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Conference Presentations

Published
July 14, 2019

2019 Annual Conference | July 2019

Decarbonize Your Campus Through Building Electrification

Abstract: The path to carbon neutrality is clear: electrify everything and procure renewable energy. How to get to 100% electric power is less clear. Stanford University has been focused on this challenge, committing to all-electric buildings by June 2019. This session will give attendees a clear road map and strategies for converting the energy your buildings use from gas to electric—whether the energy heats the building, glass beakers, or dinner.

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Conference Presentations

Published
March 20, 2019

2019 Mid-Atlantic Regional Conference | March 2019

Innovative Data Tools That Support Capital and Facilities Planning

In this session, we will discuss data strategies for capital and facilities planning that enable real-time mobile access to planning tools, automated project tracking, metrics, and building transparency in order to support the planning and execution process.
Abstract: Innovative leaders must promote and cultivate a data culture that informs decision making across an institution. In this session, we will discuss data strategies for capital and facilities planning that enable real-time mobile access to planning tools, automated project tracking, metrics, and building transparency in order to support the planning and execution process. Come learn about agile development of available open source tools that enable cost-effective data strategies, including automated processes, and the development and implementation of planning and execution tools.

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Free

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Conference Presentations

Published
March 8, 2019

2019 North Atlantic Regional Conference | March 2019

Repurposing Mid-Century Campus Buildings for a New Generation

In this session, we will explore how Binghamton University implemented a façade upgrade and high performance energy systems for deep energy retrofits for its Science IV building.
Abstract: Many college campus buildings were built in time of cheap, fossil fuel-based energy, making them now costly to operate and maintain and giving them a high carbon footprint. In this session, we will explore how Binghamton University implemented a façade upgrade and high performance energy systems for deep energy retrofits for its Science IV building. Come learn how you can use smart technologies and modest materials applied in creative ways to update similar building stock at your institution.

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Free

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Conference Presentations

Published
March 8, 2019

2019 North Atlantic Regional Conference | March 2019

Expanding Residential Accommodation With Limited New Construction

Come learn how a 2016 housing planning study that started with an inventory analysis quickly evolved into an ongoing program to add 100+ beds per year beginning in 2017.
Abstract: New dorm construction takes time and funding that often competes with the ongoing need to upgrade existing dorms. Despite limited resources, campus planning and capital programs teams are successfully doing both. Tufts University's first housing program since the 1970s is transforming the undergraduate residential experience two-fold: by rapidly increasing the on-campus bed supply in existing facilities and by renewing residential buildings. Come learn how a 2016 housing planning study that started with an inventory analysis quickly evolved into an ongoing program to add 100+ beds per year beginning in 2017.

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Free

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Conference Presentations

Published
March 8, 2019

2019 North Atlantic Regional Conference | March 2019

Green Gauges

A Design Methodology at Williams College

Come learn how to use the green gauges methodology at your institution and discover the cost per metric ton of avoided carbon over the operation life of a particular strategy.
Abstract: In this session we will discuss the green gauges methodology, which was developed to organize complex design information within a simple structure and help institutions invest in design strategies that serve environmental and financial goals. Design and construction teams will use this methodology to communicate strategies with stakeholders early in the process and provide consistent information regarding operational energy and the resulting carbon savings. Come learn how to use the green gauges methodology at your institution and discover the cost per metric ton of avoided carbon over the operation life of a particular strategy.

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Free

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Free

Planning for Higher Education Journal

Published
July 1, 2018

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Designing and Building Your Capital Project

Choosing the Method That’s Right for You

The first step in building your capital project is choosing the delivery method that best meets your institution’s needs and the project’s unique goals.

From Volume 46 Number 4 | July–September 2018

Abstract: Capital projects are designed and built in a number of ways. Each has its strengths and weaknesses, and each prescribes different roles for the owner, architect, and builder. The question is, which way or method best fits your institution’s criteria and project? This article presents a brief outline of the most popular methods by which projects are designed and built.

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Planning for Higher Education Journal

Published
January 1, 2018

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Nurturing Your Capital Project

The Path from Concept to Ribbon Cutting

By following the progression of steps needed to complete a typical capital improvement project detailed here, even the most complex project can be accomplished effectively and efficiently.

From Volume 46 Number 2 | January–March 2018

Abstract: In this second of a two-part series, the author details the progression of steps needed to complete a typical capital improvement project. There are a lot of moving parts, and the article carefully explains how each must mesh to achieve a satisfactory conclusion. Educators and administrators alike will benefit from this overview of procedures that many may not be familiar with. With this guidance, even the most complex project can be accomplished effectively and efficiently.

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Planning for Higher Education Journal

Published
July 1, 2017

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Is a Capital Project on Your Plate?

A Guide to Developing Effective Places for Teaching and Learning

Here are eight steps proven to help planners navigate the complexities and avoid the pitfalls that are too often part of the process when planning and funding capital projects.

From Volume 45 Number 4 | July–September 2017

Abstract: Do you have facility needs, like the need for more/improved space for instruction or infrastructure upgrades? Is it time to address deferred maintenance issues? Do you have reservations about venturing into unfamiliar territory? You’ll have to wrestle with some vexing matters—plan alternatives, big budgets, illusive funding sources, and an uninformed public.
Your concerns are valid. With a rich background as architectural firm principal and later as a community college project manager, the author has been through the drill. This article’s thoughtful advice details a project’s first phases—from initial concepts to developed projects with funding. It will head you toward success by helping to avoid the pitfalls.

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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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