To conduct a more complete analysis of low-energy and net-zero energy buildings that considers both the operating and embodied energy/emissions, members of the building community look to life-cycle assessment (LCA) methods. This paper examines differences in the relative impacts of cost-optimal energy efficiency measure combinations depicting residential buildings up to and beyond net-zero energy consumption on operating and embodied flows using data from the Building Industry Reporting and Design for Sustainability (BIRDS) Low-Energy Residential Database. Results indicate that net-zero performance leads to a large increase in embodied flows (over 40%) that offsets some of the reductions in operational flows, but overall life-cycle flows are still reduced by over 60% relative to the state energy code. Overall, building designs beyond net-zero performance can partially offset embodied flows with negative operational flows by replacing traditional electricity generation with solar production, but would require an additional 8.34 kW (18.54 kW in total) of due south facing solar PV to reach net-zero total life-cycle flows. Such a system would meet over 239% of operational consumption of the most energy efficient design considered in this study and over 116% of a state code-compliant building design in its initial year of operation.
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http://dx.doi.org/10.1016/j.enbuild.2017.11.030 | DOI Listing |
This paper draws on notions of embodied learning to inform exhibit design that fosters children's meaningful embodied engagement to successfully unveil science ideas. While children's interaction in the museum is often hands-on and speaks to the physical emphasis that embodiment brings, observation of children's spontaneous engagement at a museum's Water Zone revealed opportunities and barriers to engagement with, and access to, science ideas in terms of what we call 'embodied proximity' and 'embodied dislocation'. Drawing on design considerations from these findings a set of purpose-built prototype exhibits were developed and deployed to examine how they supported children's embodied exploration of science.
View Article and Find Full Text PDFSci Total Environ
December 2024
Professorship of Ecological Services (PES), Faculty of Biology, Chemistry and Geosciences, BayCEER, University of Bayreuth, Germany.
Front Psychol
September 2024
Laboratory for Innovation in Autism, University of Strathclyde, Glasgow, United Kingdom.
We present a handbook for Rhythmic Relating, an approach developed to support play, learning and therapy with young autistic children, unconventional communicators, and autistic people who have additional learning needs. Rhythmic Relating is based on the perspective, a growing body of research that recognizes that autistic social difficulties stem from more basic sensory and motor differences. These sensorimotor differences directly affect embodied experience and social timing in communication.
View Article and Find Full Text PDFSoc Psychiatry Psychiatr Epidemiol
September 2024
McGill University, Montreal, QC, Canada.
Purpose: Social psychiatry considers the ways in which mental disorders are shaped by particular social environments. This paper outlines a cultural-ecosocial approach that emphasizes the ways in which cultural meaning and practices mediate the effects of the social determinants of mental health on the mechanisms of illness, disorder, and disease.
Methods: Selective review of literature and conceptual synthesis.
Soft Robot
August 2024
Department of Engineering Science, University of Oxford, Oxford, United Kingdom.
Soft pneumatic actuators (SPAs) are commonly used in various applications because of their structural compliance, low cost, ease of manufacture, high adaptability, and safe human-robot interaction. The traditional approach for achieving proportional control of soft pneumatic robots requires the use of industrial proportional valves or syringe drivers, which are not only rigid and bulky but also hard to be integrated into the body of soft robots. In our previous research, we developed a Magnetorheological elastomer (MRE)-based soft valve that showed advantages for controlling SPAs due to its compliance, compactness, robustness, and compatibility for continuous pressure modulation.
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