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Planning for Higher Education Journal

Published
September 1, 2020

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From Lagging to Leading

Bentley University and Boston College Sack Stereotypes About Athletic Facility Sustainability and Energy Performance

An integrated team of cross-discipline collaborators accomplished their objective of creatively reimagining athletic facilities at two institutions for the greater good of each campus and its community. Using sustainable and cost-efficient design opportunities and aligned technologies, they succeeded in countering the outdated stereotype of the athletic building as a lagging energy performer.

From Volume 48 Number 4 | July–September 2020

Abstract: Athletic buildings suffer from a long-held image problem. Fieldhouses, hockey and basketball arenas, and other large indoor competition and practice facilities traditionally lag other campus spaces in energy performance and sustainability. However, because of the size, scale, and location of athletic buildings, there is significant untapped potential as campus planners seek creative ways to implement change initiatives. The authors share lessons learned from their recent experiences applying imaginative, cost-efficient approaches to sports and recreation buildings. In addition to reimagining how the facilities can contribute to the greater good of the entire campus, they demonstrate the value of early cross-discipline collaboration and problem-solving to fulfill shared aspirations.

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Conference Presentations

Published
July 14, 2019

2019 Annual Conference | July 2019

The Living Community Challenge, Master Planning, and a Bayfront Research Campus

We will demonstrate how we used an LCC-focused master planning process for a bayfront site to integrate facilities conditions, programming, site analyses, impacts of climate change and sea level rise, and net-positive energy and water.
Abstract: This session will discuss how we used the Living Community Challenge (LCC) to frame master planning for San Francisco State University's Romberg Tiburon Campus. LCC is a next-generation approach to sustainable and resilient planning and design, with aggressive energy and water goals. We will demonstrate how we used an LCC-focused master planning process for a bayfront site to integrate facilities conditions, programming, site analyses, impacts of climate change and sea level rise, and net-positive energy and water for more healthy and productive research and learning environment.

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Conference Presentations

Published
July 14, 2019

2019 Annual Conference | July 2019

Risk Management and Campus Resilience

With climate change bringing dramatic demographic, economic, and weather changes, universities and colleges must be prepared for risks to the campus's buildings, landscapes, and infrastructure that could disrupt operations. This session explores the intertwined concepts of risk management and resilience planning.
Abstract: With climate change bringing dramatic demographic, economic, and weather changes, universities and colleges must be prepared for risks to the campus's buildings, landscapes, and infrastructure that could disrupt operations. This session explores the intertwined concepts of risk management and resilience planning. You will learn about best practices in campus resilience planning, and try a simple resilience assessment tool for identifying, prioritizing, and planning for potential risks. You can take this useful Excel-based tool back to your institution to identify the top risks that should be prioritized in campus planning efforts.

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Conference Presentations

Published
March 20, 2019

2019 Mid-Atlantic Regional Conference | March 2019

The Design and Planning Relevance Revolution

Across field after field, research demonstrates the impact of the built environment on climate change and the essential role retooling the built environment must play in addressing it. This keynote will articulate the compelling 21st century challenges and opportunities for the design and planning fields in higher education.
Abstract: 2019 presents a changing landscape as concerns mount over environmental decline, increasing atmospheric carbon, and competition for resources. Across field after field, research demonstrates the impact of the built environment on climate change and the essential role retooling the built environment must play in addressing it. Globally, a massive reallocation of resources has begun as nations commit to addressing climate change and the social and economic equity challenges confronting our increasingly crowded planet.

To achieve Paris Agreement targets and advance the New Urban Agenda adopted at Habitat III, architects, planners, and owners must fundamentally transform how buildings are designed, constructed, and operated. Creative and courageous people are forging new pathways full of promise and hope.

Institutions of higher learning have always been laboratories for testing new approaches at multiple scales—building, campus, and institutional. This keynote will articulate the compelling 21st century challenges and opportunities for the design and planning fields in higher education.

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Planning for Higher Education Journal

Published
April 1, 2017

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Campus Energy Master Planning

A Road Map to Carbon-Neutral Institutions in Northern U.S. Latitudes

Higher education institutions can lead the way in reducing energy consumption and advancing carbon neutrality by starting with their on-campus facilities.

From Volume 45 Number 3 | April–June 2017

Abstract: The imperative for higher education institutions to dramatically reduce greenhouse gas emissions is driven by the energy required to sustain their campus facilities and by rapid, irreversible changes to the climate that threaten global infrastructures. This article provides a framework that comprehensively addresses campus facilities’ energy consumption reduction and conversion to renewable resources while helping building users become more aware of how their actions impact greenhouse gas emissions. Case studies illustrate how two different institutions developed campus energy master plans and set incremental goals toward carbon neutrality and net-zero fossil fuel energy consumption.

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