SR&ED Case Study: Earthquake Engineering

Background

An engineering firm was retained to seismically retrofit a heritage building with an irregular structural layout that fell outside the configurations addressed by standard seismic retrofit guidelines.

The Challenge

Standard retrofit methods assumed regular structural geometries, and it was unclear whether any combination of reinforcement techniques could achieve the required seismic performance without compromising the building’s heritage structural elements.

Technological Uncertainty

It was not known in advance whether a retrofit approach could meet current seismic performance targets given the building’s irregular geometry and heritage constraints, or whether the interaction between reinforced and original structural elements could be reliably predicted using standard analysis methods.

Experimental Development

The team developed and tested multiple structural modeling approaches to predict the building’s seismic response, iterating on reinforcement configurations and validating predictions against instrumented load testing on representative structural elements.

What Failed?

An initial reinforcement configuration based on standard retrofit guidance produced unpredictable load paths in structural modeling, revealing that the irregular geometry required a custom analysis approach rather than standard code-based methods.

Technological Advancement

The team developed a custom structural analysis and reinforcement approach validated through load testing, generating new engineering knowledge about seismic retrofit performance for irregular heritage structures not addressed by standard guidelines.

Potentially Relevant SR&ED Activities

  • Development of custom structural modeling approaches for irregular geometry
  • Iterative reinforcement configuration testing and load validation
  • Comparative analysis of predicted versus tested structural response

What Would Generally Not Qualify

Applying the finalized, validated retrofit design to construction using standard construction methods would be routine implementation and would not itself qualify.

Documentation

Structural modeling iterations, load test results, engineering analysis reports comparing predicted and tested performance, and design change records would support this claim.

About The Author

Dale Doering

Dale Doering is the owner of SRED Consultants Inc., helping businesses navigate the complexities of Scientific Research and Experimental Development (SR&ED) claims. With a strong understanding of the technical and interpretive requirements of the SR&ED program, Dale works with companies to identify eligible projects, document technological challenges, and clearly demonstrate the systematic experimentation or analysis undertaken to achieve advancement. His approach focuses on translating complex technical work into well-supported SR&ED claims, helping clients maximize eligible opportunities while maintaining a clear understanding of the program’s requirements.

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Frequently Asked Questions

Why did this seismic retrofit project involve technological uncertainty?

Standard guidelines assume regular structural geometries. Because the heritage building had an irregular layout, it was unknown whether standard analysis methods could accurately predict the interaction between old and new structural elements, or if performance targets could be met without damaging heritage features.

The engineering team created and tested multiple structural modeling approaches to forecast the building’s seismic response. They iterated through various reinforcement configurations and validated their predictions using instrumented load testing on representative elements.

An initial reinforcement design based on standard guidance resulted in unpredictable load paths during modeling. This demonstrated that code-based methods were inadequate and a custom analytical approach was required.

The team generated new engineering knowledge regarding seismic retrofits for irregular heritage structures by creating a custom structural analysis and reinforcement method validated by load testing.

Applying the finalized, validated design during actual construction using standard construction practices constitutes routine implementation and would not qualify for SR&ED.

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