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Reports

3 result(s) found

Beyond Technology: Demand-Side Solutions for Climate Change Mitigation

Text
English
Authors:
Felix Creutzig, Blanca Fernandez, Helmut Haberl,
Radhika Khosla, Yacob Mulugetta, Karen C. Seto

The assessment literature on climate change solutions to date has emphasized technologies and options based on cost-effectiveness analysis. However, many solutions to climate change mitigation misalign with such analytical frameworks. Here, we examine demand-side solutions, a crucial class of mitigation options that go beyond technological specification and cost-benefit analysis. To do so, we synthesize demand-side mitigation options in the urban, building, transport, and agricultural sectors. We also highlight the specific nature of demand-side solutions in the context of development.

Thermally Comfortable Affordable Housing: A Study on Residential Building Code In India

Journal article
Authors:
Sneha Asrani,
Rajan Rawal,
Yash Shah,
Peter Graham,
Priyanka Bhanushali,
Arjun Desai

On an average, India has more than 3000 Cooling Degree Days (CDD). The multifamily public housing being constructed under India’s Prime Minister Awas Yojana (PMAY) is aimed at providing formal housing to the society’s Economic Weaker Section (EWS). It is essential that this housing delivers thermally comfortable in-doors to the occupants. This study mapped the design and construction practices followed under PMAY Urban (PMAY-U) against India’s Residential Energy Building Code, Eco Niwas Samhita (ENS). The metric prescribed in ENS is Residential Envelope Transmittance Value (RETV).

A policy toolkit for global mass heat pump deployment

Report
Authors:
Dr Richard Lowes,
Duncan Gibb,
Dr Jan Rosenow,
Samuel Thomas,
Matt Malinowski,
Alexia Ross,
Peter Graham

Heat pumps are relatively simple appliances. They share similar components to refrigerators and air conditioners and effectively move an external source of heat to where it is needed, such as in buildings for heating or the production of hot water. Their key value is efficiency; for each unit of electricity consumed to operate them, they produce multiple units of usable heat. Because of this, they require much less energy input for a similar heating outcome compared to combustion technologies, making them naturally cleaner and generally cost effective to run.

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