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Finite Element Analysis (FEA) is a procedure used to identify and solve engineering problems that can have a wide range of complexities. It’s a type of engineering simulation that uses a set of mathematical equations to analyze and solve various engineering problems. A Finite Element Analysis Engineer is the person who will interpret the results and make recommendations for the best engineering solution. In order for FEA to be performed correctly and accurately, professional engineers must use special software written for FEA purposes.
FEA works by breaking down complex architecture or components into smaller sections to simulate how the entire structure or object will behave under real life circumstances or scenarios. Through this method, FEA engineers are able to provide their clients with valuable insights about potential failures or defects that can be identified and corrected before it’s too late and expensive.
Here’s some projects that our expert Finite Element Analysis Engineer made real:
The analysis of complex architecture can be extremely time consuming, however through FEA simulations, engineers are capable of quickly identifying weak points and then immediately take action to optimize it. Clients who have access to experienced Finite Element Analysis Engineer can save time, money and energy while carrying out their projects because they know exactly how their structure behaves before it’s even built. That’s why we invite you to use Freelancer.com for your project so you can hire an expert engineer in FEA that can provide you with the best engineering solution for your needs.
From 17,761 reviews, clients rate our Finite Element Analysis Engineers 4.81 out of 5 stars.Finite Element Analysis (FEA) is a procedure used to identify and solve engineering problems that can have a wide range of complexities. It’s a type of engineering simulation that uses a set of mathematical equations to analyze and solve various engineering problems. A Finite Element Analysis Engineer is the person who will interpret the results and make recommendations for the best engineering solution. In order for FEA to be performed correctly and accurately, professional engineers must use special software written for FEA purposes.
FEA works by breaking down complex architecture or components into smaller sections to simulate how the entire structure or object will behave under real life circumstances or scenarios. Through this method, FEA engineers are able to provide their clients with valuable insights about potential failures or defects that can be identified and corrected before it’s too late and expensive.
Here’s some projects that our expert Finite Element Analysis Engineer made real:
The analysis of complex architecture can be extremely time consuming, however through FEA simulations, engineers are capable of quickly identifying weak points and then immediately take action to optimize it. Clients who have access to experienced Finite Element Analysis Engineer can save time, money and energy while carrying out their projects because they know exactly how their structure behaves before it’s even built. That’s why we invite you to use Freelancer.com for your project so you can hire an expert engineer in FEA that can provide you with the best engineering solution for your needs.
From 17,761 reviews, clients rate our Finite Element Analysis Engineers 4.81 out of 5 stars.Title ABAQUS 2018 – 3D Rectangular Soil Model with Borehole Isolation ( Project) ⸻ Description I need a 3D numerical model in ABAQUS 2018 for an project. The objective is to evaluate ground vibration attenuation using borehole isolation and calculate the Amplitude Reduction Factor (ARF) at foundation level. This is a simplified academic model, focused on comparison (with vs without isolation), not a full train–track simulation. ⸻ Scope of Work • 3D rectangular soil domain • Layered soil based on borelog data (will be provided) • Dynamic analysis (time-history or harmonic) • Two cases: 1. Without borehole isolation 2. With borehole isolation ⸻ Geometry Details Soil Domain • Plan dimensions: 40 m × 30 m • Depth: 20 m •...
I’m completing a university project that calls for a full engineering design of a two-flange ball valve suitable for crude-oil service. The assembly—including body, ball, seats, stem, seals, and fasteners—must be laid out in stainless steel and verified against API 6A. While references to API 6D or 608 can guide good practice, every dimension, tolerance, and material choice has to pass an API 6A compliance review. What I need from you is the complete digital design package created in a mainstream CAD environment (SolidWorks or Fusion360). The file should be able to make edits and easy to revise for future FEA or CFD checks. Deliverables • 3-D solid models of the full valve assembly and each component (.STEP + native CAD files) • Detailed 2-D fabrication dr...
Deliverables • • Source files for recreated results Acceptance criteria • Side-by-side comparison shows no visible difference in content and results. Once I confirm the mirror accuracy of the reproduced report, the project will be considered complete.
