
GET receives Campus as a Lab grant at Princeton University

Stemming out of prior work with collaborators, CHAOS Lab, GET has received a grant to work with Princeton students and faculty to conduct real-world data capture and analysis of geothermal systems at the Lewis Center for the Arts.
We are grateful and excited for the opportunity to work with such high performing students and facilities!
Expanded research paper published in Building and Environment
"Configuration-aware representation for generalizable indoor airflow field surrogates under ceiling fan reconfiguration" led by collaborator Yiting Zhang of NUS has been published after completing peer review.
Many thanks to all co-authors for all of your hard work!
See Zhang's LinkedIn post for more information
Read the paper here.
Co-authored paper with CBE receives Best Paper at IAQVEC 2026
Jiwon Park, of CBE, presented our paper jointly authored paper "A simulation study on condensation risk in radiant cooling panels with elevated air movement."
Congratulations to all co-authors!
Read Jiwon Park's LinkedIn Post here.
Read the paper here.


Co-authored paper with NUS Researchers receives accolades
Collaborator Yiting Zhang, PhD student at the National University of Singapore, received the Best Paper Award, and was nominated for Best Oral Presentation for our co-authored work "Configuration-as-Fields Representation for Generalizable Indoor Airflow Surrogates."
Congratulations to all co-authors!
See her LinkedIn post for more information
GET Inc. Senior Researcher Kian Wee Chen interviewed by Southeast Asia Building (SEAB) Magazine
Check out the complete interview in the May-June 2025 issue of SEAB magazine (Pages 66-68).

GET Inc. @ ASIM 2024 Osaka Japan
We presented our paper 'Using an Open Source Software Stack to Visualize Building
Automation System Data in 3D' at the ASIM 2024 conference in Osaka Japan. Read the full paper here.
We were also involve in a Radiant Panels Workshop with our long time collaborator Prof. Forrest Meggers from Princeton University CHAOS lab where we had a lively discussion about the link between thermal comfort, energy consumption and HVAC system, in particular Radiant Panels System with the workshop audience.
Data Visualization: Introducing Our 3D+ Dashboard for BCA-Sanken Research
Take a look at our new 3D+ dashboard for the BCA-Sanken research project!! It is live streaming BAS data from the research space to https://databca.globalenvtech.com/csviewer


Princeton University Andlinger Center Awards Grant for Research on Radiant Systems with Dr Meggers
We are proud to be the leading industrial partner working with Dr Forrest Meggers, associate professor of Princeton University department of architecture and the Andlinger Center for Energy and the Environment (ACEE), to receive the Energy Research Grant from ACEE. Through this grant, we want to facilitate the large-scale adoption of renewable-powered radiant systems in buildings through a demonstration project, a testbed in Princeton University showcasing its zero energy capability. On the research front, we will also be working with Dr Jyotirmoy Mandal, Princeton University assistant professor of civil and environmental engineering, an expert in nano-macro scale radiative heat flows of natural and artificial surfaces, AIL Research an industry expert in desiccant dehumidification technology, and CHAOSense a start-up developing thermal sensors for measuring radiative heat flows. To advance the project from research and planning to deployment, we will be engaging with key campus stakeholders at Princeton’s Office of Sustainability and Princeton University Facilities. We look forward to working with all the parties and the exciting research ahead.
Optimizing Office Comfort in Tropical Climates: Insights from Our Radiant Panel Thermal Study
An 11-day experiment is designed to monitor the radiant environment of a highly instrumented office testbed in Singapore (BCA-Sanken research space) installed with Radiant Cooling Panels (RCPs), Dedicated Outdoor Air System (DOAS) and Fan Coil Units (FCUs). We alternate between two cooling modes 1) RCPs + DOAS and 2) FCUs + DOAS , with variations in panels’ water supply temperature and window blinds. Results of the experiment provide valuable insights for a better understanding of our radiant environment, which can potentially improve the way we control radiant systems. Read the full paper here.


Collaboration with the Building Construction Authority (BCA) of Singapore
Our parent company Sanken Setsubi Kogyo and GET Inc. have collaborated with the Building Construction Authority (BCA) of Singapore to construct a demonstration space to showcase our Radiant Cooling Panels in a hot and humid climate. Other than for demonstration, we are also utilizing the space for research on thermal comfort and controls related to operating radiant systems. Read more about our demonstration space in the ZEB Plus @ BCA Braddell Campus in BCA latest publication here.
GET Inc.@ UCBerkeley CBE Industry Advisory Board Meeting Spring 2023
GET Inc. was at the CBE Industry advisory board meeting this spring! Many exciting research collaborations, visit here for an overview of the agenda!
