Mechanical, electrical, plumbing and tenant improvements over the building lifetime: Estimating material quantities and embodied carbon for climate change mitigation

Author:

Rodriguez Barbara X.,Huang Monica,Lee Hyun Woo,Simonen Kathrina,Ditto Jim

Funder

Oregon Department of Environmental Quality

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Building and Construction,Civil and Structural Engineering

Reference35 articles.

1. ASHRAE Equipment Life Expectancy Chart;ASHRAE,2011

2. Bagenal George, Clara, Louise Hamot, and Rachel Levey. 2019. Understanding the Importance of Whole Life Carbon in the Selection of Heat-Generation Equipment, in: CIBSE Technical Symposium, 55. Sheffield, UK, 25‐26 April 2019: CIBSE.

3. Energy efficiency vs resiliency to extreme heat and power outages: the role of evolving building energy codes;Baniassadi;Build. Environ.,2018

4. Bergman, Richard D, Robert H Falk, James Salazar, Hongmei Gu, Thomas R Napier, and Jamie Meil. 2013. Life-Cycle Energy and GHG Emissions for New and Recovered Softwood Framing Lumber and Hardwood Flooring Considering End-of-Life Scenarios. www.fpl.fs.fed.us.

5. Shock and ore: the impact of building services on the environment and why engineers must make resource efficiency a priority;Cheshire;CIBSE J.,2014

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