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Building circularity as a measure of sustainability in the old and modern architecture: A case study of architecture development in the hot and dry climate
, Article Energy and Buildings ; Volume 275 , 2022 ; 03787788 (ISSN) ; Golabchi, M ; Bararzadeh Ledari, M ; Sharif University of Technology
Elsevier Ltd
2022
Abstract
Nowadays, the construction industry has turned to the consumption of large amounts of natural resources in line with global population growth, which has led to the shortage of resources, and consequently increases in the construction debris; therefore, the present article has studied the positive and negative points of the architectural development process. The results have indicated that being compared to the former architecture; the development of architecture has reduced energy consumption by 78%. Hence, the scarcity of virgin resources and consequently the increase of environmental effects such as Global Warming Potential (GWP) have been measured based on the Life Cycle Assessment (LCA)....
Developing a Hybrid Technology Evaluation Model for Minimization of the Cost of the Dynamic Effects of Changes and Resource Consumption on Ecosystem Sustainability
, Ph.D. Dissertation Sharif University of Technology ; Saboohi, Yadollah (Supervisor)
Abstract
Rapid population growth and increasing and rapid consumption of natural resources in the ecosystem leads to the destruction of resources and thus increases the entropy in the earth, and this increase in entropy in the ecosystem changes the environment and has adverse effects on it. As all components in nature interact with each other by action and reaction, therefore, any change in the environment must be adjusted by other sectors and approached a reversible process to enable sustainable ecosystem changes. On the other hand, there is evidence that the world's physical capacity is inadequate to meet the requirements of sustainable development. The reason for this fact is that the ecological...
The tolerance level of the ecosystem as a limited constrain in the development planning
, Article Ecological Indicators ; Volume 132 , 2021 ; 1470160X (ISSN) ; Saboohi, Y ; Azamian, S ; Sharif University of Technology
Elsevier B.V
2021
Abstract
There are several methods for assessing ecosystem tolerance level, each method is defined according to the target of the ecosystem development. This paper seeks a way to plan for the development of the existing ecosystems modified for human activities. For this purpose, two methods have been applied to assess the effects of local development on the local ecosystem tailored to the different demands. Thus, after gathering data in a coastal region all technologies being capable to be applied in this region regarding ecotourism development (population growth) were determined. Via different indicators, the quality of the ecosystem was evaluated. The Ecosystem Quality Index (EQI) and Technique for...
BIM with blockchain for decentralised circular construction supply chain
, Article Digitalization in Construction: Recent Trends and Advances ; 2023 , Pages 235-259 ; 978-100380529-8 (ISBN); 978-103251789-6 (ISBN) ; Hosseini, M. R ; Kocaturk, T ; Arashpour, M ; Bararzadeh ledari, M ; Sharif University of Technology
CRC Press
2023
Abstract
Blockchain and smart contracts are measures to speed up the diffusion of circular economy into construction processes. Nevertheless, integrated solutions that cover all the aspects of circular supply chain including network structure, business processes, and products are still missing. This chapter addresses this gap, through offering a workable solution to address the disconnected nature of blockchain adoption across construction procedures. Informed by the overall approach of design science research (DSR), the solution is created following the five-staged procedure of DSR: (1) problem identification, (2) treatment suggestion, (3) treatment design, (4) evaluation and (5) conclusion....
Digitalised circular construction supply chain: An integrated BIM-Blockchain solution
, Article Automation in Construction ; Volume 148 , 2023 ; 09265805 (ISSN) ; Hosseini, M. R ; Kocaturk, T ; Arashpour, M ; Bararzadeh Ledari, M ; Sharif University of Technology
Elsevier B.V
2023
Abstract
Blockchain and smart contracts are measures to speed up the diffusion of circular economy into construction processes. Nevertheless, integrated solutions that cover all the aspects of circular supply chain including network structure, business processes, and the products are still missing. This paper is an attempt to bridge this gap, through offering a workable solution to address the disconnected nature of blockchain adoption across construction procedures. Informed by the overall approach of design science research (DSR), the solution is created following the five-staged procedure of DSR: (1) problem identification, (2) treatment suggestion, (3) treatment design, (4) evaluation and (5)...
