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    Investigation of a radiative sky cooling module using phase change material as the energy storage

    , Article Applied Energy ; Volume 321 , 2022 ; 03062619 (ISSN) Kiyaee, S ; Khalilmoghadam, P ; Behshad Shafii, M ; Moshfegh, A. Z ; Hu, M ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Radiative sky cooling (RSC) systems have enjoyed a privileged position in the research community due to generating cooling energy without consuming electricity using the open atmospheric window and infrared emission to the sky. However, the system's justification occurs when it reaches a temperature below the minimum 24-hour ambient temperature. This study utilizes phase change materials (PCM) as the energy storage of a hybrid daytime photovoltaic-thermal and nighttime RSC module and investigates the nocturnal cooling energy-saving potential of the system at different phase transition temperatures. After being validated by the experimental data in the literature, the simulated model was used... 

    Thermal performance analysis of an energy pile with triple helix ground heat exchanger

    , Article Geothermics ; Volume 104 , 2022 ; 03756505 (ISSN) Farajollahi, A. H ; Asgari, B ; Rostami, M ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    A Ground Source Heat Pump (GSHP) is a renewable energy-based HVAC system that extracts or supplies heat from/to the ground via a Ground Heat Exchanger (GHE). One of the most commonly used types of GHE in GSHP systems is the energy pile. In this realm, the GSHP system with a triple helix energy pile has become the focus of attention. To this aim, a comprehensive three-dimensional transient Computational Fluid Dynamics model of the energy pile with triple helix GHE and the surrounding soil is developed. The effect of several parameters, including helix pitch, helix diameter and pipe diameter, on the thermal performance of the system, is investigated. Simulated cases are chosen using the design... 

    An emission inventory update for Tehran: The difference between air pollution and greenhouse gas source contributions

    , Article Atmospheric Research ; Volume 275 , 2022 ; 01698095 (ISSN) Shahbazi, H ; Abolmaali, A. M ; Alizadeh, H ; Salavati, H ; Zokaei, H ; Zandavi, R ; Torbatian, S ; Yazgi, D ; Hosseini, V ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Many highly populated cities are still struggling to reach clean air targets, while the zero greenhouse gas emission objectives may accelerate the path toward healthy air for all. Still, there is a fine line between intensive electrification's impact on greenhouse gas emissions and criteria air contaminants depending on the source of the electricity. In this study, the previous version of the emission inventory for Tehran was evaluated and re-calculated in a detailed bottom-up approach to provide the most updated data on the contribution of stationary sources derived by power plants vs. mobile sources. The objectives were to update the emission inventory for improved policymaking, study the... 

    Reduced multiple model predictive control of an heating, ventilating, and air conditioning system using gap metric and stability margin

    , Article Building Services Engineering Research and Technology ; Volume 43, Issue 5 , 2022 , Pages 589-603 ; 01436244 (ISSN) Rikhtehgar, P ; Haeri, M ; Sharif University of Technology
    SAGE Publications Ltd  2022
    Abstract
    In this paper, a reduced multiple-model predictive controller based on gap metric and stability margin is presented to control heating, ventilating, and air conditioning (HVAC) systems. To tackle the strong nonlinearity and large number of degrees of freedom in HVAC system, two approaches, called Reduced Order Model Bank-Multiple Model (ROMB-MM) and Multiple Model-Reduced Order Model (MM-ROM), are introduced. In the first approach, the order reduction is performed prior to multiple models selection and in the second one multiple models selection is implemented before the model order reduction. Furthermore, soft switching is employed to enhance the closed-loop performance as well as to gain... 

    Efficient back analysis of multiphysics processes of gas hydrate production through artificial intelligence

    , Article Fuel ; Volume 323 , 2022 ; 00162361 (ISSN) Zhou, M ; Shadabfar, M ; Huang, H ; Leung, Y. F ; Uchida, S ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Natural gas hydrate, a crystalline solid existing under high-pressure and low-temperature conditions, has been regarded as a potential alternative energy resource. It is globally widespread and occurs mainly inside the pores of deepwater sediments and sediments under permafrost area. Hydrate production via well depressurization is deemed well-suited to existing technology, in which the pore pressure is lowered, the natural gas hydrate is dissociated into water and gas, and the water and gas are produced from well. This method triggers multiphysics processes such as fluid flow, heat transfer, energy adsorption, chemical reaction and sediment deformation, all of which are dependent on the... 

