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    Impact of Stress on Permeability of Packed Hydraulic Fracture

    , M.Sc. Thesis Sharif University of Technology Taherzadeh, Dadbeh (Author) ; Shad, Saeed (Supervisor) ; Fatemi, Mobeen ($item.subfieldsMap.e)
    Abstract
    Given the broad role of oil and gas playing in the world economy, finding the hydrocarbon reservoir that economically is affordable is quite significant. Some of the unconventional oil and gas reservoirs are important from the economic point of view since they produce insufficient hydrocarbon due to either low permeability or damage during drilling and production. Hydraulic fracturing is one of the most significant methods for improving the productivity of wells and reservoirs. Hydraulic fracturing acts by affecting on reservoir rock physic. In the current century, this approach has an essential effect in enhancing the permeability and production of reservoirs by creating, extending and... 

    Experimental Investigation of Formation Damage Caused by Polymer Mud

    , M.Sc. Thesis Sharif University of Technology Mahdipoor, Morteza (Author) ; Shad, Saeed (Supervisor)
    Abstract
    In oil industry, increment of drilling mud viscosity is of great importance. Water based polymers are widely use as drilling fluid to achieve this goal. Formation damages can be occurred by invading polymer solution into the formation in different ways such as scale and precipitation. These damages appear in different shapes such as reduction in relative permeability and productivity index reduction. In this study we have proposed, designed and fabricated a novel device, called sand pack, to measure the damage of the reservoir which enable us to calculate relative permeability and recovery factor by means of pressure difference and flow rate. Using this lab-scaled device we have measured... 

    Experimental Investigation of Brine Salinity Effect on Relative Permeability Curve in Tight Reservoir

    , M.Sc. Thesis Sharif University of Technology Zeinolabedin, Roham (Author) ; Shad, Saeed (Supervisor)
    Abstract
    An experimental study was conducted to investigate the reduction of relative permeability caused by salt precipitation. Series of isothermal sand pack flood experiments were conducted on a sand pack composed of several minerals and relative permeability of the involved phases were determined. This compose was taken south of Iranian reservoir properties. A stainless steel sand-pack of 2.5cm internal diameter and 19.2 cm long was designed and built for experimental procedure. There are is different methods to determine relative permeability of porous media, According to available facilities in the lab and objective of this study unsteady state have been chosen to determine relative... 

    Oxygen Barrier Improvement of the BOPP Films in Food Industry

    , Ph.D. Dissertation Sharif University of Technology Shayanipour, Hamid Reza (Author) ; Bagheri, Reza (Supervisor)
    Abstract
    One of the most popular methods in order to protect foods is to package using various materials. By this act, the shelf life of the packaged foods may range from a few days to more than a year. Multiple types of plastics are being used as materials for packaging food, including polyolefin, polyester, polyvinyl chloride, polyvinylidene chloride, polystyrene, polyamide, and ethylene vinyl alcohol. Although more than 30 types of plastics have been used as packaging materials, polyolefin and polyesters are the most common. Biaxially Oriented Polypropylene (BOPP) is a polypropylene film that has been stretched in both the machine and cross directions. BOPP film has become one of the most popular... 

    The Application of Signal Processing in Oil Well Logging

    , M.Sc. Thesis Sharif University of Technology Tahmasebi Moradi, Faezeh (Author) ; Hajsadeghi, Khosro (Supervisor)
    Abstract
    Determining the porosity, water saturation and permeability values in the reservoir rock, are major steps in the petroleum engineering and formation evaluation. Today in the oil industry, these parameters are obtained using Helium gas injection technique on core (Plug) samples. However, the coring operation is difficult and costly. In addition, there isn't the possibility of coring in some of wells, such as horizontal wells. In fact, the present research is the modelling of artificial neural networks to estimate permeability in one of the Iranian oil field reservoirs by using oil well logging data. In this research, MLP neural network has been used and for network training, the evolutionary... 