Greening steel industry by hydrogen: Lessons learned for the developing world
, Article International Journal of Hydrogen Energy ; Volume 48, Issue 94 , 2023 , Pages 36623-36649 ; 03603199 (ISSN) ; Khajehpour, H ; Akbarnavasi, H ; Edalati, S ; Sharif University of Technology
Elsevier Ltd
2023
Abstract
Whole-of-economy greenhouse gas emissions reduction is one of the most important targets of transitioning to sustainable energy systems. With 7% of global emissions, the steel industry is one of the most carbon-intensive industries. Approximately two-thirds of annual steel production is attributed to the conventional blast furnace (BF)/converter route with high carbon emissions. Many countries in the world have developed large-scale laboratory pilots in line with steel production processes with green hydrogen or syngas. In this study, the experienced strategies of green, gray, and blue steel generation in the world are studied. Accordingly, the technology development approach of different...
Advanced utilization of urban sewage sludge for low-carbon hydrogen and power production in steel manufacturing
, Article Energy Conversion and Management ; Volume 315 , 2024 ; 01968904 (ISSN) ; Akbarnavasi, H ; Khajehpour, H ; Bayat, D ; Edalati, S ; Nasseriyan, P ; Moghaddari, S ; Sharif University of Technology
2024
Abstract
The study presents a comprehensive analysis of utilizing urban sewage sludge for low-carbon hydrogen and power production in steel manufacturing. Focusing on biomass gasification and anaerobic digestion, it evaluates the efficiency of various technologies. Key findings include the effectiveness of micro turbines with scrubbing and Stirling Motors with PSA for simultaneous heat and power generation, achieving output powers of 1081.44 kW and 1167.74 kW, and annual electricity generations of 9.45 GWh and 10.20 GWh, respectively. For hydrogen and synthesis gas production, the PSA (Pressure Swing Adsorption) technology showed a volumetric flow rate of 14315.23/day and a mass flow rate of 862.4...
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) ; 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...
Water- food- energy- ecosystem nexus model development: Resource scarcity and regional development
, Article Energy Nexus ; Volume 10 , 2023 ; 27724271 (ISSN) ; Saboohi, Y ; Azamian, S ; Sharif University of Technology
Elsevier Ltd
2023
Abstract
Demographic, economic, social, and climate change are all putting pressure increasing on natural resources through global energy, food, and water demand growth, which threatens the well-being of the ecosystems. To address this scientific and political challenge, a dual-purpose optimization tool has been proposed with the approach of minimizing the environmental effects and development costs of the region in line with resource consumption management, which optimally takes resources from the ecosystem, and regarding development approach (ecotourism development in this study), it has suggested the optimal strategy to improve the economic benefits. Moreover, this model is able to propose some...
Sustainable hydrogen supply chain development for low-carbon transportation in a fossil-based port region: A case study in a tourism hub
, Article International Journal of Hydrogen Energy ; Volume 65 , 2024 , Pages 95-111 ; 03603199 (ISSN) ; Bararzadeh Ledari, M ; Fani, M ; kamelizadeh, D ; Sharif University of Technology
2024
Abstract
This study combines an investigation of Kish Island's transition to sustainable energy and transportation with a focus on the integration of hydrogen port infrastructure, employing nonlinear optimization to chart the path forward. It emphasizes the pivotal role of such infrastructure in transitioning from traditional vehicles and gas-fired power, evaluating scenarios like a 30% reduction in fossil fuels and the implementation of carbon taxes to encourage a shift to electric and hydrogen-powered vehicles. Forecasts suggest an increase in electric vehicle adoption to 46% by 2023, with a goal of complete electrification by 2042, thereby transforming the energy landscape and reducing emissions....
