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Energy Reduction Strategies for Existing Air Force Healthcare Facilities

Energy Reduction Strategies for Existing Air Force Healthcare Facilities
Author: Jose Israel Ramos
Publisher:
Total Pages: 124
Release: 2013
Genre:
ISBN:

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Federal buildings are required to reduce 30% of their energy use intensities (energy use per square foot) by 2015 and 37.5% by 2020. Additionally, 15% of federal buildings are required to achieve an Energy Star Rating of 75 or above by 2015. Despite rigorous efforts, current Air Force healthcare building performance reveals only a 15% decrease has been achieved from the 2009 baseline levels and only 12% of the building inventory holds the Energy Star Rating. Projections similarly reveal full compliance by 2020 may not be achievable, therefore, the need for a comprehensive and more robust effort is proposed. This thesis seeks to develop a road map for the Air Force's 68 existing healthcare buildings towards compliance by 2015. A methodology has been developed that leverages the Air Force's state-of-the-art energy efficiency strategy, the building energy performance analysis for 68 healthcare facilities including ten in-depth case studies, and multi-agency interviews to produce the road map. Strategic energy management plans, building system retrofits, whole building retro commissioning, occupant behavior and medical equipment plug loads and standby loads have been assessed. Investment costs, energy savings, and return on investments present timeline objectives intended to deliver a comprehensive strategy towards energy savings in Air Force healthcare facilities by 2015. Findings indicate that an energy master plan that incorporates a systematic building diagnostics approach targeting HVAC equipment and system operations as the most effective strategy. The results reveal that HVAC retrofits and implementation of no cost measures such as temperature setpoints and setbacks collectively reduce building energy use by 85% and energy use intensities by 50% by 2015. Projections include a total budget request of $43.5 million, annual cost savings of $4.1 with a 9.4% return on investment.


Energy Strategies for Health Care Institutions

Energy Strategies for Health Care Institutions
Author: United States. Health Resources Administration
Publisher:
Total Pages: 56
Release: 1976
Genre: Conservation of natural resources
ISBN:

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Selecting Energy Efficient Building Envelope Retrofits to Existing Department of Defense Building Using Value Focused Thinking

Selecting Energy Efficient Building Envelope Retrofits to Existing Department of Defense Building Using Value Focused Thinking
Author:
Publisher:
Total Pages: 125
Release: 2006
Genre:
ISBN:

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The Department of Defense (DoD) has hundreds of thousands of facilities in its inventory, which consume billions of BTUSs of energy per year. Much of that energy is used to heat and cool the facility, and a great deal of this energy is lost through the building envelope. While new military construction works towards energy efficiency, the majority of DoD facilities were built over forty years ago with little regard to energy efficiency, and it is these facilities that have the greatest potential for energy efficient building envelope retrofits. There are hundreds of various new building envelope technologies available to retrofit an existing building envelope, including window, roof, and wall technologies. This research investigated fifteen different building envelope technologies and found that many of them are feasible alternatives for DoD facilities. Value Focused Thinking (VFT) was the methodology used to objectively compare these new technologies and capture what Air Force decision makers value in regards to retrofitting older facilities with these new building envelope technologies. Data from three different Air Force bases and values from three different Air Force Civil Engineer Operations Flight Chiefs were used to evaluate these fifteen technologies, and the results show that the energy efficient window technologies have the highest potential for energy savings at each location. However, the research also shows that each of these technologies is a viable option and should always be considered when retrofitting an existing facility.


Air Force Energy Plan

Air Force Energy Plan
Author:
Publisher:
Total Pages: 148
Release: 1986
Genre: Energy policy
ISBN:

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Technical Guidelines for Energy Conservation

Technical Guidelines for Energy Conservation
Author: NATIONAL BUREAU OF STANDARDS WASHINGTON D C INST FOR APPLIED TECHNOLOGY.
Publisher:
Total Pages: 399
Release: 1977
Genre:
ISBN:

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This report provides detailed technical material on various energy conservation actions for existing Air Force facilities and utility systems. It is specifically tailored to serve as a working document for Base engineers and technical personnel. The report covers energy conservation for Air Force facilities, including the equipment for providing hot water, space heating and cooling, lighting, and humidification. It also covers central plant systems and underground distribution systems (hot water, steam, and chilled water). This volume includes the following topics: Energy Conservation Measures for Exterior Building Envelopes; Modifying Mechanical Systems and Operating Practices for Energy Conservation; Conducting the Building Survey; Measurements for identifying Energy Conservation Potential; Economic Analysis; and Appendices--Heat transfer fundamentals, Solar energy systems for Air Force applications, Heat and Chilled water distribution systems, and Survey of computer programs for evaluating building and system performance.


An Investigation of Factors Affecting the Success of Facility Energy Conservation at Air Force Installations

An Investigation of Factors Affecting the Success of Facility Energy Conservation at Air Force Installations
Author: J. H. Morrill
Publisher:
Total Pages: 108
Release: 1985
Genre:
ISBN:

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This thesis studied factors affecting facility energy conservation at Air Force installations. As of 30 Sept 1984, the Air Force has collectively achieved a 14.1 percent reduction in facility energy consumption which is far short of the 20 percent goal set for FY85. A clear understanding is needed as to why certain bases have successful energy conservation programs and others do not. The study was accomplished by a statistical analysis of a multiple linear regression model based upon energy and weather data collected on 77 bases during the years 1980 through 1984. The investigation considered 27 variables believed to affect energy conservation. These variables include cooling degree days, costs of EMCS and ECIP projects, square footage, change in square footage from the baseline, difference between the baseline weather and the 20-year average, climatic zone 2, and bases within the Tactical Air Command. It was concluded that the present method used to measure energy conservation does not provide a true indication of a base's energy efforts. The current method fails to consider the effect of numerous uncontrollable factors affecting energy conservation.


Energy Efficiency Assessment Methods and Tools Evaluation. Bolling Air Force Base. Revision 1

Energy Efficiency Assessment Methods and Tools Evaluation. Bolling Air Force Base. Revision 1
Author:
Publisher:
Total Pages: 140
Release: 1995
Genre:
ISBN:

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The goal of the U.S. Department of Energy (DOE) Federal Energy Management Program (FEMP) is to facilitate energy-efficiency improvements at federal facilities. This is accomplished by a balanced program of technology development, facility assessment, and use of cost-sharing procurement mechanisms. Technology development focuses upon the tools, software, and procedures used to identify and evaluate energy-efficiency technologies and improvements. For facility assessment, FEMP provides metering equipment and trained analysts to federal agencies exhibiting a commitment to improve energy use efficiency. To assist in procurement of energy-efficiency measures, FEMP helps federal agencies devise and implement performance contracting and utility demand-side management strategies. Pacific Northwest Laboratory (PNL) supports the FEMP mission of energy systems modernization. Under this charter, the Laboratory and its contractors work with federal facility energy managers to assess and implement energy-efficiency improvements at federal facilities nationwide.