    The Study of Permeable Reactive Barriers Made of Nano Zero Valent Iron, for In-situ Groundwater Remediation

    , M.Sc. Thesis Sharif University of Technology Atashin, Sabrine (Author) ; Abrishamchi, Ahmad (Supervisor) ; Vossoughi, Manoochehr (Supervisor)
    Abstract
    In present research in-situ groundwater remediation by permeable reactive barriers is considered and the main goal is to find the optimal dimension of reactive walls and also to find the most efficient reactive media. Here, computer simulation is done via MODFLOW. Different barrier lengths, widths, depths and distances between trenches have been considered and contaminant removal percentage calculated in all situations. Based on the research achievements increasing the barrier length has led to reduction of contaminant removal percentage because flow gradient and flow density decrease by length increase. As the results show, contaminant removal percentage increases by width increase because... 

    Impermeability of Oxygen in Passive/Active Polyethylene Nanocomposite Films

    , Ph.D. Dissertation Sharif University of Technology Khederlou, Khadijeh (Author) ; Bagheri, Reza (Supervisor) ; Shojaei, Akbar (Supervisor)
    Abstract
    In this study, polyethylene films made of LDPE / LLPE / reinforced with mechanical barrier of clay and reactant of iron nanoparticles were made in their optimal combination and necessary improvements were made on them. Investigations show that, independent of volume fraction, the addition of spherical nanoparticles does not have much effect on reducing the polymer matrix’s permeability. In nanocomposites containing cylindrical particles, for considerable reduction of the permeability, over 20 volume percent of nanoparticles it is required, while in platelet nanoparticles, less than 10% vol is sufficient. In clays with modifier concentration above the cation exchange capacity, there is less... 

    Flow Simulation for Vacuum-assisted Resin Transfer Molding in Manufacturing of Composite Structures

    , M.Sc. Thesis Sharif University of Technology Teimouri, Hassan (Author) ; Abedian, Ali (Supervisor)
    Abstract
    One of the common and efficient methods in the construction of large-scale structures from composites is the Vacuum Assisted Resin Transfer Molding (VARTM) method, which is widely used in the automotive industry, wind turbine blades, warships and pleasure boats, etc. VARTM is one of the liquid molding methods in which one side of the closed mold is replaced with a vacuum bag and the resin flows into the mold only with the help of air pressure (pressure of one atmosphere). One of the main challenges in the vacuum resin molding process is to be aware of the physics governing the flow motion in the porous mold so that the dry spots formed in the mold can be located accordingly. On the other... 

    Evaluation of Anisotropic Hydraulic Conductivity of as Compacted and Vegetated Soils with a Cube Triaxial Permeameter

    , M.Sc. Thesis Sharif University of Technology Gholami, Mostafa (Author) ; Sadeghi, Hamed (Supervisor)
    Abstract
    Vegetation can be used as a research solution at the cutting edge of knowledge, cost-effective, aesthetic, pleasing, and environmentally friendly in natural hazards. Understanding the hydraulic properties, including the permeability of vegetated soils, is very important for various environmental applications. Different and sometimes conflicting behaviors have been observed in literature. There has been no general consensus in the literature regarding permeability due to the influence of several factors. In addition, there are many uncertainties about the effect of plant cultivation and root system effects on anisotropic soil permeability. It is essential to address this issue because of the... 

    Durability Evaluation and Health Monitoring of Microcracked Slag-Based Geopolymer Concrete Due to Step by Step Pressure Loading

    , M.Sc. Thesis Sharif University of Technology Keyvan, Kaveh (Author) ; Ghaemian, Mohsen (Supervisor) ; Toufigh, Vahab (Co-Supervisor)
    Abstract
    The goal of this research is to study the effect of local microcracking due to step by step pressure loading on the durability properties of geopolymer concrete. To better understand the behavior of GGBS-based GPC under different pressure stress levels, some experiments such as water permeability and water absorption conducted on the samples at each state of damage. Also, non-destructive tests such as ultrasonic waveform and pulse velocity (UPV) was used to quantify the extent of damage at each step. GGBFS and a blend of sodium silicate solution and 10 molar sodium hydroxide solution with SSSH⁄ ratio of 2 were used for production of GPC samples. GPC, OGPC and OPC samples with water to binder... 

