Loading...
Search for: offshore-oil-wells
0.008 seconds
Total 56 records

    A mixed integer-programming model for periodic routing of special vessels in offshore oil industry

    , Article International Journal of Industrial Engineering : Theory Applications and Practice ; Volume 22, Issue 5 , 2015 , Pages 524-548 ; 10724761 (ISSN) Jahromi Eshraghniaye, A ; Yazdeli Roohollah, I ; Sharif University of Technology
    University of Cincinnati  2015
    Abstract
    In order to maintain the production of offshore oil wells, the National Iranian Oil Company periodically services facilities and equipment located in oil wellheads with mobile wellhead servants. It also gives technical supports to oil wellheads and mobile wellhead servants with supporter vessels. Due to supply limitations, there are not enough special vessels (namely supporter vessels and mobile wellhead servants) compared to the number of oil wellheads. The failure of special vessels to service oil wellheads and supporter vessels to technically support mobile wellhead servants based on a predetermined plan, will lead to considerable loss in production performance of oil wells and hence... 

    Effects of motion and structural vibration–induced loadings on the coupled dynamic response of a mono-column tension-leg-platform floating wind turbine

    , Article Proceedings of the Institution of Mechanical Engineers Part M: Journal of Engineering for the Maritime Environment ; Volume 234, Issue 2 , 2020 , Pages 426-445 Imani, H ; Abbaspour, M ; Tabeshpour, M. R ; Karimirad, M ; Sharif University of Technology
    SAGE Publications Ltd  2020
    Abstract
    Floating wind turbines are subjected to highly dynamic and complicated environmental conditions leading to significant platform motions and structural vibrations during operation and survival conditions. These motions and vibrations alter the induced loading characteristics; and consequently, affect the dynamic behavior of the system. In order to better understand the influence of such motions and structural vibrations, herein elastic structural disturbance of tower, on the system behavior, the spectral and statistical characteristics of a floating wind turbine dynamic responses under operational and survival conditions are fully explored using a fully coupled... 

    Challenges in calculation of critical buckling load of tubular members of jacket platforms in finite element modeling

    , Article Journal of Marine Science and Technology (Japan) ; 2019 ; 09484280 (ISSN) Tabeshpour, M. R ; Erfani, M. H ; Sayyaadi, H ; Sharif University of Technology
    Springer Tokyo  2019
    Abstract
    Accurate estimation of the capacity curve of offshore jacket structures to achieve performance levels and ductility is of great importance. Proper modeling of compressive members to correctly investigate global and local buckling is crucial in estimation of the capacity curve. Buckling modes and deformations due to local buckling can be considered, if the compressive braces are modeled by shell or solid elements. The purpose of this paper is to achieve the correct compressive behavior of braces with solid type elements and investigate the effects of five different parameters such as D/t, L/D, mesh size, mesh size ratio, and imperfections. ABAQUS FE software is used for this purpose. The... 

    Challenges in calculation of critical buckling load of tubular members of jacket platforms in finite element modeling

    , Article Journal of Marine Science and Technology (Japan) ; 2019 ; 09484280 (ISSN) Tabeshpour, M. R ; Erfani, M. H ; Sayyaadi, H ; Sharif University of Technology
    Springer Tokyo  2019
    Abstract
    Accurate estimation of the capacity curve of offshore jacket structures to achieve performance levels and ductility is of great importance. Proper modeling of compressive members to correctly investigate global and local buckling is crucial in estimation of the capacity curve. Buckling modes and deformations due to local buckling can be considered, if the compressive braces are modeled by shell or solid elements. The purpose of this paper is to achieve the correct compressive behavior of braces with solid type elements and investigate the effects of five different parameters such as D/t, L/D, mesh size, mesh size ratio, and imperfections. ABAQUS FE software is used for this purpose. The... 

    Optimum arrangement of braces in jacket platform based on strength and ductility

    , Article Marine Structures ; Volume 71 , 2020 Tabeshpour, M. R ; Fatemi, M ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Nonlinear behavior of jacket platforms is important in both design and rehabilitation issues that depends on the bracing arrangement. Both ductility and strength of the structures derived from pushover analysis are highly related to configuration of the braces. Considering a suitable criterion such as constant weight or constant stiffness and period of the structure in all arrangement cases, one can compare the capacity curves and find the best configuration. In this paper a simple logical method for investigating the strength and ductility of the jacket structure is presented, it is shown that global geometry and configuration of the braces are very important and effective in both strength... 