    Surveying the hybrid of radiation and magnetic parameters on Maxwell liquid with TiO2 nanotube influence of different blades

    , Article Heat Transfer ; Volume 51, Issue 6 , 2022 , Pages 4858-4881 ; 26884534 (ISSN) Abdollahzadeh, M. J ; Fathollahi, R ; Pasha, P ; Mahmoudi, M ; Samimi Behbahan, A ; Domiri Ganji, D ; Sharif University of Technology
    John Wiley and Sons Inc  2022
    Abstract
    In this paper, the impacts of Maxwell nanoliquid transmission, rectangular with titanium oxide nanoparticles are explored over the triangular, chamfer blades. The innovation of this paper is the use of the number of chamfers, rectangular, and triangular blades at the top and bottom of a stretched plate to study physical nanofluid parameters such as temperature and the effects of magnetism. Also, by determining the appropriate height and length for the blades, we achieve the best optimization of temperature and velocity of nanofluid between the plate and the blades, which improves heat transfer and with a more and better effect of magnetic effects. The finite element method is utilized for... 

    Experimental and numerical investigation of thermal enhancement methods on rammed-earth materials

    , Article Solar Energy ; Volume 244 , 2022 , Pages 474-483 ; 0038092X (ISSN) Toufigh, V ; Samadianfard, S ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    The renewed attention paid to rammed earth materials in recent decades is related to their sustainability, high thermo-buffering capacity and relatively low cost. The energy performance of rammed earth materials can be enhanced with stabilization. However, some of thermal enhancement methods have destructive side-effects. In the current study, the effect of three different methods was investigated on thirteen different alternatives of rammed earth materials to improve energy efficiency of buildings. These methods include using phase change materials, cementitious admixtures and external insulators. Thermo-dynamic parameters such as time lag, thermal conductivity and heat flux were measured... 

    Performance evaluation of different configurations of solar humidification-dehumidification desalination system with subsurface condenser

    , Article Energy Conversion and Management ; Volume 269 , 2022 ; 01968904 (ISSN) Asgari, B ; Bizhani, M ; Hakkaki Fard, A ; Kazemzadeh Hannani, S ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    The solar humidification-dehumidification desalination system with a subsurface condenser is a promising renewable energy-based desalination system. This desalination system is particularly suitable for condensation irrigation in greenhouses, especially where conventional energy sources are limited. A computational model of the system comprising a horizontal solar film evaporator and a subsurface condenser is developed. A previously proposed hybrid analytical–numerical model for horizontal ground heat exchangers is modified for the subsurface condenser. An experimental setup of the subsurface condenser is also built and used to verify the developed model of the subsurface condenser. The... 

    The impact of employing carbon nanotube and Fe3O4 nanoparticles along with intermediate boiling fluid to improve the discharge rate of phase change material

    , Article Applied Thermal Engineering ; Volume 215 , 2022 ; 13594311 (ISSN) Hosseininaveh, H ; Rahgozar Abadi, I ; Mohammadi, O ; Khademi, A ; Behshad Shafii, M ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Despite the fact that solid–liquid phase change materials (PCMs) have various applications in thermal energy storage systems, the low solidification rate of PCMs, which is due to the low thermal conductivity has limited the range of applications of PCMs. One of the methods of increasing the solidification rate of PCMs is using a boiling fluid as an intermediary between the solid–liquid PCM and the condenser to prevent the direct contact between the phase change material and the condenser tubes, this method is also known as the intermediate boiling fluid (IBF) method. The IBF method has been shown to significantly increase the solidification rate (2 orders of magnitude). In this study, the... 

    A brief review on different hybrid methods of enhancement within latent heat storage systems

    , Article Journal of Energy Storage ; Volume 54 , 2022 ; 2352152X (ISSN) Khademi, A ; Shank, K ; Abtahi Mehrjardi, S. A ; Tiari, S ; Sorrentino, G ; Said, Z ; Chamkha, A. J ; Ushak, S ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Thermal energy storage (TES) occurs by changing the internal energy of materials in the form of sensible heat, latent heat, and thermo-chemical heat or a combination thereof. Latent heat storage (LHS) by phase change materials (PCMs) has many applications among these storage techniques. Despite the many advantages of LHS, the main problem of LHS systems using PCMs is their low thermal conductivity, which necessitates the combination of heat transfer enhancement techniques. Numerous diverse studies have utilized only one improvement method, while limited research has employed hybrid enhancement techniques. The typical improvement methods, such as adding nanomaterials, using fins, employing... 

