Case Studies > Generating clean, low-cost solar power worldwide with SolidWorks

Generating clean, low-cost solar power worldwide with SolidWorks

Company Size
1,000+
Region
  • America
Country
  • United States
Product
  • SolidWorks Premium
  • SolidWorks Flow Simulation
  • eDrawings
Tech Stack
  • 3D Design Software
  • Computational Fluid Dynamics (CFD)
  • Structural Analysis Tools
Implementation Scale
  • Enterprise-wide Deployment
Impact Metrics
  • Cost Savings
  • Innovation Output
  • Productivity Improvements
Technology Category
  • Analytics & Modeling - Predictive Analytics
  • Application Infrastructure & Middleware - Data Visualization
  • Functional Applications - Product Lifecycle Management Systems (PLM)
Applicable Industries
  • Construction & Infrastructure
  • Renewable Energy
Applicable Functions
  • Product Research & Development
  • Quality Assurance
Use Cases
  • Predictive Maintenance
  • Process Control & Optimization
  • Remote Asset Management
Services
  • Software Design & Engineering Services
  • System Integration
About The Customer
SunEdison LLC, an MEMC company, is a leading provider of solar power solutions to commercial and governmental customers. The company installs rooftop solar systems and sells the electricity generated to host customers at a fraction of the cost of conventionally produced power. SunEdison serves a diverse range of clients, including retail stores like Kohl’s and Staples, governmental institutions, utilities, and real estate investment trusts. The company is committed to making solar power less costly and more accessible, thereby promoting the use of clean, renewable energy.
The Challenge
Lower solar power mounting-structure costs through the development of a more cost-efficient solar panel rack-mounting system for retail store applications.
The Solution
SunEdison implemented SolidWorks Premium 3D design and analysis software, along with SolidWorks Flow Simulation computational fluid dynamics (CFD) software, to create, prototype, and build a more innovative and effective solar power rack-mount design. The software's ease of use, support for an iterative approach, and integrated structural and fluid dynamics analysis capabilities were crucial in developing the new system. The design team explored different materials and ultimately chose Galvalume coated steel for its durability and cost-effectiveness. Using SolidWorks, they were able to iterate and validate the new Delta Rack solar panel rack-mounting concept, significantly reducing costs and development time.
Operational Impact
  • Cut solar panel mounting-structure costs by 80 percent.
  • Realized a 75 percent reduction in the development cycle.
  • Decreased the need for wind tunnel testing, saving time and money.
  • Improved design communications through the use of eDrawings.
  • Enhanced the ability to simulate and validate system performance using SolidWorks Flow Simulation.
Quantitative Benefit
  • Reduced mounting-structure costs from 50 cents to 10 cents per watt.
  • Achieved an 80 percent bottom-line cost reduction.
  • Reduced development cycle by at least 75 percent.

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