ; Saidi, M. H ; Ahmadi, P ; Sharif University of Technology
    2012
    Abstract
    In the present study, exergoeconomic optimization of a trigeneration system for cooling, heating and power purposes has been carried out. The system is made up of air compressor, combustion chamber, gas turbine, dual pressure heat recovery steam generator and absorption chiller in order to produce cooling, heating and power. The design parameters of this study are selected as: air compressor pressure ratio, gas turbine inlet temperature, pinch point temperatures in dual pressure heat recovery steam generator, pressure of steam that enters the generator of absorption chiller, process steam pressure and evaporator of the absorption chiller chilled water outlet temperature. The economic model... 

    Development of Water-Energy Nexus (Watergy)Model Considering Water Quality Pyramid

    , Ph.D. Dissertation Sharif University of Technology Hosseinnejad, Ahmad (Author) ; Saboohi, Yadollah (Supervisor) ; Shayegan, Jalal (Supervisor) ; Zarei, Ghasem (Co-Supervisor)
    Abstract
    Water-energy nexus approach is any water and energy interaction in a system to provide sustainable usage of resources. Quantitative model of interaction of water and energy in analyzing water-energy nexus is not comprehensive approach for solving all challenges facing this section. Qualitative analysis of water-energy nexus provides optimization and prioritization solutions in water and energy systems from other aspects. In present thesis two quantitative and qualitative aspect of water-energy nexus is considered. Initially, for quantitative modeling, interaction and relation of water and energy (watergy) with six principles to form WatErgy Reference System (WERS) was presented. The... 

    Design and Optimization of a Novel Power Cycle and Seawater Freeze Desalination System by Utilizing the Cold Energy of Liquefied Natural Gas

    , Ph.D. Dissertation Sharif University of Technology Eghtesad, Amir Saman (Author) ; Afshin, Hossein (Supervisor) ; Kazemzadeh Hanani, Siamak (Supervisor)
    Abstract
    Access to potable water with standard quality is an inevitable component of human’s lives. Seawater desalination is the precedure of removing the impurities and contaminants in water to achieve the suitable quality for human consumption. Freeze desalination, by consuming relatively much lower energy compared to other techniques has shown to be a promising method for desalination. This technique requires the exertion of a cold source to the system which is then accompanied by simultaneous rejection of the impurities from the water. Regarding this, a numerical study on freeze desalination a hollow cylinder is carried out to determine the effects of the design variables such as heat flux,... 

    Evolutionary algorithm for reversed iterative optimisation method accuracy inspection applied for energetic and economic optimisation of a pulp and paper mill

    , Article International Journal of Exergy ; Volume 7, Issue 3 , 2010 , Pages 311-332 ; 17428297 (ISSN) Fani, M ; Mozafari, A ; Farhanieh, B ; Sharif University of Technology
    2010
    Abstract
    'Three-link-model' Exergoeconomic methodology optimises the design and operability of a system. Contrary to traditional iterative Exergoeconomic optimisation methods, a reversed method is used, since assumptions considered by Tsatsaronis for calculating cost-optimal Exergetic efficiency and relative cost difference, were not applicable, new assumptions have been adopted. In a case study applied to Mazandaran paper industry, iterative reversed optimisation results have been compared with evolutionary programming results. Replacement of Pressure Valve and Direct Cyclone Contact Evaporation is proposed, while by selection of the optimum decision variable, recoverable black liquor is increased...