    A three dimensional simulation of spray cooling and its evaporating liquid film generated on patterned surfaces

    , Article International Journal of Multiphase Flow ; Volume 155 , 2022 ; 03019322 (ISSN) Zeraatkardevin, A ; Jowkar, S ; Morad, M. R ; Shen, X ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Liquid impingement cooling in the form of jet or spray is an appropriate method to remove heat from small surfaces progressively utilized in industry. In this study, numerical simulations are conducted to investigate the effect of surface structure on heat transfer characteristics. Five different three-dimensional structured surfaces are investigated using Euler-Lagrangian approach. The effect of surface structures is discussed on the liquid film thickness, the liquid film velocity, and the heat flux with its uniformity for a given spray and temperature characteristics. The results show that the convective heat transfer strongly depends on both liquid film thickness and velocity. While the... 

    Effect of Zn content and processing route on the microstructure, mechanical properties, and bio-degradation of Mg-Zn alloys

    , Article Journal of Materials Research and Technology ; Volume 21 , 2022 , Pages 4473-4489 ; 22387854 (ISSN) Asadollahi, M ; Gerashi, E ; Alizadeh, R ; Mahmudi, R ; Sharif University of Technology
    Elsevier Editora Ltda  2022
    Abstract
    The effects of zinc content (2 and 4 wt%), heat treatment (solution-Treated and T6), as well as hot deformation (extrusion and multi-directional forging (MDF)) on the microstructure, mechanical and degradation behavior of Mg-Zn alloys were studied. As the result of microstructure refinement, solid solution and precipitate strengthening (formation of MgZn second phases), the strength of pure Mg was increased after Zn addition. Solution treatment of the Mg-4Zn alloy resulted in 16% softening due to the dissolution of the MgZn second phases and also grain growth, while aging treatment increased the strength value by 8% in comparison to the as-cast material because of the formation of the fine... 

    Friction stir welding of severely plastic deformed aluminum using (Al2O3+ graphite) hybrid powders: Grain structure stability and mechanical performance

    , Article Journal of Materials Research and Technology ; Volume 21 , 2022 , Pages 961-980 ; 22387854 (ISSN) Moosavi, S. E ; Movahedi, M ; Kazeminezhad, M ; Sharif University of Technology
    Elsevier Editora Ltda  2022
    Abstract
    Welding of severely plastic deformed aluminum sheets, with high stored strain energy, faces a serious concern, which is decrease in strength of weld and heat-affected zone (HAZ) due to instability in microstructure and related grain growth. In this work, two-passes constrained groove pressed (CGPed) Al-1050 sheets were welded via friction stir welding (FSW), without and with addition of a hybrid powder including 50 vol.% α-Al2O3 nanoparticles+50 vol.% graphite micrometric powders (∼1 vol.% of hybrid powders in stir zone). Al2O3 nanoparticles may result in grain refinement in stir zone by grain boundary pinning. Lubricating nature of graphite may reduce welding heat input resulting in lower... 

    Microstructure, fractography, and mechanical properties of hardox 500 steel tig-welded joints by using different filler weld wires

    , Article Materials ; Volume 15, Issue 22 , 2022 ; 19961944 (ISSN) Zuo, Z ; Haowei, M ; Yarigarravesh, M ; Assari, A. H ; Tayyebi, M ; Tayebi, M ; Hamawandi, B ; Sharif University of Technology
    MDPI  2022
    Abstract
    This paper deals with the effects of three low-carbon steel filler metals consisting of ferritic and austenitic phases on the weld joints of the tungsten inert gas (TIG) welding of Hardox 500 steel. The correlation between the microstructure and mechanical properties of the weld joints was investigated. For this purpose, macro and microstructure were examined, and then microhardness, tensile, impact, and fracture toughness tests were carried out to analyze the mechanical properties of joints. The results of optical microscopy (OM) images showed that the weld zones (WZ) of all three welds were composed of different ferritic morphologies, including allotriomorphic ferrite, Widmanstätten... 

    Effect of temperature and magnetoelastic loads on the free vibration of a sandwich beam with magnetorheological core and functionally graded material constraining layer

    , Article Acta Mechanica ; Volume 233, Issue 11 , 2022 , Pages 4939-4959 ; 00015970 (ISSN) Mirzavand Borojeni, B ; Shams, S ; Kazemi, M. R ; Rokn Abadi, M ; Sharif University of Technology
    Springer  2022
    Abstract
    In this paper, we investigate the effects of temperature and magnetoelastic load, on the free vibration of an elastomer sandwich beam with magnetorheological (MR) core and functionally graded material (FGM) constraining lamina under high temperature environment. This sandwich beam is named FGMR beam in this paper. The material properties of the functionally graded material layers are assumed to be temperature-dependent and vary continuously through-the-thickness according to a simple power-law distribution in terms of the volume fractions of the constituents. Also, it is assumed that the beam may be clamped, hinged, or free at its ends and is subjected to one-dimensional steady-state heat... 

