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Conference Recordings

Published
July 23, 2024

Planning, Designing, and Delivering a Fully-electric Dormitory in Toronto

Buildings are a major source of carbon emissions.
Abstract: Buildings are a major source of carbon emissions. Campuses need solutions for meeting rigorous energy goals while capturing programmatic needs, improving occupant health and wellness, and meeting bottom-line financial requirements. What are the key steps in planning and delivering a fully-electric, highly-sustainable student residence, dining, and services building? Using the Harmony Commons at the University of Toronto-Scarborough (UTSC) as a case study, we'll share planning perspectives from administrative, financial, design, and construction standpoints. This session will raise awareness of available solutions for planning and building an all-electric building and provide a pathway for success through integrated planning.

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Conference Presentations,Conference Recordings

Published
July 23, 2024

Complexity and Contradiction: Integrating Decarbonization Planning and Actions

Campus decarbonization requires flexible and adaptable approaches at all scales. Determining the appropriate mix of action plans helps campuses prepare for an increasing number of existing building performance and carbon reduction policies.
Abstract: Campus decarbonization requires flexible and adaptable approaches at all scales. Determining the appropriate mix of action plans helps campuses prepare for an increasing number of existing building performance and carbon reduction policies. The University of Minnesota's (U of M) multi-campus system, one of the largest in the U.S., is planning and taking actions to become net zero. This unconventional approach addresses decarbonization across regional climates, campus-systems, and building scales. In this session, we'll provide transferrable decarbonization planning processes, best practices, and lessons learned from actions across geographical regions, diverse campus-wide energy systems, and existing facilities net zero strategies.

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Conference Presentations

Published
July 23, 2024

Integrated Campus Master Planning for Unprecedented Capital Improvements

Universities are complex organizations that must align many different types of plans to maximize success.
Abstract: Universities are complex organizations that must align many different types of plans to maximize success. Integrated planning is vital to the master planning process because it requires support of all university constituencies. This session will describe how integrated planning and the development and implementation process of the East Tennessee State University (ETSU) master plan enabled ETSU to receive external support of more than $400 million for new and renovated capital projects over the past decade. We'll share how to plan across units, gain constituency support, take steps for project proposals that gain state support through competitive approval processes, and ensure the master plan is the foundation for university growth.

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Conference Presentations

Published
July 23, 2024

Leveraging Progressive Design-Build Delivery for Capital Projects

California recently passed legislation that permits its public entities to leverage Progressive Design-Build (PDB) delivery methods for capital projects.
Abstract: California recently passed legislation that permits its public entities to leverage Progressive Design-Build (PDB) delivery methods for capital projects. Other states are following suit, which will upend traditional planning and design processes. This session will outline necessary changes to pre-design planning processes and considerations to set projects up for success under a PDB delivery model. We'll share tools that will help you achieve better outcomes in your planning and design processes, including lessons learned from our own successes and challenges of using PDB as a project delivery method.

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Conference Presentations

Published
July 22, 2024

It’s Alive! Georgia Tech’s Bold, Comprehensive Campus Plan

Planning for certainty in higher education's unpredictable climate is impossible.
Abstract: Planning for certainty in higher education's unpredictable climate is impossible. The living framework, a geographic information system-based (GIS) tool, gives institutions agency to adjust scenarios and measure impacts against set metrics to facilitate decision making and guide capital plans. Georgia Institute of Technology (GT) applies this integrated planning process for long-term relevancy as campus priorities and external factors evolve, the impacts of hybrid work emerge, and unexpected ideas develop. You can use GT's innovative planning tools and strategies to meaningfully respond to dynamic stakeholder needs, manage institutional complexity, measure sustainability and growth outcomes, and build an effective governance model.