    Effect of the Blast Furnace Slag on Microstructural and Transport Properties of the Fly Ash-based Geopolymers

    , M.Sc. Thesis Sharif University of Technology Azimi, Zahir (Author) ; Toufigh, Vahab (Supervisor)
    Abstract
    Alkali-activated fly ash-slag (AAFS) is a new type of sustainable construction material widely studied in recent years for its desirable mechanical properties and low environmental impacts. In this study, the effects of the slag incorporation from 10 to 30% of fly ash are investigated on the strength, pore structure, and transport properties of the AAFS with various levels of fly ash replacements with slag. The unconfined compression and ultrasonic pulse velocity tests were performed to evaluate the mechanical properties of the AAFS concrete. Microstructural and mineralogical changes were studied by porosity, N2-adsorption/desorption, and SEM/EDX tests. Additionally, transport properties... 

    Effects of Microstructure and Salinity Concentration on Hydraulic Conductivity of Silty Clay Soils

    , M.Sc. Thesis Sharif University of Technology Khodadadi, Saeed (Author) ; Sadeghi, Hamed (Supervisor)
    Abstract
    Various contaminants and their leachate, when they penetrate into the soil, cause changes in soil microstructure, this change in microstructure leads to changes in soil permeability and volume. In this study, first, the effects of soil microstructure change on the hydraulic conductivity of saturated soil were investigated using the change in initial saturation degree during compaction for compacted samples and the change in sample construction in reconstituted samples. Also, the simultaneous effect of changing the initial microstructure and salt solution on the hydraulic conductivity of saturated silty clay soils using a three-axial permeability device with the ability to measure volume... 

    Study of the Effects of Geo-mechanical and Hydro-mechanical Parameters on Hydraulic Fracturing Characteristics in Oil Reservoirs by Numerical Modeling

    , M.Sc. Thesis Sharif University of Technology Esfandiari, Morteza (Author) ; Pak, Ali (Supervisor)
    Abstract
    Increasing the permeability of hydrocarbon reservoirs by creating artificial cracks that are induced by injection of fluids under high pressures is called Hydraulic Fracturing operation. This method is widely used in petroleum reservoir engineering. For design of Hydraulic Fracture operations, a number of methods have been developed. KGD and PKN are the first and most used methods in this area and despite the development of advanced softwares in recent years, these methods are still popular and are used in a number of softwares. KGD is commonly used for induced fractures where the height of fracture is greater than its length, and PKN is normally used where the length of the fracture is... 

    Investigating the Permeability and Mechanical Properties of Horizontal Joints in Roller Compacted Concrete Dams

    , M.Sc. Thesis Sharif University of Technology Aziz Mohammadi, Morteza (Author) ; Ghaemian, Mohsen (Supervisor) ; Toufigh, Vahab (Supervisor)
    Abstract
    Roller compacted concrete is a dry concrete with zero slump which is constructed in layers. Roller compacted concrete dams are generally weak in interlayers. The bonding strength and permeability of the interlayer affect the performance of the dam’s structure and its safety. In this study, the mechanical characteristics and the permeability of the interface layer of RCC are investigated by considering three key parameters, including water-to-cement ratio (w/c) of concrete, w/c ratio of bedding mortar and time interval between pouring each layer. More than 300 RCC specimens are prepared. To evaluate the properties of the interface between the mortar and the first layer surface, various tests... 

    Experimental Analysis of Water Seepage in RCC Dams and Determination of Its Repair and Improvement Methods

    , M.Sc. Thesis Sharif University of Technology Heydarnezhad, Fatemeh (Author) ; Ghaemian, Mohsen (Supervisor) ; Toufigh, Vahab (Supervisor)
    Abstract
    In this study, the effect of mix design parameters and the mechanical properties of roller-compacted concrete (RCC) were considered to evaluate its water permeability coefficient. For this purpose, over 400 laboratory specimens were prepared and tested. A formula was proposed to predict the permeability coefficient of RCC by considering the main parameters. Moreover, artificial neural network (ANN) was constructed to model the permeability coefficient of RCC based on its mix design constituents and the test results. The algorithm obtained from tests results were verified independently using extra specimens. Furthermore, Taguchi method and analysis of variance (ANOVA) were used to determine... 

