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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 5, 2024

Mapping Career Pathways from the Community College Campus to Regional Industry

Community colleges provide equitable access to higher education and pathways to sustainable careers. This session will show how Laurel Ridge Community College (LRCC) secured its role in the regional economy by aligning programs with community priorities and mapping students’ career pathways to inform facilities planning.
Abstract: Community colleges provide equitable access to higher education and pathways to sustainable careers. This session will show how Laurel Ridge Community College (LRCC) secured its role in the regional economy by aligning programs with community priorities and mapping students’ career pathways to inform facilities planning. Collaboration with industry and the community enabled LRCC to plan for expansion, relevant programs, and advanced facilities for science, technology, engineering, math, and health sciences (STEM-H). Join us to find out how an engaging, user-focused academic building can leverage both flexibility and specialization to support student success and attract partners.

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Conference Presentations

Published
March 5, 2024

Planning the AI Pipeline: Attracting Students With Three Future-focused Projects

Rapidly changing users and technology paired with long project timelines requires institutions to think ahead and implement innovative strategies for creating new, high-end engineering facilities.
Abstract: Rapidly changing users and technology paired with long project timelines requires institutions to think ahead and implement innovative strategies for creating new, high-end engineering facilities. Campus facilities must be nimble and ready to support multiple types of students. At the forefront of the AI technology revolution, George Mason University is undertaking large construction projects to serve a spectrum of undergraduate, masters, and doctoral students and create ecosystems of academic, industry, government, and community users. We’ll share planning strategies for AI technology learning spaces, practical solutions for designing future-focused facilities, and ways of promoting collaboration and connection across multiple communities.

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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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Example Plans

Published
November 13, 2023

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Example Plans

Published
June 30, 2023

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Example Plans

Published
May 17, 2023

Bridge Plan

Public Associate’s College (Arizona, United States)

From April 2020, the institution’s president led faculty and staff in a rigorous planning and exploration process to ensure that the college remained accessible and thriving through the pandemic and beyond. This bridge plan document details the action steps resulting from that process.

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Example Plans

Published
April 20, 2023

Master Plan

Public Doctoral/Research University (Michigan, United States)

Campus master plan document for a STEM-focused institution, deeply aligned with its strategic plan.

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Report

Published
October 26, 2022

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Smart Building, Smart Campus

This is a SCUP Fellow Research Project Final Report for the 2019–2020 program. This report explores the hypothesis that user-centered design would better address STEM student needs and could increase the likelihood of a broader adoption of remote labs.
Abstract: “Will innovative environments like a smart building expand STEM education and reach more underrepresented groups? If technology can support remote work, then why haven’t the previous proofs of concept become fully adopted?” The author pursued these questions through her SCUP Fellows research, exploring the hypothesis that user-centered design would better address STEM student needs and could increase the likelihood of a broader adoption of remote labs. Although the COVID-19 pandemic required a hard pivot in her research plan, she was able to leverage the world's new focus on remote activities and work with students to design a prototype mobile application for a digital, interactive twin of a STEM building on campus.

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