Solar Decathlon 2017: Team reACT

Permanent URI for this collectionhttp://hdl.handle.net/1903/24707

The 2017 Team Maryland developed reACT—short for Resilient Adaptive Climate Technology— demonstrating that homes can help people live in harmony with nature while at the same time harnessing her gifts of solar energy, water, and food. Designed with influences from Nanticoke and Maryland (Delmarva) tribal traditions, reACT includes a composting system, hydroponic garden, vegetable garden, and movable “living walls” covered in plants. The project also demonstrates urban farming—an important facet of self-sufficient living.

The Maryland team invites you to think of reACT as a living organism, with six modules performing vital functions. Systems that capture and process waste, water, and energy allow the house to operate with complete self-sufficiency, and the house’s living systems are fully disentangled from structure, so the house can adapt as occupants’ needs change—for example, by adding a new bedroom module. Much more than a “one-off,” reACT is intended to serve as a seminal prototype for a "house as a kit of parts" design concept. This kit consists of separate components and systems parts that can be efficiently manufactured, transported, assembled, and disassembled. The intention is to create a home-building kit that can be readily adapted to a range of clients, communities, construction technologies, and ecological environments.

Features and Technologies:

  • A mechanical core manages the flow of water, air, and energy.
  • A central courtyard with an operable glass roof and wall panels extends the living space and acts as a solar heat collector.
  • The house demonstrates urban and ancestral Native American farming with a hydroponic garden, exterior vegetable garden, and movable living walls.
  • A barrel composter turns food scraps into nutrients, and a composting toilet processes human waste.
  • A solar electric PV array with battery storage; rainwater and greywater collection and treatment systems; and a composting toilet allow the house to operate independently.
  • Designed with influences from Nanticoke and Maryland tribal traditions, the house incorporates materials that consider tribal environmental ethics.
  • An automated SmartHouse data collection and control system package enables residents to follow and learn from the data it collects and use energy wisely.

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Now showing 1 - 5 of 5
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    Solar Decathlon 2017 D-2: Schematic Design Summary
    (2016-04-29) Team reACT; Rockcastle, Garth C; Binder, Michael P; Adomaitis, Raymond A
    Mission Statement; Detailed strategy for winning the competition including a contest-by-contest breakdown; Design drawings and/or written description of the following systems and components, with identification of any unique systems and components that are being considered; Summary of potential innovations and non-standard elements being pursued; Description of public exhibit, communications, and outreach strategy; Computer-generated renderings of competition prototype design; Health and Safety Plan outline including approach to meeting OSHA training requirement; Identification of the licensed design professional expected to stamp structural documentation
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    Solar Decathlon 2017 D-8: Innovations Narrative
    (2017-08-10) Team reACT; Cossard, Patricia Kosco; Lagomarsino, Matt; Binder, Michael P; Rockcastle, Garth C; Adomaitis, Raymond A
    This report describes the team’s approach to innovation, from design to execution. It includes details on how and what research was conducted and how it informed decisions on design solutions. It discusses how the team integrated innovative sustainable strategies, products, and solutions, as well as how the house maximizes sustainability through the use of passive solar strategies, smart materials selection, and/or local considerations in the design. It explains how the innovations relate to and improve the lives of the selected target market. The environmental, social, and commercial benefits are described. Lastly, it answers the questions: Are the innovations durable relative to the life cycle of the house? Will the innovations improve or maintain occupant safety?
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    Solar Decathlon 2017 D-8: Complete Cost Analysis
    (2017-08-10) Team reACT; Andros, Whitney Paige; Rockcastle, Garth C; Binder, Michael P
    The complete cost estimate is included. The estimate’s appropriateness, professionalism, and level of completion is reviewed by a professional cost estimator. This is the exact estimated construction cost the cost-effectiveness with regard to meeting team and design goals.
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    Solar Decathlon 2017 D-1: Project Management Plan
    (2016-03-31) Team reACT; Rockcastle, Garth C; Adomaitis, Raymond A; Binder, Michael P
    Project Management Plan that outlines your team structure, approach to the competition, general work schedule (including plan for continued progress over the summer of 2016), course integration, and fundraising schedules.
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    Solar Decathlon 2017 D-1: 100 Word Description
    (2016-03-31) Team reACT; Binder, Michael P; Rockcastle, Garth C; Adomaitis, Raymond A
    100 word description of team and goals for placement on Solar Decathlon website. First iteration.