    Investigation of the effect of the added mass fluctuation and lateral vibration absorbers on the vertical nonlinear vibrations of the offshore wind turbine

    , Article Nonlinear Dynamics ; Volume 103, Issue 2 , 2021 , Pages 1499-1515 ; 0924090X (ISSN) Ghabraei, S ; Moradi, H ; Vossoughi, G ; Sharif University of Technology
    Springer Science and Business Media B.V  2021
    Abstract
    In this article, the effects of the changes in the mass of the floating wind turbine (as a multi-body system) on its nonlinear vertical vibrations are investigated. The fluctuations of the hydrodynamic added mass of the floating platform and the mass of the vibration absorbers, which added to the structure to mitigate the lateral vibrations, change the mass and consequently the dynamics of the vertical vibrations. In this regard, first, the governing equations of the vertical vibrations of the floating wind turbine are derived. The FAST code is used to validate the proposed model of the dynamics of the vertical vibrations through numerical simulations. Then, derived equations are solved... 

    Aerodynamic enhancement and improving the performance of a six-megawatt dowec wind turbine by micro-plasma actuator

    , Article International Journal of Mechanical Sciences ; Volume 195 , 2021 ; 00207403 (ISSN) Omidi, J ; Mazaheri, K ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    We have investigated the usage of a Dielectric Barrier Discharge (DBD) plasma actuator to improve the aerodynamic performance of an offshore 6 MW wind turbine. By controlling the aerodynamic load combined with pitch angles of 2, 5, and 10 degrees, we studied the plasma actuator effect on the overall harvested power. Actuators were installed in single and tandem configurations in different chord-wise locations to find the optimum design. The improved phenomenological model developed by authors was used in an analysis to simulate the interaction of the electrostatic field, the ionized particles and the fluid flow. A design software was used to estimate the harvested power of the real 3D blade.... 

    Surge motion passive control of TLP with double horizontal tuned mass dampers

    , Article International Journal of Acoustics and Vibrations ; Volume 26, Issue 1 , 2021 , Pages 4-8 ; 10275851 (ISSN) Tabeshpour, M. R ; Malayjerdi, E ; Sharif University of Technology
    International Institute of Acoustics and Vibrations  2021
    Abstract
    The tension leg platform (TLP) is comprised of a buoyant hull that holds the platform’s topside. A group of tendons under the columns connect the TLP to the foundation. The TLP is displaced in six degrees of freedom due to environmental loads. Tendons moor the TLP in vertical direction (heave and pitch). Surge amplitude (horizontal displacement) of TLP is greater than other degrees of freedom. Also heave motion is coupled with surge one. Therefore, it is important to introduce and implement a method to control and reduce displacement of the TLP in horizontal direction. In this paper, a passive control system (double horizontal tuned mass damper (TMD)) is used to mitigate the surge motion of... 

    Conceptual study on dynamic response of semi-submersible

    , Article Proceedings of the Institution of Civil Engineers: Maritime Engineering ; 2021 ; 17417597 (ISSN) Tabeshpour, M. R ; Hajnoruzi, F ; Sharif University of Technology
    ICE Publishing  2021
    Abstract
    Hydrodynamic analysis of semi-submersible offshore structures has been the topic of many researches performed numerically and experimentally in the past. In this paper, the effect of structure alignment and mooring lines on dynamic behaviour of semi-submersible platforms has been taken into account. The contribution of pitch and roll in heave motion of side points is also investigated. Mooring lines are connected to semi-submersible at sides and therefore total displacement of side points is related to total displacement of mooring lines and total tension as well. A three dimensional boundary element model of Amirkabir platform in Caspian Sea is implemented using boundary element method... 

    Vortex shedding modes around oscillating non-uniform double heave plates

    , Article Proceedings of the Institution of Mechanical Engineers Part M: Journal of Engineering for the Maritime Environment ; Volume 235, Issue 2 , 2021 , Pages 558-569 ; 14750902 (ISSN) Abazari, A ; Alvandi, M ; Behzad, M ; Thiagarajan, K. P ; Sharif University of Technology
    SAGE Publications Ltd  2021
    Abstract
    Multiple co-axial heave plates of uniform geometry are attached to offshore platforms for inducing damping and added mass. These effects generally decrease the magnitude of the dynamic response of the platform under applied environmental excitation forces. When spacing between heave plates is decreased the damping and added mass performance are altered due to their strong vortex interaction. A new non-uniform plate configuration is proposed that may create different hydrodynamic characteristics. The modes of vortex shedding around plate edges in a non-uniform arrangement under forced harmonic oscillation are investigated via the CFD method. Furthermore, a new simplified formula for the total... 