- Perform full CFD combustion simulation of a small combustor chamber (LPG or propane fuel, non-premixed combustion model) in ANSYS Fluent Student Version only(max 1000000 cells). - Use a non-premixed PDF combustion model with my PDF table (already created), mass flow inlet BCs (air 0.338 kg/s, fuel 0.0106 kg/s), and correct velocity directions from dome holes. - Run mesh independence study (4–5 meshes) and report outlet total temperature, residuals, and computational time until mesh-independent result is achieved. - Extract and calculate convective + radiative heat flux or temp on liner walls, total heat loss to walls (target ~8–10% of heat input), and wall temperature distribution. - Perform **steady-state thermal analysis** inside Fluent: import the CFD heat flux or wall t...
I need hollow steel columns that can safely carry the full axial loads of a residential structure while maintaining a 120 minute fire resistance rating. abacus model
Here is what I need from you: • Live or recorded sessions that walk me through project setup, mesh generation, material assignment, heat-source definition, and result interpretation. Complete study of the software and make me good in it. • Worked examples for each process (arc, resistance, laser) . • Tips on choosing solver settings so runs finish in reasonable time without sacrificing accuracy. • A short checklist I can follow after the training to make sure every new model I build captures the right thermal outputs. I already know welding theory, so the focus should stay on Simufact’s interface, modelling strategy, and validation of the simulation against real-world weld data. Remote delivery is fine—screen-share, annotated PDFs, or short videos al...
I’m developing a new piece of industrial-grade machinery intended for a manufacturing line here in New Zealand and I’m after a mechanical engineer who can own the full product-design cycle. Because of the need for occasional site visits, supplier liaison, and compliance with local standards, I strongly prefer someone already based in New Zealand. The work starts at concept generation and runs through to production-ready documentation. You’ll translate my performance requirements and rough sketches into detailed 3D CAD models, validate the design with strength and tolerance analysis, and prepare drawings that a local fabricator can pick up without follow-up questions. Familiarity with common NZ/AU standards, readily available materials, and local safety regulations is ess...
I have an early-stage prototype in hand and now need a product engineer to help me take it the rest of the way. The goal is threefold: refine the design, run meaningful tests that validate function and safety, and map out a clear path to low-volume manufacturing. What I’m looking for • Design improvements – fresh eyes on materials, tolerances, cost-down ideas, and any issues that could complicate production. • Testing & validation – develop a concise test plan, execute the lab or field tests, and document the results so we know exactly where the prototype stands. • Manufacturing process – recommend suitable processes, suppliers, and DFM tweaks so we can move smoothly into a pilot build. I’m based in the Bloomington-Normal area, so th...
Only Bid if you can do it in RFEM 6...! I need a clean, well-organised RFEM 6 model that is ready for analysis. I will provide the general geometry, member sizes, and any drawings you tell me you require. Your job is to translate that information into a fully defined RFEM 6 file, assign the appropriate materials and cross-sections, establish load cases and combinations, and leave the model prepared for me to run and review the analysis results. Key points • Model must be built natively in RFEM 6, making full use of its member, surface or solid features as appropriate to the structure. • All typical load categories—dead, live, wind, etc.—should be created, even if I refine magnitudes later. I mainly need the framework in place. • Naming conventions and lay...
I need a fully-parametrised Abaqus/CAE model of a 6 m railway track panel that I can later refine. The arrangement is straightforward: seven concrete sleepers spaced 667 mm centre-to-centre, sitting on a 500 mm ballast layer, with two steel rails fixed above. Three distinct scenarios must be simulated: 1) every sleeper intact, 2) Sleeper 3 cracked, 3) a void under Sleeper 7. On each rail seat apply 200 kN cyclic loading—100 cycles at 5 Hz—so the load history is identical on both sides. Please set up the geometry, section assignments, material definitions, surface-to-surface contact, and boundary conditions so the file is clean and ready for later adjustments and additional studies. Deliverables • Abaqus .cae (and matching .inp) containing the three load step...
My MTech CAD-CAM thesis revolves around simulation and analysis, and I want the core of the work to be a rigorous Finite Element Analysis on metallic materials that can stand up to peer-review and ultimately be accepted in a reputable journal. Scope of work The project begins with selecting a metallic alloy (steel, aluminium, or other ferrous/non-ferrous metal we agree on) and defining a problem statement that contributes something fresh—this might be a novel geometry, an advanced loading scenario, or a comparison of conventional and additive manufacturing routes. From there, the tasks move through clean CAD preparation, high-quality meshing, boundary condition definition, convergence checks, and result interpretation. Validation—either with analytical solutions or published...
