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Section Modulus calculation and optimization

Section modulus report links: https://drive.google.com/drive/folders/1X7WiZ8zzvKaguF4wbPEeWTVSNLhOYDnk?usp=sharing

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    Read more Projects by A Rajasekhar (15)

    Design of backdoor

    Objective:

    back door design link: https://drive.google.com/drive/folders/1yxiILee7vWJb-2eQdLfwXow7TeATJocd?usp=sharing back door report: https://drive.google.com/drive/folders/1o7UDzv5xT6sc014vblhcbDe-0cZbJq8-?usp=sharing    

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    12 Apr 2021 06:52 AM IST

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      CAR S ROOF DESIGN CALCULATION

      Objective:

      link for roof design: https://drive.google.com/drive/folders/1tW4fFAhwai6PyiVDsCYSbesJGF4FfQRS?usp=sharing

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      12 Apr 2021 06:51 AM IST

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        Section Modulus calculation and optimization

        Objective:

        Section modulus report links: https://drive.google.com/drive/folders/1X7WiZ8zzvKaguF4wbPEeWTVSNLhOYDnk?usp=sharing

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        12 Apr 2021 06:51 AM IST

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          Fender Design - Wheel Arc Challenge

          Objective:

          Solution: In the given Fender-Wheel assembly, at section C, D, E has lower clearance than clearance required. But in section D, E has negative clearance (means wheel is outer side to fender). Due to such reasons the given Fender- Wheel assembly was failed as per Europian Standards. links for 1.wheel-arc report https://drive.google.com/drive/folders/1sHDHfIpgEBfaklY-EA2f-25NQW3xMXyi?usp=sharing…

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          12 Apr 2021 06:50 AM IST

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            Design of Fender

            Objective:

            Fender design link :  https://drive.google.com/drive/folders/1O7BXEdTppkP6AP0cEPcvSNPuWGTpUWgS?usp=sharing

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            12 Apr 2021 06:50 AM IST

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              Hood design with the Hem and Necessary Hinge Striker Reinforcements

              Objective:

              Hood report: https://drive.google.com/file/d/1wTed4dSRQpaJbn4i-AZtN5R3yrvrvphN/view?usp=sharing Hood design using NX CAD: https://drive.google.com/drive/folders/1B9a_Jp2xEvdfWTAjynEz0v3IJn0ESGTz?usp=sharing

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              12 Apr 2021 06:49 AM IST

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                UNDER BODY COATING and its Purposes

                Objective:

                Undercoating  is a thick resilient coating applied to the underbody or chassis of an automobile to protect against impact damage from small stones, which would rapidly chip ordinary paint, allowing rusting to begin.  It is also used to protect the parts like internal body panels,…

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                12 Apr 2021 06:49 AM IST

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                  BENCHMARK OF BEST CAR IN CROWDED CITY BETWEEN PRICE FROM 8 TO 10 LAKHS

                  Objective:

                  SEDAN is the right choice to commute to office in highly crowded city(Bangalore) and also to visit native(Madurai) once in a month. Best car among sedan between 8 to 10 lakhs: In petrol engine:Maruti suzuki CIAZ In diesel engine: 1) HONDA AMAZE(Including Child)                  …

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                  12 Apr 2021 06:48 AM IST

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                    Week 12 - Validation studies of Symmetry BC vs Wedge BC in OpenFOAM vs Analytical H.P equation

                    Objective:

                        Symmetry Boundary Condition: Generally we will encounter an analysis where you need more computer memory and/or CPU speed that you can obtain. Therefore you should get familiar with methods for using efficient modeling techniques. One method of efficiently using finite volume method(FVM) modeling is to exploit…

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                    13 Mar 2021 02:19 AM IST

                    • CFD
                    • MATLAB
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                    Week 11 - Simulation of Flow through a pipe in OpenFoam

                    Objective:

                    Axisymmetric Flow & Wedge boundary condition: Axisymmetric Flow: The flow which possesses an axis of symmetry along a central line such that all physical variables of the flow have the same value and distribution at a given radius for all angles with respect to this axis are called as axisymmetric flow. The cylindrical…

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                    10 Mar 2021 10:45 AM IST

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                    Week 9 - FVM Literature Review

                    Objective:

                    FINITE DIFFERENCE METHOD: Finite difference methods is the numerical schemes used to solve partial differential equations. It consists in approximating the differential operator by replacing the derivatives in the equation using differential quotients. The domain is partitioned in space and in time and approximations of…

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                    07 Mar 2021 02:28 AM IST

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                      Week 8 - Simulation of a backward facing step in OpenFOAM

                      Objective:

                      Backward Facing Flow: when flow enters the domain from inlet,after some time the flow reaches the step, because of expansion of flow channel, pressure gradient exists, it detaches and a recirculation zone is formed. A turbulent boundary layer encounters a sudden back step, causing flow separation. Later the flow eventually…

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                      05 Mar 2021 03:45 PM IST

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                      Week 7 - Simulation of a 1D Super-sonic nozzle flow simulation using Macormack Method

                      Objective:

                      QUASI 1D SUBSONIC-SUPERSONIC NOZZLE: A quasi-one-dimensional flow is one in which all variables vary primarily along one direction,say x. A flow in a duct with slowly-varying area A(x) is the case of interest here. In practice this means that the slope of the duct walls is small. Also, the x-velocity component u dominates…

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                      28 Feb 2021 04:34 PM IST

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                        Week 5 - Mid term project - Solving the steady and unsteady 2D heat conduction problem

                        Objective:

                        Given condition: 2D HEAT CONDUCTION EQUATION `(delT)/(delt)=alpha((del^2T)/(del^2x)+(del^2T)/(del^2y))` Boundary condition: Top Boundary(T_top) = 600 K Bottom Boundary(T_bottom) = 900 K Left Boundary(T_left) = 400 K Right Boundary(T_right) = 800 K Absolute error criteria (error_tol)= 1e-4 OBJECTIVE:Solve Steady state and…

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                        14 Aug 2020 01:54 PM IST

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                          Week 3 - Taylor table method and Matlab code

                          Objective:

                          FORWARD DIFFERENCE: Consider a linear interpolation between the current data value `(t_0,x_0)`and the future data value `(t_1,x_1)`. The slope of the secant line between these two points approximates the derivative by the forward (two-point) difference:                …

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                          03 Aug 2020 06:37 AM IST

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