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OBJECTIVE
Seeking a challenging technical career in the engineering field, which will utilize my experience and skills for the development of an organization and self with a constant sharing of knowledge.

EDUCATION
Master of Science in Mechanical Engineering May 2005
University: King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia.Major: Thermo Fluids/Mechanical Engineering
Thesis: Mixed Convection in Vertical Channels.*
Bachelor of Technology June 2000
University: J. N. T. University, Hyderabad, India.
Major: Mechanical Engineering

PROFESSIONAL EXPERIENCE
KING FAHD UNIVERSITY OF PETROLEUM & MINERALS, Dhahran, Saudi Arabia.
Position: Research Assistant Sept 2002-Present*
Involved with professors in solving different engineering problems brought forward by industries like Saudi Aramco, Zamil and KFUPM.*
Involved in projects like "Mixed convection in vertical channels" sponsored by KFUPM and "Performance Evaluation of Air Conditioning Refrigeration Cycle" sponsored by Zamil Air Conditioners.*
Served the Department in organizing committee meetings, seminars, presentations.*
Responsibilities also include providing technology vision and maintenance for the department's suite of engineering design, analysis and visualization software tools.
Assisted students involved in Senior Design Projects in using Pro-E as a design and modeling tool.
Participated in development work aimed at improving the accuracy of large scale layered manufactured objects.
Assisting the students in Summer Training Program.
Prepared and presented several research projects& seminars.

COMFORTLINE SYSTEMS PVT. LTD, Hyderabad, India.
Position: HVAC Design Engineer July 2001-Aug 2002
Design of HVAC system.
Estimation of Heating and Cooling load with the help of Carrier E20 Program.
Organize and examine construction sketches and updated drawings for changes to scope of job, review all trade drawings for coordination with mechanical equipment.
Selection of Equipments (e.g. Chillers, Fan Coil Units, Air Handling Units, etc).
Chilled water Piping Design.
Designing of the Ducts depending upon the required air CFM.
Preparation of HVAC shop drawings.
Supervision of installation of HVAC equipments.
Preparation of Bill of Quantities (e.g. cost of Air-conditioning equipments, installation & commissioning costs, etc).* Maintenance Engineer responsible for the overall plant HVAC system.
Successfully implemented new maintenance scheduling and procedures.
Thoroughly maintained & updated delivery schedule of the different projects.
Coordinated with the project management team to meet the customer satisfaction and on time delivery of the products.
Successfully reviewed and implemented Customer requirement data sheets.

SUPERIOR TECHNOLOGIES, Hyderabad, India.
Position: Design Engineer Dec 1999-June 2001
Survey of location & orientation of Buliding.
Heat Load Calculations as per the standards & Customer requirements.
Selection of Machines (FCU, AHU, Chillers).
Pipe and Duct Designing.
Selection of pumps.* Site visits during execution of equipments.
Review of HVAC and plumbing design drawings.
Development of 2D and 3D drawings using AutoCAD & Pro-E.

SOFTWARE SKILLS
Programming Languages: Fortran, Matlab 7
CAD / CAM / CAE Softwares: AutoCAD, Pro/Engineer, ANSYS 6.1, CAESAR II Ver.4.5
Software Packages: Mathematica, Grapher, Surfer, Tecplot, FLUENT 6.1, E20, Primavera
Operating System: Windows 95/98, NT, Windows 2000 and Windows XP
Microsoft Applications: Microsoft Word, Excel, Visio, PowerPoint

SKILLS & CAPABILITIES
Provides full scope of engineering design services for all phases of a project, from the initial assessment of a Client's idea, concept, need or opportunity, through the study and design phases, to the final implementation. It brings innovation and experience to all phases of a project, including the following: * Work co-operatively as a member of a team and committed to the overall team objectives.* Act consistently with corporate standards of integrity; confidently and constructively express own beliefs & ideas.* Feasibility studies incorporating the most current viable technology and equipment capabilities. * Preparation of technical specifications that result in the purchase of high quality cost-effective equipment. * Project feasibility study, cost estimation and financial justification.* Project management organizational design and cash flow management.* Detailed design integrating the major equipment that is fully optimized for performance, cost, reliability, ease of operation and maintenance, space and access. * Development of working design concept as a solution to real life problems or needs. * Outstanding Analytical and Conceptual abilities with Excellent Design and Technical Skills.* Performing research on conceptual design, product architecture, and product planning with an objective of increasing the shared components and processes while increasing the number of products offered.* Knowledgeable of equipment component selection, such as: chillers, boiler, cooling tower, air separation equipment, air handling equipment, valves, and controllers.* Using Finite Element Analysis (FEA) software to perform different type of products analysis; such as the analysis of thermal and fatigue analysis.* Energy Cost Reduction, Analysis and Implementation. * Equipment Replacement or Upgrade * Design System Master Planning. * Peer Review/Second Opinion.

