Economic incentive framework for sustainable energy use in us residential construction

Grosskopf, K R and Kibert, C J (2006) Economic incentive framework for sustainable energy use in us residential construction. Construction Management and Economics, 24(8), pp. 839-846. ISSN 1466433X

Abstract

Searching for new ways to be competitive in an increasingly deregulated market, energy suppliers worldwide have turned to energy conservation measures (ECMs) to avoid costly generation expansion, to build relationships with consumers and to comply with new international emissions standards. To maximise the cost effectiveness of an energy conservation programme, a framework is presented to assess consumer 'willingness-to-pay' for ECMs and avoided supply costs. The goal of this framework is to provide a methodology to optimise supplier incentives that will maximise consumer adoption and minimise energy production costs. A survey of 400 US homebuyers found that nearly 90% would invest in ECMs. Yet for every two years required to 'payback' the initial investment, consumer willingness-to-pay declines 25%. A case study of a medium-size US utility found that most ECMs contribute more to profitable base load reduction than to costly peak load reduction, meaning utility loss in revenue often exceeds avoided supply costs. However, the average housing unit conserving 7,718kWh/yr could save US$216.10 per year, in addition to electricity costs, if the cost of avoided emissions abatement were credited back to the consumer. Based on these savings, expected ECM adoption could eliminate 1.65 × 108 kWh of energy use and 107,197 tons of CO2 emissions for every 20,000 single family homes.

Item Type: Article
Uncontrolled Keywords: energy conservation; incentives; residential; USA
Index terms: production cost, cost-effectivenes, economic incentive, programme, revenue, peak load, survey, meaning, payback, methodology, housing, case study, CO2 emissions, savings, residential construction, energy conservation, sustainable energy, energy use
Subjects: manufacturing engineering, economics, research methods, construction integration, project controls, sociology, construction type, data collection methods, air quality, renewable energy, energy systems, economic analysis
Topics: Time Control, Business Strategy, Cost Management, Engineering Principles, Research Practice, Sustainability, Construction Technology
Descriptive scope: 4 PCTE

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