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CFD-Driven Impeller Design for Vacuum-Based Turbomachinery Prototype
freelance.caRural Sturgeon County, CanadaSystems Administrator
Sturgeon CountyMorinville, Alberta, Canada- Vancouver, BC (from $ 85,408 to $ 189,671 year)
- North Vancouver, BC (from $ 80,856 to $ 175,959 year)
- Greater Sudbury, ON (from $ 87,500 to $ 153,300 year)
- Greater Napanee, ON (from $ 87,500 to $ 153,300 year)
- High Level, AB (from $ 72,750 to $ 150,155 year)
- North York, ON (from $ 110,113 to $ 148,726 year)
- East York, ON (from $ 110,113 to $ 148,726 year)
- Vaughan, ON (from $ 143,720 to $ 148,612 year)
- St. John's, NL (from $ 72,750 to $ 148,456 year)
- Markham, ON (from $ 135,542 to $ 147,651 year)
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CFD-Driven Impeller Design for Vacuum-Based Turbomachinery Prototype
freelance.caRural Sturgeon County, Canada- Full-time
Project Description
Apex Concept Solutions is developing an early-stage proof-of-concept prototype based on a novel vacuum-driven turbomachinery concept . We are seeking an experienced mechanical engineer or small engineering consultancy to support the design, simulation, and feasibility assessment of a custom impeller and associated rotating components .
This is a practical, design-focused project , not academic research. The selected engineer will lead impeller geometry development, perform CFD-based performance evaluations, and provide high-level mechanical and structural guidance to support a functional prototype.
Due to the proprietary nature of the work, full functional details will be disclosed following execution of a confidentiality agreement (NDA). At a high level, the system involves high-flow, vacuum-driven operation in a non-traditional regime compared to conventional pumps or compressors.
Key Responsibilities
- Develop and refine custom impeller geometry optimized for vacuum-driven, high-flow operation
- Perform CFD simulations to evaluate flow behavior, efficiency, and operating characteristics
- Provide design guidance on blade pitch, curvature, diameter, tip speed, and operating RPM
- Identify performance and mechanical risks, including efficiency losses, cavitation risk, and structural limitations
- Conduct finite element analysis (FEM) or equivalent structural assessments for high-speed rotating components
- Support iterative refinement toward a viable proof-of-concept prototype
Ideal Background
This project is well-suited to engineers with experience in one or more of the following areas :
Engineers who enjoy solving non-standard engineering problems and working at the intersection of simulation and real-world hardware will be a strong fit.
Final compensation is flexible and will be determined based on experience, scope definition, and proposed technical approach.