    Hydrodynamic damping enhancement by implementing a novel combined rigid-elastic heave plate

    , Article Journal of Marine Science and Technology (Japan) ; Volume 26, Issue 1 , 2021 , Pages 216-232 ; 09484280 (ISSN) Abazari, A ; Behzad, M ; Thiagarajan, K ; Sharif University of Technology
    Springer Japan  2021
    Abstract
    Heave plates are structural components used for reducing the vibrations caused by environmental forces on marine and offshore structures by changing the hydrodynamic properties. The fact that the added mass increase via heave plates does not always lead to the structural response reduction underscores the role of damping in maintaining the vibration amplitude within allowable limits. In the present experimental study, a novel combined rigid-elastic design is used to improve the damping through the velocity increase in the elastic part and added mass creation in the central rigid part. The desired percentage of total added mass and damping can be adjusted by changing the rigid-to-elastic... 

    Vortex shedding modes around oscillating non-uniform double heave plates

    , Article Proceedings of the Institution of Mechanical Engineers Part M: Journal of Engineering for the Maritime Environment ; Volume 235, Issue 2 , 2021 , Pages 558-569 ; 14750902 (ISSN) Abazari, A ; Alvandi, M ; Behzad, M ; Thiagarajan, K. P ; Sharif University of Technology
    SAGE Publications Ltd  2021
    Abstract
    Multiple co-axial heave plates of uniform geometry are attached to offshore platforms for inducing damping and added mass. These effects generally decrease the magnitude of the dynamic response of the platform under applied environmental excitation forces. When spacing between heave plates is decreased the damping and added mass performance are altered due to their strong vortex interaction. A new non-uniform plate configuration is proposed that may create different hydrodynamic characteristics. The modes of vortex shedding around plate edges in a non-uniform arrangement under forced harmonic oscillation are investigated via the CFD method. Furthermore, a new simplified formula for the total... 

    Hydrodynamic damping enhancement by implementing a novel combined rigid-elastic heave plate

    , Article Journal of Marine Science and Technology (Japan) ; Volume 26, Issue 1 , 2021 , Pages 216-232 ; 09484280 (ISSN) Abazari, A ; Behzad, M ; Thiagarajan, K ; Sharif University of Technology
    Springer Japan  2021
    Abstract
    Heave plates are structural components used for reducing the vibrations caused by environmental forces on marine and offshore structures by changing the hydrodynamic properties. The fact that the added mass increase via heave plates does not always lead to the structural response reduction underscores the role of damping in maintaining the vibration amplitude within allowable limits. In the present experimental study, a novel combined rigid-elastic design is used to improve the damping through the velocity increase in the elastic part and added mass creation in the central rigid part. The desired percentage of total added mass and damping can be adjusted by changing the rigid-to-elastic... 

    A review of global gas flaring and venting and impact on the environment: Case study of Iran

    , Article International Journal of Greenhouse Gas Control ; Volume 49 , 2016 , Pages 488-509 ; 17505836 (ISSN) Soltanieh, M ; Zohrabian, A ; Gholipour, M. J ; Kalnay, E ; Sharif University of Technology
    Elsevier Ltd 
    Abstract
    After a brief review of the global gas flaring and venting in oil industries including the emission of air pollutants and greenhouse gases and the amount of energy resources wasted, the focus is on Iran as a major oil producing and the world's third largest gas flaring country. Gas flaring is also practiced in natural gas industries, petroleum refining and petrochemical plants, although the level of emission is very low compared with emissions from oil production. The historical emission of these gases globally and Iran specifically, geographic location of emission sources, composition of gases, environmental impacts of gas flaring and the current and future projects to mitigate emissions... 

    Experimental study of the relationship between fracture initiation toughness and brittle crack arrest toughness predicted from small-scale testing

    , Article Theoretical and Applied Fracture Mechanics ; Volume 110 , 2020 Taylor, J ; Mehmanparast, A ; Kulka, R ; Moore, P ; Xu, L ; Farrahi, G. H ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    It is vital to prevent brittle cracks in large structures. This is particularly important for a number of industry sectors including offshore wind, Oil & Gas, and shipbuilding where structural failure risks loss of human life and loss of expensive assets. Some modern steels exhibit high Charpy energy – i.e. high initiation fracture toughness, but poor resistance to crack propagation – i.e. low crack arrest toughness. The correlation between initiation and arrest toughness measured through small-scale testing is investigated in five different steels, which include S355 structural steel (with two different thicknesses), X65 pipeline steel, two high strength reactor pressure vessel steels and... 

