flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

AIA selects 2016 Upjohn Research Initiative Projects

Building Technology

AIA selects 2016 Upjohn Research Initiative Projects

Grants awarded to initiatives that study various aspects of design within the built environment.


By AIA | April 21, 2017

Pixabay Public Domain

The jury for the American Institute of Architects (AIA) Upjohn Research Initiative, a grant program that supports applied research that advances design and professional practice, has announced the five projects selected to receive grants.

The purpose of this grant, now in its 10th year, is to provide base funds for applied research projects that advance professional knowledge and practice. The 18-month long project grant qualifies recipients to have their findings and outcomes published both electronically and in a nationally distributed publication. The total award of $100,000 will be spread across the selected proposals.  The jury, comprised of members of the AIA College of Fellows and Board Knowledge Committee, felt the process and deliberations were fully consistent with the double blind-peer review intent of the program. This double blind-peer review helps add an element of rigor to the process whereby proposals are debated on their own merits. The following five submissions were selected for funding:

 

A Circadian Daylight Metric and Design Assist Tool for Improved Occupant Health and Well-Being

Principal Investigator: Kyle Konis, AIA, Ph.D. (University of Southern California)

All zones within a building that do not regularly achieve the lighting conditions necessary for effective circadian stimulus can be labeled as biologically dark and considered as zones where regular occupancy may be problematic for health and well-being. The objective of this research is to develop a daylighting Metric and Design Assist Tool capable of assessing the circadian potential of architectural space. Procedures using annual, climate-based daylight analysis of eye-level light exposures will be developed to map the circadian effectiveness of a given space. The Design Assist Tool can be used to assess and differentiate the performance of various daylighting strategies during the design phases of a project or to quantify the circadian effectiveness of existing spaces.

 

Post Natural Material Assemblies

Principal Investigators: Meredith L. Miller (University of Michigan), Thomas Moran (University of Michigan)

Plastiglomerates, formed from the waste polymers of post-consumer plastic fusing with sand, rock, and other inorganic materials, suggest a new approach to sustainable building materials. This proposal builds on collaborative work of the research team to investigate the architectural potential of plastiglomerates with the intent to build a full-scale architectural assembly made from thermocast units. By combining the inherent properties of synthetic plastics and stone, these post natural “masonry” units can be inexpensive, durable, insulating, and locally sourced. The proposed project aims to enhance the plastic-waste-to-building-element workflow and its adaptability to on-site production. 

 

Smart Cities: Population Health and the Evolution of Housing

Principal Investigator: Joe Colistra, AIA (University of Kansas)

This project will develop a multifamily housing prototype that demonstrates best practices in aging-in-place strategies and tele-health technology. It will investigate prefabricated construction techniques that can be used to bring population health strategies to the affordable housing market. The research team will work with construction industry partners as well as health professionals to test various sensor-enabled assemblies. Some of the more advanced technologies will include motion sensors/fall detection, gait analysis, automated LED smart-spectrum lighting, smart mirrors, smart toilets, sleep sensors, and automated medicine dispensers.

 

SMART Tiles: Novel Application of Shape Memory Polymers for Adaptive Building Envelopes

Principal Investigator: Dale Clifford (California State Polytechnic University)

Collaborators: Kelle Brooks (California State Polytechnic University), John Brigham, Ph.D. (Durham University), Richard Beblo, Ph.D. (University of Dayton Research Institute)

This project addresses the challenges of designing adaptive façade systems with ‘dynamic’ or ‘smart’ materials. The team will design latitude-specific self-shading building tiles that apply the attributes of a class of polymers with shape memory characteristics. The SMART Tiles are intended to wrinkle and reposition themselves in response to incoming solar radiation to deliver self-shading and energy harvesting performance. Stepping into the emergent field of building self-regulation with programmable matter, this project joins the shift towards a built environment that passively adapts to subtle environmental fluctuations of temperature, light, humidity, and pressure via material properties. Equally important to the team is that the dynamic aspects of the SMART Tiles appeal to the imagination and viscerally (re)connect a building occupant to the environment.