I am completing an dissertation that couples CFD with structural-piezoelectric analysis in ANSYS. The core of the study is piezoelectric actuation: fluid flow drives a smart structure, the structure feeds back to the flow, and both responses must be validated against a published research paper. Here is what I need from you: build the clean geometry, generate a high-quality mesh, run the transient CFD in Fluent, transfer loads into Mechanical for the structural and piezoelectric response, then bring everything back together for a convergence study and result comparison. Because this is academic work, every modelling choice has to be fully explainable. I will rely on you most heavily when it comes to solver settings—that is the area I find most challenging—so be ready to justif...
I need detailed structural steel calculations for a commercial building. The calculations should cover: - Bolted connections - Welded connections - Moment connections Ideal Skills & Experience: - Expertise in structural engineering - Experience with commercial building projects - Proficiency in all types of steel connection calculations Please provide relevant credentials and past project examples.
I’ve prepared a straightforward CAD model and now need it run through Ansys to extract trustworthy results. The geometry is already clean, so the task focuses on setting up the case, running the analysis, and presenting the findings. The model complexity is simple, so I’m expecting an efficient turnaround. While I’ll confirm the exact physics with you after we connect, I’m open to structural, thermal, or fluid domains—let me know which area you excel in and which Ansys modules you intend to use. Workbench or APDL are both fine as long as the files load error-free in my 2022 R2 installation. Deliverables • Ansys project file fully set up and solved • Post-processed outputs: contours, plots, and any useful animations • Concise PDF repo...
I need an FEM simulation for a static compression test on aluminum with double varying friction. Ansys 2025R2 Requirements: - Model aluminum's yield strength, modulus of elasticity, and Poisson's ratio - Account for double varying friction in the simulation Ideal Skills & Experience: - Proficiency in FEM analysis software (e.g., ANSYS) - Strong background in material science, specifically with aluminum - Experience with friction modeling in FEM simulations Please provide relevant work samples and a detailed approach.
Please provide your price Deadline : 15 March ANSYS Simulation Services Project: Design & Simulation of Thermoelectric Generators (TEGs) for Waste-to-Energy (WTE) Incinerator Exhaust Software: ANSYS Mechanical APDL 2025 R2 (SOLID226) ⸻ 1. PURPOSE To develop a fully coupled thermo-electric-mechanical finite element simulation framework for Thermoelectric Generator (TEG) modules operating under WTE exhaust temperatures (600–900 K). ⸻ 2. SCOPE OF WORK The Contractor shall perform the following tasks: ⸻ A. Baseline FEM Model Development • Develop a parametric 3D unicouple model (P-leg, N-leg, copper pads, ceramic substrates) • Implement temperature-dependent material properties: • Seebeck coefficient α(T) • Thermal conductivity k(T) • Electr...
I have a 3-dimensional model that will be evaluated under turbulent flow conditions, and I need a clean, high-quality mesh prepared in ANSYS Workbench. The mesh must be fine enough to capture boundary-layer behaviour without driving cell counts to impractical levels, as it will be fed directly into a full CFD solver later. What I will supply • The native CAD file (SOLIDWORKS) . What I need back • The complete ANSYS Mechanical/Fluent mesh file (.msh or Workbench project) ready to run. • A short note outlining element count, y+ target, inflation layers used, and any local refinements you added for anticipated high-gradient regions. Acceptance criteria 1. Mesh conforms with best practices for turbulent flow in 3D, including inflation layers near walls. 2. No negative volumes...
I’m looking for an instructor who can guide me through high-level structural analysis in STAAD Pro, with a special emphasis on offshore platforms. I already use the software comfortably and know the standard workflow, so the sessions should skip the basics and go straight into advanced modelling strategies, load combinations unique to offshore environments, fatigue and dynamic checks, and any recent updates in the CONNECT Edition that affect these tasks. Need STAAD Pro software to be installed in my laptop to practice. If you have hands-on design or certification experience with offshore structures, please mention it—those insights will make the sessions far more valuable.
Somos produtores de framboesa biológica e a tempestade Kristin destruiu as nossas estufas, tipo macro-túnel. Queremos redesenhar a estrutura para que suporte ventos extremos (acima de 100 km/h) usando aço galvanizado como material principal. Preciso que o serviço inclua: 1. Modelação 3D completa da nova estufa em Autodesk Inventor (ou ferramenta equivalente), com todos os perfis, ligações, fundações e pontos de ancoragem. 2. Simulação por elementos finitos que comprove a resistência a ventos extremos, apresentando fatores de segurança, tensões e deformações. 3. Otimização da geometria e seleção de perfis, para reduzir custo sem comprometer a res...
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