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Designing Building Systems to Save Energy and Improve Indoor Environments: A Practical DemonstrationM.G. Apte, W.J. Fisk, A.T. Hodgson, and D.G. Shendell, Lawrence Berkeley National Laboratory KeywordsAbstractBuilding design concepts that focus on energy efficiency may conflict with those intended to provide excellent indoor environmental quality (IEQ). Careful selection of a heating, ventilating, and air-conditioning (HVAC) system, and low-emission interior finish materials, can result in winwin designs that minimize tradeoffs between energy and IEQ. We demonstrated energy and IEQ benefits in four new relocatable classrooms (RCs) monitored in two climate regions of California for one year. We used a case-crossover experimental design to compare energy and IEQ characteristics of a hybrid HVAC system that provides continuous ventilation (indirect-direct evaporative cooler with high-efficiency hydronic gas heat) to a standard heat pump system. Additionally, we explored the IEQ benefits of measurement-based selection of interior finish materials with low emissions of health-relevant volatile organic compounds (VOCs) including formaldehyde. Monitored data were used to calibrate DOE-2 models that simulated California-wide energy saving potential of RCs employing energy efficient building components including the hybrid HVAC system. IEQ monitoring results from our field investigation indicated that VOC concentration reductions, typically 50% or more, were achieved through improved ventilation, while simultaneously, average cooling and heating energy costs dropped by 50% and 30%, respectively. Incremental annual California-wide energy impacts from installation of hybrid HVAC systems in 4,000 new RCs were projected to be: 5,975 MWh of electricity savings; 23.8 MW winter and 13.1 MW summer peak electric load reduction; 1,025 MBtu natural gas consumption from switch to gas heating; 50,931 MBtu source energy reduction; and a combined school district annual operating cost reduction of $880,900. PaperDownload this paper as pdf: 048.pdf Panels of the 2004 ACEEE Summer Study on Energy Efficiency in BuildingsPanel 2. Residential Buildings: Program Design, Implementation, and Evaluation Panel 4. Commercial Buildings: Program Design, Implementation, and Evaluation Panel 5. Utility Regulation and Deregulation: Incentives, Strategies, and Policies Panel 6. Market Transformation: Designing for Lasting Change Panel 7. Human and Social Dimensions of Energy Use: Trends and Their Implications Panel 8. Energy and Environmental Policy: Changing the Climate for Energy Efficiency Panel 9. Efficient Buildings in Efficient Communities | CalendarCall for papers deadline - eceee 2012 Industry Summer Study 28 Feb – 02 Mar 2012World Sustainable Energy Days 2012 29 Feb – 02 Mar 2012Australia's first energy efficiency summer study 01 – 02 Mar 2012WSED - Energy Efficiency Watch: Nearly zero energy buildings 22 – 24 Mar 2012Workshop on energy & society 28 – 30 Mar 20128th South-East European Congress & Exhibition on Energy Efficiency and Renewable Energy 28 – 30 Mar 2012South-East European Conference & Exhibition "SAVE the Planet" - Waste Management & Recycling, Environment |