Multi objective planning for sustainable retrofit of educational buildings
, Article Journal of Building Engineering ; Volume 24 , 2019 ; 23527102 (ISSN) ; Aramoun, F ; Bararzadeh, M ; Avami, A ; Sharif University of Technology
Elsevier Ltd
2019
Abstract
The sustainable retrofit options may significantly improve the energy consumption and the environmental impacts of the existing buildings. This paper presents a multi objective optimization framework to reach the minimum economic costs and Global Warming Potential (GWP) impact of existing buildings. New energy-efficient technologies for the supply side of the energy system are considered which may minimize life cycle environmental impacts of buildings. Two educational buildings in the campus of Sharif University of Technology are studied. The results show that utilizing reciprocating engine and exhaust-fired absorption chiller reduce the GWP to 133 tons (17.79% of reduction) and 190 tones...
An optimization methodology for cancer growth control base on breeder genetic algorithm-finite volume coupling
, Article Proceedings of the ASME Summer Bioengineering Conference 2009, SBC2009, 17 June 2009 through 21 June 2009, Lake Tahoe, CA ; Issue PART A , 2009 , Pages 567-568 ; 9780791848913 (ISBN) ; Mohammadi Amin, M ; Habibpour Ledari, A ; Sharif University of Technology
2009
Exergy analysis of a bio-system: Soil–plant interaction
, Article Entropy ; Volume 23, Issue 1 , 2021 , Pages 1-28 ; 10994300 (ISSN) ; Saboohi, Y ; Valero, A ; Azamian, S ; Sharif University of Technology
MDPI AG
2021
Abstract
This paper explains a thorough exergy analysis of the most important reactions in soil– plant interactions. Soil, which is a prime mover of gases, metals, structural crystals, and electrolytes, constantly resembles an electric field of charge and discharge. The second law of thermodynamics reflects the deterioration of resources through the destruction of exergy. In this study, we developed a new method to assess the exergy of soil and plant formation processes. Depending on the types of soil, one may assess the efficiency and degradation of resources by incorporating or using biomass storage. According to the results of this study, during different processes from the mineralization process...
Exergy cost analysis of soil-plant system
, Article International Journal of Exergy ; Volume 38, Issue 3 , 2022 , Pages 293-319 ; 17428297 (ISSN) ; Saboohi, Y ; Valero, A ; Azamian, S ; Sharif University of Technology
Inderscience Publishers
2022
Abstract
In this paper, inspired by a gas turbine power plant, the interaction between plant-soil processes has been simulated. It is aimed to indicate that solar energy in the photosynthesis process is equivalent to the fuel in combustion chambers. In the glucose production process, when solar exergy is considered as a fuel, 99.4% of total exergy cost is supplied by solar exergy and only 0.6% of the exergy cost is provided by nutrients’ content. In general, 30% of the total exergy entering the Calvin cycle is consumed in glucose production and the remaining 70% is related to biomass generation (as flue gas in the gas turbine). Moreover, 98% of the total exergy cost of the soil box is related to...
Fostering self-sustaining water-energy regions: A nexus approach to mitigate water scarcity
, Article Sustainable Production and Consumption ; Volume 43 , 2023 , Pages 230-250 ; 23525509 (ISSN) ; Joda, F ; Ledari, M. B ; Akbarnavasi, H ; Sharif University of Technology
Elsevier B.V
2023
Abstract
The excessive exploitation of fossil resources has induced climate change and consequently water scarcity, which jeopardizes agriculture and the sustainable development of regions. The main objective of this study is to establish a synergy among various components of the nexus model, planning, and policy-making to address the water scarcity crisis and its adverse implications for ensuring the availability and sustainable management of water and employment growth in a region based on the regional constraints. This study develops a water-energy-food-waste nexus model that incorporates data on renewable energy potential, wastewater treatment, and specifically herbal plant cultivation, to...
