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ASHRAE 90361 - ADVANCED ENERGY DESIGN GUIDE FOR LARGE HOSPITALS: 50% ENERGY SAVINGS Organization: ASHRAE
Date: 2012-04-01
Description: Though this Guide focuses only on the primary energy systems within a building, the underlying energy analysis assumes that all of the other components and systems comply with the minimum design criteria in ASHRAE/IES Standard 90.1, ASHRAE Standard 62.1, and ASHRAE/ASHE Standard 170.
IEC/TS 62796 - ENERGY EFFICIENCY IN ELECTROHEATING INSTALLATIONS - EDITION 1.0 Organization: IEC
Date: 2013-05-01
Description: Heat recovery aspects are dealt with but limited to the temperature changes, the specific heat capacity characteristics, and the physical properties of the usually fluidic substance obtained from the installation and employed for energy recovery use. Conversion into mechanical energy is dealt with. Adaptation to the needs of operation and performance management as might be necessary for the implementation or application of smart grid technologies, is addressed but no test methods are given.
ASHRAE - LO-09-054 - CONDENSATE HARVESTING FROM LARGE DEDICATED OUTSIDE AIR-HANDLING UNITS WITH HEAT RECOVERY Organization: ASHRAE
Date: 2009-01-01
Description: To satisfy ASHRAE 90.1, fan systems that have a design air flow rate of 5000 cfm (2358 L / sec) or greater and have a minimum outside ventilation air flow that is equal to 70% or more of the supply air shall have an energy recovery system with at least 50% recovery effectiveness (ASHRAE, 2004).
ASHRAE 90563 - ADVANCED ENERGY DESIGN GUIDE FOR GROCERY STORES Organization: ASHRAE
Date: 2015-01-01
Description: Included in the Guide are recommendations for the design of the following: Building opaque envelope and fenestration Lighting systems, including electrical interior and exterior lights and daylighting Heating, ventilation, and air-conditioning (HVAC) systems Building automation and controls Outdoor air requirements  Service water heating Plug and process loads Commercial kitchens, including cooking appliances and exhaust hoods Commercial refrigeration systems, including refrigerated display cases, walk-ins, compressor systems, condensers, heat recovery systems, and related control systems Quality assurance, including commissioning and measurement and verification Additional savings recommendations not necessary for 50% savings are discussed in the "Additional Bonus Savings" section of Chapter 5.
ASHRAE 90377 - ADVANCED ENERGY DESIGN GUIDE FOR SMALL HOSPITALS AND HEALTHCARE FACILITIES: 30% ENERGY SAVINGS Organization: ASHRAE
Date: 2009-01-01
Description: These additional savings recommendations are discussed in the Bonus Savings section of Chapter 5 and provide recommendations for process/plug/phantom loads, renewable energy systems, alternative hot water systems, alternative HVAC systems, and electrical distribution.
ASHRAE - LO-09-049 - COMFORT, ENERGY CONSUMPTION, AND ECONOMICS OF A SCHOOL WITH ENERGY RECOVERY Organization: ASHRAE
Date: 2009-01-01
Description: In Saskatoon and Phoenix there is less of an effect on the percent dissatisfied with the PAQ. By using an energy wheel, the total energy consumed by the HVAC system is reduced in Saskatoon, Phoenix and Tampa.
NEBB ENVIRONMENTAL SYSTEM - ENVIROMENTAL SYSTEMS TECHNOLOGY Organization: NEBB
Date: 1999-01-01
Description: A chapter is provided on each of the following topics: • History • Fundamentals • Psychrometrics • Building Heatflow • Human Comfort • HVAC Fans • Duct Air Distribution Systems • Hydronic Pumps • Hydronic Systems • HVAC Systems and Equipment • Systems/Building Relationships • Electrical Systems, Motors and Drives • Automatic Temperature Control Systems • Refrigeration Systems • Combustion SystemsEnergy Recovery Systems • Cleanroom Systems • Testing, Adjusting and Balancing • TAB Procedures • HVAC Acoustics • Engineering Data – Tables and charts • HVAC Examples and Problems • Troubleshooting • Glossary • Plus, Index The well written narrative is carefully expressed in understandable language in an easy-to-read style and format, as well as being amply illustrated by photographs, sketches, diagrams and practical examples to enhance its usefulness.
SMACNA HVAC COMM MANU - HVAC SYSTEMS COMMISSIONING MANUAL - SECOND EDITION Organization: SMACNA
Date: 2013-01-01
Description: First, HVAC systems are among the most complex and interconnected of building service systems. Second, considerable energy is consumed in HVAC systems. Inefficient operation increases operating cost.
DS/EN 15780 - VENTILATION FOR BUILDINGS - DUCTWORK - CLEANLINESS OF VENTILATION SYSTEMS Organization: DS
Date: 2011-12-19
Description: Cleanliness of ventilation systems is considered important for human comfort and health, energy consumption, system service life and for cleanliness of operations or processes carried out in the ventilated area.
NBN - EN 15780 - VENTILATION FOR BUILDINGS - DUCTWORK - CLEANLINESS OF VENTILATION SYSTEMS Organization: NBN
Date: 2011-12-14
Description: Cleanliness of ventilation systems is considered important for human comfort and health, energy consumption, system service life and for cleanliness of operations or processes carried out in the ventilated area.
NBN - EN 15780 - VENTILATION FOR BUILDINGS - DUCTWORK - CLEANLINESS OF VENTILATION SYSTEMS Organization: NBN
Date: 2011-12-14
Description: Cleanliness of ventilation systems is considered important for human comfort and health, energy consumption, system service life and for cleanliness of operations or processes carried out in the ventilated area.