PROJECTS
Stress Analysis for GRP piping system for Kindasa Waste Water Project, Jeddah, KSA: Perform the stress analysis for the said project for different load combinations using CAESAR II Ver.4.5. Stress analysis was based on ASME B31.3 code. Support types and their design are also part of the project.
Performance Evaluation of Air-Conditioning Refrigeration cycle, KFUPM, KSA: Evaluated the performance of Air Conditioning Unit located at Ferdows Court, KFUPM. The unit consists of two loops; refrigeration loop where Freon is used as main refrigerant and water loop where water is used as secondary refrigerant. The unit is installed outside the air-conditioned space. Plate fin heat exchanger is used as heat transfer process from refrigeration loop to water loop.
Design of Central Air-Conditioning Plant for Hexagonal Building, SCET, Hyderabad: Heat load calculations based on the survey of the location and orientation of the building are calculated using concepts of the Air conditioning and as per the standards developed by Carrier. Based on the heat load/refrigeration load, machines like FCU's, AHU's and Chillers are selected followed by pipe and duct designing.*

Split Air-Conditioning, Wilco International, Hyderabad: Pipe and Duct designing during the installation of split air conditioning unit to avoid noise where in the condensing unit is installed outside the air conditioning room and evaporating unit inside the room. This type of air conditioning system is used for heating load ranging between 2 TR to 7.5 TR.*

Package Air-Conditioning, Suvistas Software Pvt Ltd, Hyderabad: Performed extensive design of duct because supply duct from outside carry the conditioned air to the air-conditioned place and return air duct bring back the air to the package unit for conditioning. These units are used for capacity of 5 TR to 20 TR and are useful for conditioning the air of a restaurant, bank or a small office.*

Central Air-Conditioning, Care Banjara Hospital, Hyderabad: Studied and developed heat load calculations using the standards of Carrier. Selection of air conditioning equipment like Fan Coil Units, Air Handling Units and Chillers is carried out as per the standards developed by Carrier. Ducting and piping required to supply the conditioned air to the space and pump the water from the chiller to the condensing unit where the heat transfer takes place are designed using the concept of equal friction method and pressure drop and maintenance of the plant.

RESEARCH PROJECTS
Mixed Convection in Vertical Channels: Calculated critical values of buoyancy parameter Gr/Re for fully developed mixed convection under different isothermal boundary conditions in different vertical channels like parallel plates, circular tubes, concentric annuli and eccentric annuli. These critical values are the values of buoyancy parameter at which the pressure build up will takes place. This quantitative and qualitative information will provide the designer to properly size the pumping device such that it sufficiently satisfies the desired condition which in turn reduce the cost, time and power consumption of the pumping device. FORTRAN code is developed to obtain the critical values of buoyancy parameter Gr/Re.*

Entropy Generation and Heat Transfer in an enclosed rectangular block: Heat transfer through partitioned enclosures is of interest due to energy conscious in design of structures to minimize heating/cooling loads of buildings. Rectangular blocks are typically used to reduce heat transfer through glasses and solar collectors. Mathematical formulation of the problem is developed and solved analytically using Mathematica software.*

Numerical solution of the Falkner-Skan differential equation (flow past a wedge): Entropy generation and flow past a wedge for various wedge angles has been studied numerically. During this study, a mathematical model is developed based on the boundary layer approximations using similarity transformation. The model is then solved using Mathematica software for the appropriate boundary conditions.*

A CFD Approach to Pulsatile Blood Flow Effects on temperature distribution and heat transfer in rigid vessels: Studied the effect of oscillatory flow upon the resulting blood temperature distribution and convective heat transfer at the exit of a vessel using FLUENT 6.1. Hyperthermia in cancer therapy raise the temperature of cancerous tissue above the therapeutic value in order to maintain the temperature distribution, it has to be modeled based description of the mechanism of bio-heat transfer.*

Numerical solution for conduction heat transfer through the pipe: Non-dimensional Mathematical model is developed for the boundary conditions and then solved using implicit finite difference method. Various effects of grid size on the solution of the heat conduction governing equation. The discretized algebraic equations are solved using Gauss Siedel Iterative technique and a MATLAB code is developed to solve these algebraic equations.*
Numerical approach to study the flow and heat transfer past an inclined backward facing step: Flow and heat transfer governing equations are solved using FLUENT 6.1 with appropriate boundary conditions. Geometric modeling is carried out in GAMBIT; a modeling software, to study the problem. Effect of inclination angle on the flow and heat transfer parameters are extensively studied in order to predict the existence of flow separation.

RELEVANT COURSES
Refrigeration & Air Conditioning, Management Science, Production Technology, Design of Machine Members, CAD/CAM, Operations Research, Elements of FEM, Power Plant Engineering, Thermodynamics, Material Science, Mathematical Methods for Engineers, Advanced Fluids Mechanics, Numerical Methods in Mechanical Engineering, Continuum Mechanics, Advanced Heat Transfer, Conduction Heat Transfer, Solar Energy Conversion, and Convection Heat Transfer.

HONORS AND AWARDS
Received Research Assistantship at King Fahd University of Petroleum and Minerals
Distinction holder in Bachelor of Engineering (B.E) from JNTU, Hyderabad, India.

REFERENCES
Upon request

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