Collaborative Organizations

The Greenland Group of Companies (GREENLAND®) is an award-winning engineering and technologies enterprise. It includes private consulting firms, other businesses and internationally renowned research teams that collaborate on civil; environmental; alternative energy; and software engineering projects. These initiatives include Municipal Infrastructure; Water Resources; Asset Sustainability; Smart Water Grid; Low Impact Development; Landscape Architecture; and, Public-Private Partnerships (or P3s).
 
Our core business units are highlighted on our website. Each are privately-owned Canadian companies and provide innovative, high-quality products and services. As of January 2024, GREENLAND® is working collaboratively with the following organizations on projects of mutual interest:
 


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The Personnel

Direct principal involvement in every project gives clients experienced project management, communication, and technical expertise. From initial meetings through planning, project development, and construction, a GREENLAND® principal provides experienced co-ordination and assurance that projects receive the vital resources and hands-on expertise to make them successful. We also have respected relationships with governmental and regulatory decision-makers. This includes an unequaled grasp of environmental and development regulations in the Canadian market.


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Directors, Associates or Collaborators

 

R. Mark Palmer, P.Eng.

Jane Palmer, B.A.Sc.

Jim Hartman, P.Eng.

Peter Ellis, C.E.T.

Trevor Boston, M.Sc., P.Eng.

Brad Parker, P.Eng.

Ian McCutcheon, C.E.T

Adam McEwen, P.Eng.

Dr. Barry Evans

Dr. Hussein Abdullah, P. Eng.

Dr. Prasad Daggupati

Dr. Monique Dubé


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Social Media

 
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Client Testimonials

City of Greater Sudbury

Re: Capreol Downtown Waterfront CIP and Whitson River Waterway Trail

The City of Greater Sudbury has used the services of Greenland International Consulting Ltd. for the design of the Capreol Downtown Waterfront and the design of the Whitson River Waterway Trail.

Greenland delivered both projects on budget and provided consistency in its leadership from the landscape team. This stability in project management meant that we were working with a company who was familiar with the City’s project and consultation processes.

The Capreol Downtown Waterfront improvements were constructed in 2018 in time for the community’s 100th anniversary and incorporated the community’s railway history into the design. Greenland was skilled at integrating the wishes of the community into cohesive and creative designs that provide great connections between the Community’s main street areas and natural features.

Melissa Riou, MCIP, RPP
Senior Planner
Community and Strategic Planning
Growth and Infrastructure Department

City of Greater Sudbury
December 23, 2020
 

Lake Simcoe Region Conservation Authority

RE: Town of Innisfil (Community of Alcona) Flood Reduction Class Environmental Assessment

On behalf of the Lake Simcoe Region Conservation Authority (LSRCA), I would like to thank GREENLAND® International - Consulting Engineers for the excellent work undertaken to complete the Flood Reduction Class Environmental Assessment for the Community of Alcona. I also want to provide you our sincere appreciation for the support GREENLAND® provided both in-kind and financially which allowed the project to proceed. The approved strategy will now enable the LSRCA and Town of Innisfil to move forward with the next phase of the project so that the science-based, publicly supported solution, can be implemented to alleviate flooding impacting residents in Alcona as soon as possible. 

The project goal was to develop a sustainable - engineering solution to reduce significant annual flood damages currently occurring within the Community of Alcona (Town of Innisfil) and located within the Belle Aire Creek subwatershed. The project included a Class Environmental Assessment (EA) process with extensive public and other stakeholder consultations to advance a solution involving enhancing a wetland (green infrastructure) to provide flood mitigation. The project was proposed over a decade ago and was then adopted in the Town’s Master Drainage Plan as required under the Lake Simcoe Protection Plan. It is now one step closer to completion. 

The project deliverables produced by GREENLAND® included an Environmental Study Report (ESR) which now provides a science-based, well-engineered, thorough and systematic understanding of the chronic flooding that has impacted the affected settlement area in the Town of Innisfil. The Environmental Study Report (by GREENLAND®) also developed a proactive flood mitigation and resiliency plan that can now be implemented by the LSRCA, Town and other stakeholders. Finally, the project work plan satisfied requirements of Ontario's Class Environmental Assessment process and with an effective/collaborative spirit of a "public-private partnership” utilizing and ecosystem approach. The timelines to complete the project were very aggressive and I was pleased that GREENLAND® was able to complete the project on-time and budget. 

In conclusion, the role that GREENLAND® played to prepare the funding application for Canada’s National Disaster Mitigation Program; securing in-kind participation of the Intact Centre on Climate Adaptation (ICCA) at the University of Waterloo; providing in-kind Intellectual Property leveraging resources, and the financial contribution helped ensure the project was a complete success. I look forward to working with your company again on other partnerships of mutual interest and would be pleased to serve as professional references on similar projects. 

Michael Walters
(Former) Chief Administrative Officer
Lake Simcoe Region Conservation Authority

November 6, 2020
 

Agriculture and Agri-Food Canada

In March of 2013, Greenland International Consulting Ltd. completed a study for Agriculture and Agri-Food Canada to estimate nutrient loading in small catchment of about 177 square kilometers in the La Salle River watershed in southern Manitoba using the CANWET 4 model. Given uncertainties in some input data and model parameters, the preliminary results using the CANWET 4 model for baseline conditions of stream discharge, nutrient concentrations and loads were satisfactory in our project team as simulated values were within the range of observed values during the validation period.

This study suggests the CANWET 4 modeling approach could be used to predict changes to nutrient loads from changing land use scenarios in watersheds of this region.

Jason Vanrobaeys
Senior Land Resource Specialist
Agriculture and Agri-Food Canada

 

Corporate Partnerships & Associations

Partnerships and Accreditations