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Kullanıcı Avatarı
$45 USD / saat
   PAKISTAN bayrağı
sargodha, pakistan
$45 USD / saat
Şu anda burada saat 3:52 ÖS
Eylül 7, 2018 tarihinde katıldı
2 Tavsiye

Mohsin R.

@rehmanmohsin273

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4,9 (45 değerlendirme)
6,0
6,0
$45 USD / saat
   PAKISTAN bayrağı
sargodha, pakistan
$45 USD / saat
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Tekrar İşe Alınma Oranı

Aerospace-Blender-CAD-FEA-FEM-CFD-HVAC-ANSYS-ML-SW

MS graduate with an extensive knowledge of the field and strong technical background. Experienced in solving engineering problems related to propulsion systems (starting from component design to optimization of the system as a whole), Computational Fluid Dynamics (CFD), Structural Design, Analysis(FEA) and Optimization of complex systems, Research and Development (R&D), 3D modelling using a number of softwares, deep understanding of AeroAcounstics(Turbulence modelling) problems and their analysis based solutions. -Machine Learning software expertise include: ANSYS modules(ANSYS Fluent, ANSYS CFX, ANSYS Static Structural, ANSYS EXPLICIT DYNAMICS, ANSYS MAXWELL, ANSYS APC, ANSYS MODAL, ANSYS TurboGrid, ICEM), CATIA V5, AutoDesk Inventor, AUTOCAD, SolidWorks, Floor Planner, MATLAB, Simulink, RDS(Raymer Design Software), AAA(Advanced Aircraft Analysis), XFLR5, Mission Planner, System Toolkit, Tensor Flow. -Python -C++ -C Programming
Freelancer Mechanical Engineers Pakistan

Mohsin R. ile işiniz hakkında iletişime geçin

Sohbet üzerinden herhangi bir detayı tartışmak için giriş yapın.

Portföy Ögeleri

The swarm is able to search a "m x n" grid for a dynamic target and provides real-time trajectory on a ground station. The control architecture is decentralized which means that the swarm is robust (a few drones crashing or the ground station losing contact will not cause the mission to stop).

Potential applications of this technology are: Search and rescue operations, fire fighting, massive systems of delivery drones, surveillance of construction sites etc.
Design and Development of Decentralized Swarm of Quadcopters
The swarm is able to search a "m x n" grid for a dynamic target and provides real-time trajectory on a ground station. The control architecture is decentralized which means that the swarm is robust (a few drones crashing or the ground station losing contact will not cause the mission to stop).

Potential applications of this technology are: Search and rescue operations, fire fighting, massive systems of delivery drones, surveillance of construction sites etc.
Design and Development of Decentralized Swarm of Quadcopters
The swarm is able to search a "m x n" grid for a dynamic target and provides real-time trajectory on a ground station. The control architecture is decentralized which means that the swarm is robust (a few drones crashing or the ground station losing contact will not cause the mission to stop).

Potential applications of this technology are: Search and rescue operations, fire fighting, massive systems of delivery drones, surveillance of construction sites etc.
Design and Development of Decentralized Swarm of Quadcopters
The swarm is able to search a "m x n" grid for a dynamic target and provides real-time trajectory on a ground station. The control architecture is decentralized which means that the swarm is robust (a few drones crashing or the ground station losing contact will not cause the mission to stop).

