flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

New system from MIT may help buildings monitor stress and damage over time

Building Technology

New system from MIT may help buildings monitor stress and damage over time

The computational model is being tested on MIT’s Green Building.


By David Malone, Associate Editor | November 10, 2016

Photo: Lucy Li, Wikimedia Commons

A new computational model developed by researchers at MIT takes ambient vibrations and analyzes them to pick out features in the noise to give indications of a building’s stability, MIT News reports. The feedback can then be used to monitor the building for damage or mechanical stress. Think of it as getting your blood pressure or cholesterol checked regularly to find warning signs of future problems before they become too dire.

The model is being tested on the tallest building on the MIT campus, the 21-story Green Building, a research building made of reinforced concrete. The researchers attached 36 accelerometers to selected floors from the building’s foundation to its roof to record vibrations.

But in order for these recordings to actually serve a purpose, the team needed to figure out how to take the data and link it to the health characteristics of the building, according to Oral Buyukozturk, a professor in MIT’s Department of Civil and Environmental Engineering.

Their solution was to create a computer simulation of the Green Building as a finite element model. MIT News describes this type of model as “a numerical simulation that represents a large physical structure, and all its underlying physics, as a collection of smaller, simpler subdivisions.” The researchers then added parameters to the model, such as the strength and density of concrete walls, slabs, beams, and stairs in each floor.

With all of this done, the researchers are able to then add something like the vibration caused by a passing truck to the simulation in order to see how the model predicts the building and its elements would respond. To make the model as accurate as possible, data from the Green Building's accelerometers was mined and analyzed for key features relating to the building’s stiffness and other indicators of health.

The more data that is added over time, the more intelligent the system becomes. The researchers say they are confident that any real life damage in the building will show up in the system.

This type of model will be especially useful to immediately see, after an event such as an earthquake, if and where there is damage to the building.

The researchers’ vision is for a system such as this to be outfitted on all tall buildings, making them intelligent enough to monitor their own health and provide increased resiliency.

Related Stories

Building Technology | Apr 24, 2023

Let’s chat about AI: How design and construction firms are using ChatGPT

Tech-savvy AEC firms that already use artificial intelligence to enhance their work view the startling evolution of ChatGPT mostly in a positive light as a potential tool for sharing information and training employees and trade partners. However, the efficacy of ChatGPT is likely to rest on the construction industry’s aggregation of quality data that, until recently, has been underwhelming for getting the greatest bang from AI and machine learning.

Design Innovation Report | Apr 19, 2023

HDR uses artificial intelligence tools to help design a vital health clinic in India

Architects from HDR worked pro bono with iKure, a technology-centric healthcare provider, to build a healthcare clinic in rural India.

3D Printing | Apr 11, 2023

University of Michigan’s DART Laboratory unveils Shell Wall—a concrete wall that’s lightweight and freeform 3D printed 

The University of Michigan’s DART Laboratory has unveiled a new product called Shell Wall—which the organization describes as the first lightweight, freeform 3D printed and structurally reinforced concrete wall. The innovative product leverages DART Laboratory’s research and development on the use of 3D-printing technology to build structures that require less concrete. 

Contractors | Apr 10, 2023

What makes prefabrication work? Factors every construction project should consider

There are many factors requiring careful consideration when determining whether a project is a good fit for prefabrication. JE Dunn’s Brian Burkett breaks down the most important considerations. 

Smart Buildings | Apr 7, 2023

Carnegie Mellon University's research on advanced building sensors provokes heated controversy

A research project to test next-generation building sensors at Carnegie Mellon University provoked intense debate over the privacy implications of widespread deployment of the devices in a new 90,000-sf building. The light-switch-size devices, capable of measuring 12 types of data including motion and sound, were mounted in more than 300 locations throughout the building.

Cladding and Facade Systems | Apr 5, 2023

Façade innovation: University of Stuttgart tests a ‘saturated building skin’ for lessening heat islands

HydroSKIN is a façade made with textiles that stores rainwater and uses it later to cool hot building exteriors. The façade innovation consists of an external, multilayered 3D textile that acts as a water collector and evaporator. 

Project + Process Innovation | Mar 22, 2023

Onsite prefabrication for healthcare construction: It's more than a process, it's a partnership

Prefabrication can help project teams navigate an uncertain market. GBBN's Mickey LeRoy, AIA, ACHA, LEED AP, explains the difference between onsite and offsite prefabrication methods for healthcare construction projects.

Building Tech | Mar 14, 2023

Reaping the benefits of offsite construction, with ICC's Ryan Colker    

Ryan Colker, VP of Innovation at the International Code Council, discusses how municipal regulations and inspections are keeping up with the expansion of off-site manufacturing for commercial construction. Colker speaks with BD+C's John Caulfield.

Student Housing | Mar 13, 2023

University of Oklahoma, Missouri S&T add storm-safe spaces in student housing buildings for tornado protection

More universities are incorporating reinforced rooms in student housing designs to provide an extra layer of protection for students. Storm shelters have been included in recent KWK Architects-designed university projects in the Great Plains where there is a high incidence of tornadoes. Projects include Headington and Dunham Residential Colleges at the University of Oklahoma and the University Commons residential complex at Missouri S&T.

AEC Innovators | Mar 3, 2023

Meet BD+C's 2023 AEC Innovators

More than ever, AEC firms and their suppliers are wedding innovation with corporate responsibility. How they are addressing climate change usually gets the headlines. But as the following articles in our AEC Innovators package chronicle, companies are attempting to make an impact as well on the integrity of their supply chains, the reduction of construction waste, and answering calls for more affordable housing and homeless shelters. As often as not, these companies are partnering with municipalities and nonprofit interest groups to help guide their production.

boombox1
boombox2
native1

More In Category




Contractors

Contractors expect to spend more time on prefabrication, according to FMI study

Get ready for a surge in prefabrication activity by contractors. FMI, the consulting and investment banking firm, recently polled contractors about how much time they were spending, in craft labor hours, on prefabrication for construction projects. More than 250 contractors participated in the survey, and the average response to that question was 18%. More revealing, however, was the participants’ anticipation that craft hours dedicated to prefab would essentially double, to 34%, within the next five years.

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