    An Extended Finite Element Two-phase Crack Propagation in Fractured Rock Masses Using the Equivalent Anisotropic Compliance and Permeability Tensors

    , M.Sc. Thesis Sharif University of Technology Abedian Amiri, Erfan (Author) ; Khoei, Amir Reza (Supervisor)
    Abstract
    Fractured rock masses contain fractures facilitating the fluid movement and storage. Permeability and material behavior of this particular material is poorly understood. Hence, there would be a great need of determining the characteristics of such materials. In this paper, an equivalent approach has been implemented at first in order to equivalently determine the hydro-mechanical and geomechanical characteristics of the fractured rock masses in the form of anisotropic tensors. The equivalent permeability and compliance tensors are derived based upon fluid dissipation energy and linear elasticity, respectively. In addition, the effect of derived characteristics on a single-phase (solid... 

    Design Principles of Permeable Pavement in Pollutants Removal from Surface Runoff

    , M.Sc. Thesis Sharif University of Technology Ketabchy, Mehdi (Author) ; Tajrishi, Agha Mohammad Hossein (Supervisor)
    Abstract
    Urbanization increases impervious surfaces and therefore reduces land permeability. As a result, higher amount of runoff is produced which leads to environmental degradation and economic loss. Use of pervious/permeable pavements is an efficient approach to reduce runoff volume and improve the quality. In this study, different design methods of pervious/permeable surface are first described using structural and hydrological modules. Then, a software program for pervious/permeable surface design is put forth. Supported by various available design methods (focusing on pervious surfaces in Iran), the software employs structural, hydrological, economic (cost estimation) and qualitative... 

    Laboratory and Numerical Modeling of Hydraulic Behavior of Saturated Fine Grained Soils Dewatered by Electrokinetic Geosynthetic

    , M.Sc. Thesis Sharif University of Technology Shahsavand, Mohammad (Author) ; Pak, Ali (Supervisor) ; Shariatmadari, Nader (Co-Advisor)
    Abstract
    Most available methods which are well able to improve or dewater coarse soils have little success dealing with fine soils and clays and using these methods to dewater clays needs great amount of time and money. Electrokinetic Geosynthetic is one of new methods that have had a promising future. Regarding the importance and tremendous usage of dewatering in fine soils, the efficiency of electrokinetic geosynthetic method in dewatering fine soils has been taken under the consideration in this research. Following laboratory experimentation, numerical modeling of this process has been done. In this research some laboratory test has been done on kaolinite clay and the effects of pH of specimen,... 

    Evaluation of Porous Asphalt Pavements in Urban Areas

    , M.Sc. Thesis Sharif University of Technology Koohmishi, Mehdi (Author) ; Tabatabaee, Nader (Supervisor)
    Abstract
    Open graded asphalt mixturesareasphaltic mixes used in flexible pavements and the mainadvantages of them are increased permeability and noise reduction. Conventional application of these mixtures in flexible pavement is like that fluids infiltrate into porous asphalt layer that places over a dense graded asphalt layer and then draintoward ditches along the two sides of the road. Another usage of these mixtures, considered in recent years, is in porous pavements that the structure permits water on the surface topass freely through it and to infiltrateinto thesubsoil. In this research, second application of open graded asphalt mixtures is considered, i.e., porous asphalt pavement. In this type... 

    Evaluation of using Lattice Boltzmann Method for Simulation of Two Phase Flow in Saturated Porous Media

    , M.Sc. Thesis Sharif University of Technology Sheik, Bahman (Author) ; Pak, Ali (Supervisor)
    Abstract
    Fluid flow in porous media is a common phenomenon in the nature, in many fields of science and engineering such as flow of water in the soil, migration of contaminants in the soil, petroleum reservoir engineering, semi?olten magma flow in the crust, water flow in plants, blood flow in body tissues, etc. In many cases, the porous structure of the medium and fluid flow pattern are very complex because of the inherent problems of fluidAluid and fluidsolid interactions. Also, secondary issues such as intrinsic permeability and tortuosity of porous media, and relative permeability of two phase flow, increase the complication of the analyses. Studying these types of phenomena in the nature or even...