    Thermal study of the internal flow in a circular tube with vibrational ball turbulators

    , Article International Journal of Heat and Mass Transfer ; Volume 196 , 2022 ; 00179310 (ISSN) Saadat, M ; Aghlichanche, A ; Ataelahi, A ; Mohammadi, O ; Shafii, M. B ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Flow turbulators have promising heat transfer applications. Here, the novel design proposed in our previous study (vibrational ball turbulators, VBTs, mounted on an elastic wire inside a circular tube) is investigated experimentally from heat transfer and thermal performance standpoints. The effects of diameter (Y) and longitudinal distance (pitch, X) ratios of VBTs, the Reynolds number, and the axial tension of the wire (σ0) on the average Nusselt number (Nu), the average Nusselt number ratio (Nu divided by that of a plain tube, Nup), the friction factor ratio (f/fp), and a parameter called the thermal performance factor (η=(Nu/Nup)/(f/fp)1/3) are studied. Different ball diameter (Y=0.3,... 

    Developing an electro-thermal model to determine heat generation and thermal properties in a lithium-ion battery

    , Article Journal of Thermal Analysis and Calorimetry ; Volume 147, Issue 21 , 2022 , Pages 12253-12267 ; 13886150 (ISSN) Mahboubi, D ; Jafari Gavzan, I ; Saidi, M. H ; Ahmadi, N ; Sharif University of Technology
    Springer Science and Business Media B.V  2022
    Abstract
    Lithium-ion batteries should continuously be operated at the optimum temperature range (15∼40∘C) for the best performance. Surface temperature monitoring is critical for the safe and efficient operation of the battery. In this study, initially, the electrical parameters of the battery are determined by applying a second-order equivalent circuit model. This model then is integrated with a thermal model based on the temperature dependent behavior of the electrical parameters and the heat generated. The input parameters to the electro-thermal model include the current, the ambient fluid temperature and the output parameters include the terminal voltage, state of charge, cell core temperature... 

    Experimental evaluation of the effect of boulders and fines in biodegradable organic materials on the improvement of solar stills

    , Article Solar Energy ; Volume 247 , 2022 , Pages 453-467 ; 0038092X (ISSN) Ebrahimpour, B ; Behshad Shafii, M ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    In this research, for the first time, the effect of primary particles (boulders) and secondary particles (fines) in organic mixtures of coffee, black walnut hull, madder, and tea (which are cheap, abundant, and biodegradable) on the improvement of solar stills' daily efficiency is evaluated as an alternative to metal-based nanofluids. A laboratory still simulator is utilised under laboratory conditions to measure the organic mixture's behaviour accurately. Furthermore, the effect of the concentration of organic mixtures and the particle size of organic materials are investigated, as well as the effect of boulders and fines, independently. In addition, two identical solar still systems are... 

    Effects of heat treatment and Y addition on the microstructure and mechanical properties of as-cast Mg–Si alloys

    , Article Materials Science and Engineering A ; Volume 859 , 2022 ; 09215093 (ISSN) Jamalpour, M ; Alizadeh, R ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    In Mg–Si alloys, both primary and eutectic Mg2Si particles normally appear with sharp edges, which can lead to weak mechanical properties as the result of stress concentration at the sharp corners of these brittle particles. Thus, it would be of great importance to modify the morphology of these particles. In this study, microstructure modification mechanisms after 0.5 wt% Y addition and heat treatment (HT) at 420 °C for 24 h are comprehensively studied in hypo-eutectic Mg–1Si and hyper-eutectic Mg–2Si alloys. Microstructural observations were performed using optical and scanning electron microscopy equipped with electron disperse spectroscopy, while phase analysis was done by X-ray... 

    Performance evaluation of the solar-driven multi-ejector refrigeration cycle without an auxiliary heat source

    , Article Applied Thermal Engineering ; Volume 217 , 2022 ; 13594311 (ISSN) Beyrami, J ; Hakkaki Fard, A ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Solar-driven ejector refrigeration (SER) systems have been granted special attention as a green and sustainable replacement for conventional vapor compression cooling systems. However, despite their significant advantages, SER systems suffer from a relatively low coefficient of performance and failure at high ambient temperatures and low solar radiations. Therefore, the need for an auxiliary heat source and cooling system has hindered their adoption in practice. In an attempt to eliminate the need for an auxiliary heat source and cooling system, this contribution puts forward a novel Solar-driven Multi-Ejector Refrigeration (SMER) system with an internal heat exchanger, a regenerator, and a...