    A semi-active SMA-MRF structural stability element for seismic control in marine structures

    , Article Applied Ocean Research ; Volume 100 , 2020 Zareie, S ; Zabihollah, A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    The stability and integrity of structures under indeterminant external loadings, particularly earthquakes, is a vital issue for the design and safe operation of marine and offshore structures. Over the past decades, many structural control systems, such as viscous-based systems, have been developed and embedded in marine and offshore structures, particularly oil platforms to maintain the stability and mitigate the seismic hazards. Rapid improvement in intelligent materials, including shape memory alloys (SMAs) and Magnetorheological fluid (MRF), have led to the design and development of efficient structural control elements. The present work aims to establish a framework for the structural... 

    Multi model robust control design for a floating offshore variable speed wind turbine with tension leg platform

    , Article Ocean Engineering ; Volume 266 , 2022 ; 00298018 (ISSN) Ghorbani Shektaei, S. R ; Sadati, N ; Member, IEEE ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    This paper presents a multi-model robust control (MMRC) design for an offshore variable speed wind turbine with tension leg platform. The proposed control scheme covers the model uncertainty in the above rated wind speed, and it provides a reliable control for power regulation while minimizing the mechanical loads on the wind turbine structure. For this purpose, the above rated wind speed region is divided into several wind speed groups, and a set of linearized models are obtained from the Fatigue, Aerodynamics, Structures, and Turbulence (FAST) simulator for various mean wind speeds of each group. Using Weibull wind speed distribution, a nominal model with additive uncertainty is generated... 

    Drilling optimization based on a geomechanical analysis using probabilistic risk assessment, a case study from offshore Iran

    , Article Rock Engineering and Rock Mechanics: Structures in and on Rock Masses - Proceedings of EUROCK 2014, ISRM European Regional Symposium ; 2014 , pp. 1415-1422 ; ISBN: 9781138001497 Rafieepour, S ; Jalalifar, H ; Sharif University of Technology
    Abstract
    In offshore Iran, wellbore instability is quite common and the main cause for most of problems during drilling operations. In this study, the existing relevant logs, drilling and other data from offset well were analyzed and integrated to construct a precise Mechanical Earth Model (MEM) describing pore pressure, stress magnitudes and orientation, and formation mechanical properties of the South Pars Gas field. Then, the constructed MEM was refined and calibrated using the existing caliper, image logs, rock mechanical core test and drilling data and through history matching to constrain and reduce the uncertainties associated with limitations and availability of the existing data. Using the... 

    Evolving artificial neural network and imperialist competitive algorithm for prediction oil flow rate of the reservoir

    , Article Applied Soft Computing Journal ; Volume 13, Issue 2 , February , 2013 , Pages 1085-1098 ; 15684946 (ISSN) Ahmadi, M. A ; Ebadi, M ; Shokrollahi, A ; Majidi, S. M. J ; Sharif University of Technology
    2013
    Abstract
    Multiphase flow meters (MPFMs) are utilized to provide quick and accurate well test data in numerous numbers of oil production applications like those in remote or unmanned locations topside exploitations that minimize platform space and subsea applications. Flow rates of phases (oil, gas and water) are most important parameter which is detected by MPFMs. Conventional MPFM data collecting is done in long periods; because of radioactive sources usage as detector and unmanned location due to wells far distance. In this paper, based on a real case of MPFM, a new method for oil rate prediction of wells base on Fuzzy logic, Artificial Neural Networks (ANN) and Imperialist Competitive Algorithm is... 

    An overview to applicability of multilateral drilling in the Middle East Fields

    , Article Society of Petroleum Engineers - Offshore Europe Oil and Gas Conference and Exhibition 2009, OE 2009, 8 September 2009 through 11 September 2009, Aberdeen ; Volume 1 , 2009 , Pages 567-577 ; 9781615675821 (ISBN) Mirzaei Paiaman, A ; Moghadasi, J ; Sharif University of Technology
    Abstract
    There are several types of drilling methods to increase the productivity of a well, such as horizontal drilling, extended reach horizontal drilling and Multilateral (ML) drilling. It is thought that ML wells could be more economic with higher productivities than horizontal or extended reach horizontal wells. Advances in ML drilling promise reduced costs, greater flexibility and increased profit potential. In the last 20 years, thousands of ML wells have been drilled worldwide, but only a small percentage of the total number of wells is multilateral. The probable reason may be lack of concise information and misconceptions surrounding the costs and perceived risks. However, recent advances in...