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I need a complete ANSYS-based study of a helical tube heat exchanger turned around in just two days. I will supply the detailed geometric dimensions; from there, I want you to: • Build the 3-D geometry exactly to spec • Generate a mesh and run a proper convergence study, documenting the grid-independent solution • Set up and solve the thermal-fluid simulation, selecting models and boundary conditions that suit a coiled-tube exchanger • Validate the solution numerically (residuals and energy balance) and present clear plots of temperature, velocity and pressure fields • Summarise findings in a concise PDF report and hand over the ANSYS project files so results can be reproduced Please highlight any turbulence models, wall treatments or user-defined functions you will apply, as well as the mesh metrics you will track during the refinement study. Meeting the 48-hour deadline is critical, so reply only if you are confident you can deliver on time without compromising accuracy.
Project ID: 40663333
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13 freelancers are bidding on average ₹6,808 INR for this job

Hi The key challenge is accurately capturing the coupled flow and heat-transfer behavior inside the helical heat exchanger, including curvature effects, pressure drop, temperature distribution, and heat-transfer performance. I can perform the complete ANSYS CFD analysis, including geometry cleanup, high-quality mesh, appropriate turbulence model, thermal boundary conditions, convergence/mesh-independence checks, and extraction of heat-transfer coefficient, pressure drop, outlet temperatures, and overall thermal performance. I’ll provide the ANSYS project files, detailed result plots, validation checks, and a concise technical report. Please share the exchanger geometry, fluid properties, inlet flow rates/temperatures, and target operating conditions. Best regards, Arati M.
₹7,000 INR in 7 days
6.7
6.7

As a seasoned mechanical engineer with over a decade of experience, I leverage advanced skills in CAD, CAM, and CAE software including SOLIDWORKS and ANSYS to guarantee the utmost precision and speed for your project. My expertise stretches beyond 3D modeling and rendering encompassing both in-service and design field applications. I am confident that these skills have effectively prepared me for the task at hand: conducting a thorough ANSYS-based analysis of your helical tube heat exchanger within your mandated 48-hour window. Moreover, my meticulous approach extends to validating solution residuals and energy balances – an element that will enhance the replicability of the end results by other professionals. Besides meeting the timeline without compromising quality assurance, maximizing client satisfaction is my top priority. A quick scan through my profile would reveal several commending reviews that highlight my efficiency in delivering satisfactory outcomes under tight deadlines. In conclusion, I am competent in all areas like geometric modeling and analysis that are vital to completing your helical heat exchanger project successfully. With my robust skill set buoyed by solid years of industrial experience in various relevant fields, you can be certain of speedy, satisfactory outcomes without ever having to compromise on quality. Let's get started now!
₹9,000 INR in 7 days
6.7
6.7

Being a seasoned professional in the fields of 3D modelling and simulation, I am perfectly equipped to handle your Helical Heat Exchanger Analysis project using ANSYS. I understand the significance of meeting deadlines without compromising precision. Having worked on similar projects in the past, I can confidently assure you of timely results, backed by impeccable accuracy.
₹1,654 INR in 1 day
6.2
6.2

The key risk in this study is not simply obtaining a converged Fluent solution—it is proving that the heat-transfer and pressure-drop predictions remain stable as the mesh is refined, while the coiled-tube curvature and near-wall treatment are represented correctly. My background includes advanced thermal CFD, turbulence modelling, ANSYS Fluent workflows, and mesh-independence studies, so I would approach this as a validation problem rather than a single simulation run. I will build the 3D geometry from your dimensions, establish the thermal-fluid model and boundary conditions, and perform a structured mesh-refinement study. Grid independence will be judged using both mesh-quality metrics and the stability of engineering outputs such as heat duty, outlet temperatures and pressure drop-not cell count alone. The final study will include: Geometry and complete ANSYS model Mesh-quality and grid-independence assessment Appropriate turbulence and wall-treatment selection based on the operating Reynolds number and near-wall resolution Residual, mass and energy-balance checks Temperature, velocity and pressure contours Concise PDF engineering report Reproducible ANSYS project files Any UDF would only be introduced if the supplied properties or boundary conditions genuinely require one rather than adding unnecessary complexity. Please send the exchanger dimensions, fluids, inlet temperatures, mass-flow rates and operating pressures so I can finalize the setup immediately.
₹10,500 INR in 3 days
5.2
5.2

As a seasoned mechanical designer and ANSYS simulation expert, I've successfully tackled numerous projects just like yours and always with an engineering-first approach. My core expertise covers key aspects of your project from CAD drafting and 3D modeling to structural, thermal, CFD and FEA simulations using ANSYS. With a firm handle on software such as ANSYS, SolidWorks, CATIA V5 and more, I'm adept at transforming ideas into manufacturing-ready designs with precise engineering. In previous projects involving thermal analysis of heat exchangers, I've used appropriate turbulence models combined with effective wall treatments to accurately simulate the convective heat transfer processes that occur inside the system. Additionally, I've implemented user-defined functions where necessary to model complex phenomena like secondary flows in helical tubes. At the heart of my offering lies not just technical skills but also a consistent commitment to clear communication and fast turnarounds without compromising on accuracy. With me at the helm of your ANSYS-based helical tube heat exchanger study, you can look forward to production-ready deliverables incorporating thorough validation (via residuals and energy balance) presented in a concise PDF report alongside project files for result reproducibility. Give me this opportunity and let's see how high we can raise the temperature of engineering excellence together!
₹3,000 INR in 7 days
4.3
4.3

i have done multiple cfd project on ansys fluent and i think i can meet your deadline. let's chat further
₹10,000 INR in 2 days
2.8
2.8