CEN - EN 15780 - VENTILATION FOR BUILDINGS - DUCTWORK - CLEANLINESS OF VENTILATION SYSTEMS Organization: CEN
Date: 2011-10-01
Description: Cleanliness of ventilation systems is considered important for human comfort and health, energy consumption, system service life and for cleanliness of operations or processes carried out in the ventilated area.
DIN EN 15780 - VENTILATION FOR BUILDINGS - DUCTWORK - CLEANLINESS OF VENTILATION SYSTEMS Organization: DIN
Date: 2012-01-01
Description: Cleanliness of ventilation systems is considered important for human comfort and health, energy consumption, system service life and for cleanliness of operations or processes carried out in the ventilated area.
ASHRAE - AB-10-015 - CRYSTALLIZATION LIMITS OF LICL-WATER AND MGCL2-WATER SALT SOLUTIONS AS OPERATING LIQUID DESICCANT IN THE RAMEE SYSTEM Organization: ASHRAE
Date: 2010-01-01
Description: Increasing oil prices and consequently rising energy costs for conditioning buildings has drawn attention to energy recovery technologies to reduce the additional costs imposed by ventilation. Air-to-air energy recovery systems use exhaust air energy to precondition the supply air and can significantly reduce the HVAC life-cycle costs in buildings (Fauchoux et al. 2007 and 2009; Asiedu et al. 2005).
ASHRAE STD 198 - METHOD OF TEST FOR RATING DX-DEDICATED OUTDOOR AIR SYSTEMS FOR MOISTURE REMOVAL CAPACITY AND MOISTURE REMOVAL EFFICIENCY Organization: ASHRAE
Date: 2013-01-26
Description: This standard is not to be used to rate stand-alone preconditioning or energy-recovery devices. These test methods do not specify methods of establishing ratings that involve factors such as manufacturing tolerances and quality control procedures.
UL 3200 OUTLINE - OUTLINE OF INVESTIGATION FOR PERFORMANCE TESTING OF ENGINE AND TURBINE GENERATORS - ISSUE 2 Organization: UL
Date: 2008-12-19
Description: The scope of this document covers laboratory quality performance testing of gas-turbine-, reciprocating-engine-, and microturbine-based products and applies to CHP (combined heating and power) products that contain heat recovery and thermally activated cooling technologies. In addition to the tests themselves, this outline describes consistent methods for preparing for the tests, analyzing data, and calculating and reporting of test results.
NBN - EN 15780 - VENTILATION DES BÂTIMENTS - RÉSEAUX DE CONDUITS - PROPRETÉ DES SYSTÈMES DE VENTILATION Organization: NBN
Date: 2011-12-14
Description: Cleanliness of ventilation systems is considered important for human comfort and health, energy consumption, system service life and for cleanliness of operations or processes carried out in the ventilated area.
DS/EN 16485 - ROUND AND SAWN TIMBER - ENVIRONMENTAL PRODUCT DECLARATIONS - PRODUCT CATEGORY RULES FOR WOOD AND WOOD-BASED PRODUCTS FOR USE IN CONSTRUCTION Organization: DS
Date: 2014-05-02
Description: Additionally to the common parts of EN 15804, this European Standard for wood and wood-based products: - defines the system boundaries; - defines the rules for modelling and assessment of material-specific characteristics such as carbon storage and energy content of wood; - defines allocation procedures for multi-output processes along the wood chain; - defines allocation procedures for reuse, recycling and energy recovery; - includes the rules for calculating the Life Cycle Inventory and the Life Cycle Impact Assessment underlying the EPD, including the assessment of ...
NBN - EN 16485 - BOIS RONDS ET SCIAGES - DÉCLARATIONS ENVIRONNEMENTALES DE PRODUITS - RÈGLES DE DÉFINITION DES CATÉGORIES DE PRODUITS EN BOIS ET À BASE DE BOIS POUR L'UTILISATION EN CONSTRUCTION Organization: NBN
Date: 2014-04-25
Description: Additionally to the common parts of EN 15804, this European Standard for wood and wood-based products:— defines the system boundaries;— defines the rules for modelling and assessment of material-specific characteristics such as carbon storage and energy content of wood;— defines allocation procedures for multi-output processes along the wood chain;— defines allocation procedures for reuse, recycling and energy recovery;— includes the rules for calculating the Life Cycle Inventory and the Life Cycle Impact Assessment underlying the EPD, including the assessment of carbon and energy content of wood;—  provides guidance/specific rules for the determination of the Reference Service Life (RSL).
NBN - EN 16485 - ROUND AND SAWN TIMBER - ENVIRONMENTAL PRODUCT DECLARATIONS - PRODUCT CATEGORY RULES FOR WOOD AND WOOD-BASED PRODUCTS FOR USE IN CONSTRUCTION Organization: NBN
Date: 2014-04-25
Description: Additionally to the common parts of EN 15804, this European Standard for wood and wood-based products:— defines the system boundaries;— defines the rules for modelling and assessment of material-specific characteristics such as carbon storage and energy content of wood;— defines allocation procedures for multi-output processes along the wood chain;— defines allocation procedures for reuse, recycling and energy recovery;— includes the rules for calculating the Life Cycle Inventory and the Life Cycle Impact Assessment underlying the EPD, including the assessment of carbon and energy content of wood;—  provides guidance/specific rules for the determination of the Reference Service Life (RSL).

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