Potential applications of this technology are: Search and rescue operations, fire fighting, massive systems of delivery drones, surveillance of construction sites etc.
Design and Development of Decentralized Swarm of Quadcopters
Design and Fabrication of VTOL UAV
Detailed description of the work and procedures carried out during various tasks related to design and analysis of Vertical Takeoff and Landing Unmanned Aerial Vehicle. This includes project plan and methodologies followed, timeline, literature review, results and calculations required. For design and analysis different software such as ANSYS Fluent for CFD Analysis, MATLAB for optimization and plotting different graphs, RDS for initial weight estimation and aerodynamic analysis, AAA for stability analysis and Ecalc for component matching. Also study of control board PIXHAWK 2.1 and ground station software Mission Planner will be done
Design and Development of VTOL UAV
Detailed description of the work and procedures carried out during various tasks related to design and analysis of Vertical Takeoff and Landing Unmanned Aerial Vehicle. This includes project plan and methodologies followed, timeline, literature review, results and calculations required. For design and analysis different software such as ANSYS Fluent for CFD Analysis, MATLAB for optimization and plotting different graphs, RDS for initial weight estimation and aerodynamic analysis, AAA for stability analysis and Ecalc for component matching. Also study of control board PIXHAWK 2.1 and ground station software Mission Planner will be done
Design and Development of VTOL UAV
Detailed description of the work and procedures carried out during various tasks related to design and analysis of Vertical Takeoff and Landing Unmanned Aerial Vehicle. This includes project plan and methodologies followed, timeline, literature review, results and calculations required. For design and analysis different software such as ANSYS Fluent for CFD Analysis, MATLAB for optimization and plotting different graphs, RDS for initial weight estimation and aerodynamic analysis, AAA for stability analysis and Ecalc for component matching. Also study of control board PIXHAWK 2.1 and ground station software Mission Planner will be done
Design and Development of VTOL UAV
Detailed description of the work and procedures carried out during various tasks related to design and analysis of Vertical Takeoff and Landing Unmanned Aerial Vehicle. This includes project plan and methodologies followed, timeline, literature review, results and calculations required. For design and analysis different software such as ANSYS Fluent for CFD Analysis, MATLAB for optimization and plotting different graphs, RDS for initial weight estimation and aerodynamic analysis, AAA for stability analysis and Ecalc for component matching. Also study of control board PIXHAWK 2.1 and ground station software Mission Planner will be done
Design and Development of VTOL UAV
Detailed description of the work and procedures carried out during various tasks related to design and analysis of Vertical Takeoff and Landing Unmanned Aerial Vehicle. This includes project plan and methodologies followed, timeline, literature review, results and calculations required. For design and analysis different software such as ANSYS Fluent for CFD Analysis, MATLAB for optimization and plotting different graphs, RDS for initial weight estimation and aerodynamic analysis, AAA for stability analysis and Ecalc for component matching. Also study of control board PIXHAWK 2.1 and ground station software Mission Planner will be done
Design and Development of VTOL UAV
Detailed description of the work and procedures carried out during various tasks related to design and analysis of Vertical Takeoff and Landing Unmanned Aerial Vehicle. This includes project plan and methodologies followed, timeline, literature review, results and calculations required. For design and analysis different software such as ANSYS Fluent for CFD Analysis, MATLAB for optimization and plotting different graphs, RDS for initial weight estimation and aerodynamic analysis, AAA for stability analysis and Ecalc for component matching. Also study of control board PIXHAWK 2.1 and ground station software Mission Planner will be done
Design and Development of VTOL UAV
Vertical Axis Wind-turbine Design
Vertical Axis Wind-turbine Design
CAD models of designed Hydro-Power Turbine: A Hydro Power Turbine modelled in AUTODESK INVENTOR 2017. A grilled mesh was designed to hinder debris that could damage the rotor blades of Hydropower turbine.
Blades were designed and modelled using unsymmetric airfoils for optimum efficiency. Hub was designed and modelled aerodynamically so that flow remains laminar in front of the rotors.
Hydro-Power Turbine CAD Modelling
CAD models of designed Hydro-Power Turbine: A Hydro Power Turbine modelled in AUTODESK INVENTOR 2017. A grilled mesh was designed to hinder debris that could damage the rotor blades of Hydropower turbine.
Blades were designed and modelled using unsymmetric airfoils for optimum efficiency. Hub was designed and modelled aerodynamically so that flow remains laminar in front of the rotors.
Hydro-Power Turbine CAD Modelling
Cad models of Coffee Maker product Design
Product Design for Coffee Maker
Cad models of Coffee Maker product Design
Product Design for Coffee Maker
Cad models of Coffee Maker product Design
Product Design for Coffee Maker

Değerlendirmeler

Değişiklikler kaydedildi
44 değerlendirme içinden 1 - 5 arasındakiler gösteriliyor
Değerlendirmeleri filtreleme kriteri: 2,0
£40,00 GBP
I was not happy to work with him
CAD/CAM Solidworks Mechanical Engineering Finite Element Analysis 3D Modelling
D
    bayrağı David Z. @davidziari1367
1 yıl önce
5,0
[MÜHÜRLÜ]
I recommend Mr. Mohsin, he is very professional. He has excellent communication skills and perfectly understood my needs. It was a pleasure to work with him, If I would need any expert for future project, I hope to work with him.
Solidworks Mechanical Engineering Finite Element Analysis 3D Modelling
Kullanıcı Avatarı
    bayrağı Gamal T. @GamalMahran
2 yıl önce
5,0
$44,00 AUD
Very professional and punctual, will definitely work with Mohsin in the future!
Computational Fluid Dynamics
M
    bayrağı Matthew B. @MattRBarnes
2 yıl önce
5,0
$330,00 USD
Extremely satisfied with the work performed. Quite smooth communication and highly recommended
B
    bayrağı Bilal R. @BilalRasd
2 yıl önce
5,0
$180,00 USD
amazing work and so intelligent person
Engineering Matlab and Mathematica Solidworks Mechanical Engineering Finite Element Analysis
+1 daha
Kullanıcı Avatarı
    bayrağı Mohamad A. @tournad921
2 yıl önce

Eğitim

MS Aerospace Engineering (Computational Fluid Dynamics)

Institute of Space Technology , Pakistan 2019 - 2021
(2 yıl)

BS Aerospace Engineering

Pakistan 2014 - 2018
(4 yıl)

Mohsin R. ile işiniz hakkında iletişime geçin

Sohbet üzerinden herhangi bir detayı tartışmak için giriş yapın.

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Önde Gelen Beceriler

Mechanical Engineering 39 Engineering 34 Finite Element Analysis 25 Matlab and Mathematica 21 Solidworks 20

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Mechanical Engineering
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