As an Electrical Engineer and Data Scientist, I offer a unique blend of skills that will ensure a successful completion of your helical tube heat exchanger analysis project. My comprehensive training and extensive experience with ANSYS, computational fluid dynamics, and 3D modeling makes me perfectly suited for this task. I have the capacity to build 3D geometries from scratch, generate and refine meshes, establish proper boundary conditions, select appropriate models for turbulence and wall treatments, as well as develop user-defined functions when necessary. Additionally, I can validate your solutions numerically using residuals and energy balance analysis. I present data in a clear and efficient manner with plots depicting temperature, velocity and pressure fields - ensuring an easily understandable report. With my skills in project management and my ability to deliver high quality work within tight deadlines - which aligns seamlessly with your 48 hour time frame- I confident experience supplying professional reporting shouldn't be overlooked. I am confident that choosing me for this project would guarantee a meticulously analyzed helical heat exchanger study that not only adheres strictly to the required specifications, but surpasses expectations.
₹7,000 INR in 7 days
2.5
2.5

I have run this exact simulation before: a coiled tube heat exchanger in both parallel and counter flow, including a full mesh independence study to reach the grid independent solution. No learning curve here, which is what makes 48 hours realistic. Coiled tube flow is not simple pipe flow. Centrifugal effects induce Dean vortices that k-ε under-predicts, so I will run SST k-ω with enhanced wall treatment to resolve the near-wall gradient, since that is exactly where your wall heat transfer coefficient depends most. Convergence study tracks: element count against outlet bulk temperature and wall-averaged Nusselt number (not just velocity), mesh skewness and orthogonal quality, and y+ along the coil wall. Refinement stops once outlet temperature and pressure drop shift under 1 to 2 percent between mesh levels, that level is reported as grid independent. Deliverables: converged residuals, energy balance check on inlet-outlet enthalpy closure, temperature/velocity/pressure contour and vector plots, a concise PDF summary, and full Ansys project files for reproducibility. Share geometry and operating conditions and I start immediately.
₹6,000 INR in 7 days
1.1
1.1

With extensive experience in thermal-fluid simulations using ANSYS, I propose to swiftly create a precise 3-D model of the helical tube heat exchanger and conduct a thorough convergence study to validate the results. Could you please share the specific geometric dimensions for the project? Regards, CA. Swati Jain, CPA
₹3,600 INR in 1 day
0.0
0.0

We recently helped a client achieve a detailed thermal-fluid simulation for a heat exchanger — and judging by your post, it sounds like we could do the same for you. We've worked on ANSYS simulations for thermal systems and would love to bring that experience to your project. From your post, it sounds like you're looking for something precise and professional, specifically around building the 3-D geometry and conducting a thorough convergence study. We specialize in ANSYS modeling, including turbulence models and wall treatments suitable for coiled-tube exchangers. I will apply the k-epsilon turbulence model and track mesh metrics such as aspect ratio and skewness during the refinement study. I am confident in meeting your 48-hour deadline without compromising accuracy. I would love to help you with your project! The worst that can happen is you walk away with free consultation. Regards, Shannonkb21.
₹6,250 INR in 14 days
0.0
0.0

Hi, I can deliver this within your 72-hour window without compromising accuracy. Geometry: I'll build the coiled tube to your exact dimensions in DesignModeler/SpaceClaim, keeping pitch and curvature parametric in case specs shift late. Mesh: hex-dominant/swept scheme with inflation layers at the wall for boundary-layer resolution, tightened curvature sizing through the coil where Dean vortices are strongest. Convergence study across 3+ mesh densities, tracking outlet temperature, pressure drop, and wall Nusselt number, with GCI or Richardson extrapolation to justify the final mesh. Solver: ANSYS Fluent, SST k-omega turbulence model (handles near-wall gradients and secondary flow in curved tubes better than standard k-epsilon), enhanced wall treatment for y+ control. If Reynolds number lands in a transitional range, I'll flag it and suggest transition SST or a laminar check, since coiled geometry shifts critical Re versus straight pipe. Validation: scaled residuals plus a global energy balance (inlet vs outlet enthalpy flux) before trusting any result. Deliverables: temperature, velocity, and pressure contour/vector plots, concise PDF report on methodology and findings, and full ANSYS project files for reproducibility. Send the geometry specs and I'll start right away.
₹5,000 INR in 3 days
0.0
0.0

Patna, India
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