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Project Description Design a cylindrical vortex chamber to generate strong swirling flow using a 40 L/min water pump. The chamber will hold a 3-inch OD bottle inside, so proper clearance and flow gap must be maintained. The system is stationary and used for vortex-based cooling/mixing. Geometry Specifications Bottle Outer Diameter: 76 mm (3 inch) Chamber Inner Diameter: 100–110 mm (to maintain flow gap around bottle) Chamber Height: 280 mm (11 inch) Radial Clearance (water gap): 10–15 mm around bottle Material: PVC or Aluminum Wall Thickness: As per design recommendation Scope of Work Cylinder & Groove Design Design internal helical grooves (3-start configuration) Groove depth: ~3 mm Groove width: ~6 mm Helix angle: ~20° Pitch: ~100 mm Grooves must be on inner wall (not on bottle) Smooth internal finish with rounded edges Inlet Design Tangential inlet (side entry) Diameter: 12–16 mm Position: ~25 mm from bottom Angle: Tangential with slight downward inclination Outlet Design Top central outlet Diameter: ~20 mm Flow Requirements Ensure strong vortex formation around bottle Uniform swirling flow along full height Optimize flow in annular space between bottle and chamber wall Minimize dead zones and pressure losses Deliverables 3D CAD model (STEP / STL format) 2D dimensioned drawings Assembly showing bottle placement inside chamber Design file (SolidWorks / Fusion 360 preferred) Required Skills Fluid Dynamics / CFD Mechanical Design (CAD) Experience with vortex / cyclone / internal flow systems Additional Requirements Design must be suitable for CNC machining or practical fabrication Internal features must be durable and manufacturable Bottle should be easily insertable and removable
ID do Projeto: 40338704
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6 freelancers estão ofertando em média ₹1.633 INR for esse trabalho

Hi there, I would be happy to assist with the design of the vortex flow chamber with internal helical grooves for a 3” OD bottle. With strong experience in CFD-driven design and parametric modeling in Fusion 360, I can develop an optimized geometry that enhances vortex formation and flow behavior. Approach: Create parametric 3D model of the cylindrical chamber (3” OD constraint) Design internal helical grooves (pitch, depth, and angle optimization) to induce stable swirl flow Ensure grooves enhance vortex strength without excessive pressure drop or blockage Incorporate tangential inlet / outlet positioning for effective vortex generation Perform CFD validation (ANSYS/Fluent) to analyze velocity, pressure, and vortex core formation Iterate design for manufacturability (3D printing or molding feasibility) Deliverables: Fusion 360 CAD files (parametric design) STL/STEP files for prototyping CFD results with velocity and pressure contours Design report with key parameters (groove pitch, swirl intensity, pressure drop) Timeline: To be determined after discussing full requirements. Budget: Open to negotiation based on scope. Looking forward to collaborating on this project. Let’s connect to discuss further. Best regards, Arati M.
₹1.050 INR em 7 dias
6,2
6,2

Hi With 7+ years of experience in mechanical design and fluid-based systems, I can design your vortex chamber with optimized internal flow and manufacturable geometry. I’ll create the cylindrical chamber with 3-start helical grooves, tangential inlet, and top outlet, ensuring strong swirl formation, minimal losses, and proper clearance around the bottle. The design will be practical for CNC fabrication with smooth internal transitions. You’ll receive 3D CAD (STEP/STL), 2D drawings, and assembly with bottle placement, all clean and ready for prototyping. Thanks
₹4.000 INR em 2 dias
4,9
4,9

Dear Client, I am excited to submit my proposal for designing your cylindrical vortex chamber for vortex-based cooling/mixing applications. With my background in Agricultural Engineering and hands-on experience in CAD design, fluid systems, and fabrication, I can deliver a highly functional and manufacturable design tailored to your specifications.
₹999 INR em 2 dias
0,0
0,0

Hi, I reviewed your vortex chamber project and I understand the goal clearly — generating a strong and stable swirling flow in an annular region around the bottle using a tangential inlet and internal helical guidance. I am a mechanical engineering student with hands-on experience in fluid dynamics, CAD design (SolidWorks / Fusion 360), and internal flow systems. I have also worked on flow-related projects, including compressor and aerodynamic designs. For your system, I would approach it as follows: * Optimize the tangential inlet angle to maximize swirl strength * Design 3-start helical grooves to maintain axial + rotational flow along full height * Ensure uniform velocity distribution in the annular gap (avoiding dead zones) * Keep the design manufacturable (CNC-friendly and smooth internal transitions) I can provide: ✔ 3D CAD model (STEP / STL) ✔ 2D detailed drawings ✔ Assembly with bottle placement ✔ Design optimized for manufacturing If needed, I can also support CFD-based validation as an additional step. I’m mainly interested in building long-term collaboration, so I’d be happy to start with this project. Looking forward to working with you. Best regards, Hakan
₹1.050 INR em 14 dias
0,0
0,0

Quick question — How important is optimal water flow in achieving the desired vortex effect for your 3” OD bottle cooling/mixing setup? With my expertise in Fluid Dynamics and CFD, I can design a vortex flow chamber with precisely calculated internal helical grooves to ensure uniform swirling flow and minimal pressure losses. By utilizing my experience in SolidWorks for precise mechanical design, I will create a durable and manufacturable chamber suitable for CNC machining. Let's discuss further details to bring your vortex cooling system to life seamlessly.
₹1.500 INR em 7 dias
0,0
0,0

Hello, I can design this vortex chamber as a clean, manufacturable 3D CAD model with proper internal helical grooves, tangential inlet, top outlet, and bottle placement inside the annular flow space. I understand the key design requirements: - 76 mm bottle OD inside the chamber - chamber ID around 100–110 mm - 280 mm chamber height - 3-start internal helical grooves - groove depth about 3 mm and width about 6 mm - helix angle near 20° - tangential side inlet - top central outlet - strong and uniform swirling flow around the bottle - practical geometry suitable for CNC machining or real fabrication My approach will be to develop the chamber around the annular flow region so the bottle remains easily insertable/removable while maintaining the required clearance and flow performance. I can deliver a well-organized CAD model and dimensioned 2D drawings in a professional engineering format. Deliverables: - 3D CAD model - STEP / STL export - 2D dimensioned drawings - assembly showing bottle placement - source design file in SolidWorks or Fusion 360 I am a mechanical engineer and I work with mechanical design, CAD modeling, and engineering-focused technical deliverables. I can start immediately. Best regards, Daniel
₹1.200 INR em 5 dias
0,0
0,0

Pune, India
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