flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

Harvard debuts HouseZero as a possible response to making existing buildings more efficient

Energy Efficiency

Harvard debuts HouseZero as a possible response to making existing buildings more efficient

Hundreds of embedded sensors will inform energy use reduction research.


By John Caulfield, Senior Editor | December 5, 2018

HouseZero is designed to test systems whose installation would improve the performance of existing buildings that currently account for two-fifths of America's annual energy usage. Image: Michael Grimm

The Harvard Center for Green Buildings and Cities (CGBC) has completed the retrofitting of its 4,600-sf headquarters in Cambridge, Mass., built in 1924, into a living laboratory called HouseZero, whose design is driven by ambitious performance targets that include nearly zero energy use for heating and cooling, zero electrical lighting during the day, operating with 100% natural ventilation, and producing zero carbon emissions.

Snohetta was this project’s chief architect, and Skanska Teknikk Norway its lead energy engineer.

A prototype, HouseZero has been set up to address a chronic problem within the built environment: inefficient existing structures. The building inventory in the U.S. is estimated to account for 40% of the country’s energy consumption, with 25% of that usage attributed to housing alone. The annual costs of residential energy consumption are enormous: $230 billion for heating, cooling and powering the nation’s 113.6 million households.

CGBC, at the Harvard Graduate School of Design, has embedded hundreds of sensors connected by several miles of wiring within each component of HouseZero, from which it will draw data points that inform its researchers about the building’s behaviors. These data will be the basis of computational simulations for fuel research that could help the Center develop new systems and algorithms that promote energy efficiency, health, and sustainability.

The goal of HouseZero is to create a blueprint for reducing energy demands and increasing cost savings for property owners. “HouseZero challenged us to rethink the conventions of building design and operation to enhance lifelong efficiency and quality of life for occupants,” says Ali Malkawi, founding director of CGBC, and creator and leader of the HouseZero project.

An example of this rethinking is natural ventilation that is controlled by a window actuation system that employs sophisticated software and sensors arrays to automatically open and close windows to maintain a quality internal environment throughout the year. The building itself will strive for best possible comfort. However, Malkawi notes, a window can always be opened manually to ensure individual comfort.

HouseZero’s third floor features a flexible, highly-controlled and monitored experimental space—dubbed the LiveLab—that’s hardwired to the building’s energy exchange system. The space will allow for the testing, swapping, and optimization of new technologies. An immediate goal is to beta test new technologies that can eventually replace the building’s ground source heat pump for peak conditions.

 

HouseZero is naturally ventilated, and designed to use only natural lighting during the daytime hours. Image: Michael Grimm

 

The building will also be used to research how structures connect with and respond to its natural environment. Its envelope and materials were designed to interact with the seasons and the exterior environment. The building, according to CGBC, will adjust itself to reach thermal comfort for its occupants.

HouseZero will achieve zero net energy with the help of a rooftop PV array that provides renewable electrical energy for the heat pump as well as for energy required by user equipment. A battery system is employed for night time use and low-sun conditions.

To meet proposed emission cuts of the Paris agreement, HouseZero will offset the hidden emissions generated throughout the building’s anticipated 60-year life cycle, from the fabrication and transport of building materials and construction processes, to maintenance and decommissioning.

The rest of the renovation team on this project included Columbia Construction (CM), Silman Associates (SE), BR+A (MEP/FP/lighting), Bristol Engineering (CE), WindowMaster (BAS/Controls/Natural Ventilation systems), Brekke & Strand Akustikk (acoustrics), Jensen Hughes (code and accessibility consultant), Haley & Aldrich (geotechnical engineer), Syska Hennessy (vertical transportation), Kalin Associates (specifications), Siemens Building Technologies (security systems), Solect Energy (photovoltaic systems), Reed Hilderbrand (landscape architect), Harvard Planning and Project Management; CSL Consulting (project management), and Harvard Graduate School of Design (operations support).

Related Stories

| Feb 28, 2012

Roofing contractors recognized for workmanship

Sika Sarnafil announces Project of the Year winners; competition highlights visually stunning, energy efficient, and sustainable roofs.

| Feb 28, 2012

LUMEnergi names Weinbaum president and CEO

Weinbaum’s experience spans communications, nanotechnology, electronics components, consumer products, semiconductors, software, wireless and lighting.

| Feb 28, 2012

Griffin Electric completes Medical University of South Carolina project

The 210,000-sf complex is comprised of two buildings, and houses research, teaching and office areas, plus conference spaces for the University.

| Feb 22, 2012

Siemens earns LEED certification for Maryland office

The Beltsville facility, which also earned the ENERGY STAR Label for energy performance, implemented a range of energy efficiency, water conservation and sustainable operations measures as part of the certification process.

| Feb 21, 2012

SMPS announces Build Business 2012 keynote speakers

National conference set for July 11–13 in San Francisco.

| Feb 20, 2012

Comment period for update to USGBC's LEED Green Building Program now open

This third draft of LEED has been refined to address technical stringency and rigor, measurement and performance tools, and an enhanced user experience.

| Feb 17, 2012

Tremco Inc. headquarters achieves LEED Gold certification

Changes were so extensive that the certification is for new construction and not for renovation; officially, the building is LEED-NC.

| Feb 16, 2012

Summit Design + Build begins build-out for Emmi Solutions in Chicago

The new headquarters will total 20,455 sq. ft. and feature a loft-style space with exposed masonry and mechanical systems, 15 foot clear ceilings, two large rooftop skylights and private offices with full glass partition walls.

| Feb 16, 2012

4.8-megawatt solar power system completed at Jersey Gardens Mall

Solar array among the largest rooftop systems in North America.

boombox1
boombox2
native1

More In Category



Glass and Glazing

The next generation of thermal glazing: How improving U-value can yield energy savings and reduce carbon emissions

The standards for energy-efficient construction and design have been raised. Due to the development of advanced low-e coatings for the interior surface and vacuum insulating technologies, architects now have more choices to improve U-values wherever enhanced thermal performance is needed to create eco-friendly spaces. These options can double or even triple thermal performance, resulting in annual energy savings and a positive return on carbon.


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