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Reports

3 result(s) found

Relationships between lean and sustainable construction: Positive impacts of lean practices over sustainability during construction phase

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English
Authors:
David Carvajal-Arango, Sara Bahamon-Jaramillo, Paula Aristizabal-Monsalve,
Alejandro Vasquez-Hernandez, Luis Fernando Botero Botero

Academicians and professionals in the architecture, engineering, and construction (AEC) field have expressed an increasing interest in sustainability and its application in the development of construction projects, especially with its deemed relationship with lean construction, for the purpose of improving efficiency in the construction processes. Practices framed under the lean philosophy show their potential in reducing environmental, economic, and social impacts during the construction phase, with an increase in the parameters of sustainability in the development of projects.

Co-benefits and synergies between urban climate change mitigation and adaptation measures: A literature review

Text
English
Authors:
Ayyoob Sharifi

Accounting for over 70% of global CO2 emissions, cities are major contributors to climate change. Acknowledging this, urban climate change adaptation and mitigation plans are increasingly developed to make progress toward enhancing climate resilience. While there is consensus that focusing on both adaptation and mitigation is necessary for addressing climate change impacts, better understanding of their interactions is needed to efficiently maximize their potentials. This paper, first, provides a bibliographic analysis to map existing knowledge regarding adaptation-mitigation interactions.

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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