Flare Load Reduction by Implementing HIPS in Assaluyeh gas Refinery
, M.Sc. Thesis Sharif University of Technology ; Sattari, Sorna (Supervisor)
Abstract
The HIPS is a safety integrity system that is designed to provide overpressure protection that is at least equivalent in reliability to a mechanical relief device. In this study, the performance evaluation of HIPS in Assaluyeh gas Refiner is studied.In the first stage, over pressure analysis is compiled using dynamic simulation and API RP 520 and the recommended HPPS design procedure is presented. Also, The High Integrity Protection Systems (HIPS) further reduced the relief load and even eliminated the relief from the stabilizer tower for the scenarios tested.In this project, following a detailed study of the commissioning process and its criticalities, Hazop is selected as the most suitable...
Aligning Net zero energy, carbon Neutrality, and regenerative concepts: An exemplary study of sustainable architectural practices
, Article Journal of Building Engineering ; Volume 90 , 2024 ; 23527102 (ISSN) ; Bararzadeh Ledari, M ; Dehvari, H ; Sahamiyan Moghaddam, M ; Hosseini, M.R ; Sharif University of Technology
2024
Abstract
This paper introduces an innovative approach that combines Net Zero Energy (NZE), Net Zero Carbon (NZC), and Regenerative principles, redefining sustainable architecture in Iran. Focusing on a residential “attached house,” the study employed strategies like thermal insulation, Low-E glass, shading, and renewable energy sources. Results show a 45 % improvement in thermal performance, reducing heating gas usage by over 42 % and electricity usage by 8 %. With shading, heating and cooling demands decreased by 51.7 % and 12.55 %, respectively. Swapping conventional walls for a thermal mass system led to a 74 % reduction in heating gas and a 17.2 % cut in cooling electricity. Additionally, PV...
Sustainable celloMOF cargoes for regenerative medicine and drug delivery therapies: A review
, Article Industrial Crops and Products ; Volume 212 , 2024 ; 09266690 (ISSN) ; Taheri-Ledari, R ; Kashtiaray, A ; Soltani, S. S ; Mashayekhan, S ; Maleki, A ; Sharif University of Technology
2024
Abstract
Metal-organic frameworks (MOFs) have been at the frontline of nanotechnology for the recent decade due to their significant porosity, large surface area, varied configuration, and tunable chemical architecture. However, the utilization of these compounds in biomedicine is facing severe challenges. These problems can be addressed by an innovative approach via hybridizing MOFs with natural polymers such as cellulose, which have excellent mechanical properties and biodegradability and are easily modified chemically. Cellulose-MOFs (CelloMOFs) are new, appealing hybrid composites that provide unique properties unavailable in other materials by conjugating cellulosic derivatives with MOFs. The...
Probability of missed detection as a criterion for receiver placement in MIMO PCL
, Article IEEE National Radar Conference - Proceedings, 7 May 2012 through 11 May 2012, Atlanta, GA ; 2012 , Pages 0924-0927 ; 10975659 (ISSN) ; 9781467306584 (ISBN) ; Chitgarha, M. M ; Radmard, M ; Nayebi, M. M ; Sharif University of Technology
IEEE
2012
Abstract
Using multiple antennas at the transmit and receive sides of a passive radar brings both the benefits of MIMO radar and passive radar. However one of the obstacles arisen in such configuration is the receive antennas placement in proper positions so that the radar performance is improved. Here we just consider the case of positioning one receiver among multiple illuminators of opportunity. Indeed it is a start for the solution of optimizing the geometry of the multiple receivers in a passive radar
An efficient method for the ring opening of epoxides with aromatic amines by Sb(III) chloride under microwave irradiation
, Article Journal of Chemical Research ; Issue 4 , 2008 , Pages 220-221 ; 03082342 (ISSN) ; Hashemi, M. M ; Mottaghi, M. M ; Foroughi, M. M ; Sharif University of Technology
2008
Abstract
SbCl3 supported on montmorillonite K-10 is an efficient catalyst for the ring opening of epoxides with aromatic amines under solvent-free conditions and microwave irradiation to give the corresponding b-amino alcohols in high yields with high regioselectivity