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Conference Presentations

Published
July 22, 2024

Reimagining OSU’s Campus Gateway District Through P3 Integrated Planning

In order to reimagine and capitalize on the potential of its campus gateway, The Ohio State University (OSU) employed specific planning and development processes to achieve successful outcomes.
Abstract: In order to reimagine and capitalize on the potential of its campus gateway, The Ohio State University (OSU) employed specific planning and development processes to achieve successful outcomes. A decade of public-private planning, land acquisition, rezoning, infrastructure upgrades, preservation, and academic and mixed-use development has transformed OSU's High Street entrance into an active and economically-viable campus gateway district. In this session we'll show you how to think beyond campus boundaries and traditional planning methods to transform town and gown interfaces.

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Conference Presentations

Published
July 22, 2024

Pursuing Carbon Neutrality Through Campus Master Planning

Climate commitments and carbon neutrality are becoming top priorities for many campuses.
Abstract: Climate commitments and carbon neutrality are becoming top priorities for many campuses. Since building engineering systems account for seventy-to-eighty percent of carbon production, all campus stakeholders are contributors to the future success of emissions goals. Despite established infrastructure, reliance on city utilities, high deferred maintenance, and financial constraints, the University of Louisville (UofL) is pursuing carbon neutrality and is on track to achieve a sixty percent reduction by 2030 and one hundred percent by 2050. This session will share necessary master planning strategies for pursuing carbon neutrality at the campus level, emphasizing the need for rigorous, multi-disciplinary stakeholder engagement.

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Planning for Higher Education Journal

Published
March 20, 2024

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Financial Planning for Central Utility Plant Decarbonization

Divide and Conquer the Lift Across Different Funding Options

Vital stakeholder feedback and consensus from various university departments reveal the proper approach to building issues. Institutions such as the University of North Dakota used technical planning to produce well-informed financial modeling and right-sized financial plans.

From Volume 52 Number 2 | January–March 2024

Abstract: Implementing central utility plant (CUP) decarbonization projects requires strategic financial planning, collaboration, and consensus-building from the entire university community. This article describes gathering support from facilities management, executive staff, and lawmakers through technical and financial charrettes. Learn how technical planning produces well-informed financial modeling and right-sized financial plans, and how shared planning between design teams and facility planners creates tailored funding options, including IRA incentives, to fund decarbonization.

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Conference Presentations

Published
March 18, 2024

Partnerships Forged in Planning Accelerate the Realization of Campus Vision

Effective partnering, internally and externally, and addressing enrollment growth, vitality, and safety during the planning process can make all the difference in plan implementation.
Abstract: Effective partnering, internally and externally, and addressing enrollment growth, vitality, and safety during the planning process can make all the difference in plan implementation. The 2017 University of Washington (UW) Bothell and Cascadia College campus master plan demonstrates how clear design principles and a flexible development framework drove rapid progress in realizing a campus vision in under six years. This session will help you identify how strong partnerships forged during a planning process can positively impact capital development, inform innovative capital funding strategies, and rapidly catapult your campus vision into reality.

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Conference Presentations

Published
March 5, 2024

Planning and Implementing the Sustainable Campus of the Future

Integrated planning and design that optimizes development capacity and leverages campus growth can help institutions achieve ambitious resilience goals for net-zero energy and resource conservation for a healthier, more sustainable environment. This session will discuss Princeton University’s ongoing efforts to support an ambitious capital plan, address deferred maintenance, advance climate solutions, and maximize use of campus lands. The path to a sustainable campus future will require institutions to go beyond business-as-usual planning to rethink campus infrastructure—particularly energy, stormwater, and landscapes—and activate high-performance sites and buildings.
Abstract: Integrated planning and design that optimizes development capacity and leverages campus growth can help institutions achieve ambitious resilience goals for net-zero energy and resource conservation for a healthier, more sustainable environment. This session will discuss Princeton University’s ongoing efforts to support an ambitious capital plan, address deferred maintenance, advance climate solutions, and maximize use of campus lands. The path to a sustainable campus future will require institutions to go beyond business-as-usual planning to rethink campus infrastructure—particularly energy, stormwater, and landscapes—and activate high-performance sites and buildings.

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