 

TrashWalls

Principal Investigators: Taiji Miyasaka (Washington State University), Robert Richards (Washington State University), Vikram Yadama (Washington State University)

Collaborators: Rex Hohlbein (Facing Homelessness; Rex Hohlbein Architects), David Drake (Washington State University)

TrashWalls, fabricated using materials harvested from the local solid waste stream, are designed to reduce heat loss from rented apartments, improve the comfort of those spaces during hot or cold weather, and save renters money on their utility bills, while reducing pollution. The purpose of this project is to design, construct, and examine prototypes of interior insulating walls that are attractive, have an R-value of R-10 (US) or greater, cost less than ten cents per square foot, are built from recycled waste materials, are easily manufactured, fire safe, and can accommodate windows. The research team, a collaboration between architecture and engineering, seeks applications of TrashWalls to backyard transitional homes for people who are homeless in Seattle. Testing will occur in a lab setting and at an urban site.


You can see learn more about previous Upjohn Research Initiative projects here.

Related Stories

Mass Timber | Jan 27, 2023

How to set up your next mass timber construction project for success

XL Construction co-founder Dave Beck shares important preconstruction steps for designing and building mass timber buildings.

AEC Tech Innovation | Jan 24, 2023

ConTech investment weathered last year’s shaky economy

Investment in construction technology (ConTech) hit $5.38 billion last year (less than a 1% falloff compared to 2021) from 228 deals, according to CEMEX Ventures’ estimates. The firm announced its top 50 construction technology startups of 2023.

Concrete | Jan 24, 2023

Researchers investigate ancient Roman concrete to make durable, lower carbon mortar

Researchers have turned to an ancient Roman concrete recipe to develop more durable concrete that lasts for centuries and can potentially reduce the carbon impact of the built environment.

AEC Tech | Jan 19, 2023

Data-informed design, with Josh Fritz of LEO A DALY

Joshua Fritz, Leo A Daly's first Data Scientist, discusses how information analysis can improve building project outcomes. 

AEC Tech Innovation | Jan 14, 2023

CES recognizes a Dutch firm’s wearable technology for construction management

The firm’s TokenMe product offers construction managers a real-time crowd- and asset-tracking solution via low-power, location-aware radio and RFID tags and multiple sensors through which data are processed with cloud-based artificial intelligence.

Sustainability | Jan 9, 2023

Innovative solutions emerge to address New York’s new greenhouse gas law

New York City’s Local Law 97, an ambitious climate plan that includes fines for owners of large buildings that don’t significantly reduce carbon emissions, has spawned innovations to address the law’s provisions.

Sponsored | Resiliency | Dec 14, 2022

Flood protection: What building owners need to know to protect their properties

This course from Walter P Moore examines numerous flood protection approaches and building owner needs before delving into the flood protection process. Determining the flood resilience of a property can provide a good understanding of risk associated costs.

Mass Timber | Dec 1, 2022

Cross laminated timber market forecast to more than triple by end of decade

Cross laminated timber (CLT) is gaining acceptance as an eco-friendly building material, a trend that will propel its growth through the end of the 2020s. The CLT market is projected to more than triple from $1.11 billion in 2021 to $3.72 billion by 2030, according to a report from Polaris Market Research.

75 Top Building Products | Nov 30, 2022

75 top building products for 2022

Each year, the Building Design+Construction editorial team evaluates the vast universe of new and updated products, materials, and systems for the U.S. building design and construction market. The best-of-the-best products make up our annual 75 Top Products report. 

K-12 Schools | Nov 30, 2022

School districts are prioritizing federal funds for air filtration, HVAC upgrades

U.S. school districts are widely planning to use funds from last year’s American Rescue Plan (ARP) to upgrade or improve air filtration and heating/cooling systems, according to a report from the Center for Green Schools at the U.S. Green Building Council. The report, “School Facilities Funding in the Pandemic,” says air filtration and HVAC upgrades are the top facility improvement choice for the 5,004 school districts included in the analysis.

boombox1
boombox2
native1

More In Category



Engineers

Navigating battery energy storage augmentation

By implementing an augmentation plan upfront, owners can minimize potential delays and unforeseen costs when augmentation needs to occur, according to Burns & McDonnell energy storage technology manager Joshua Crawford.


3D Printing

3D-printed construction milestones take shape in Tennessee and Texas

Two notable 3D-printed projects mark milestones in the new construction technique of “printing” structures with specialized concrete. In Athens, Tennessee, Walmart hired Alquist 3D to build a 20-foot-high store expansion, one of the largest freestanding 3D-printed commercial concrete structures in the U.S. In Marfa, Texas, the world’s first 3D-printed hotel is under construction at an existing hotel and campground site.

halfpage1

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021