ANSI ASABE S612-2009 Performing On-farm Energy Audits《农场能源审计执行》.pdf
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1、 ANSI/ASABE S612 JUL2009 (R2015) Performing On-farm Energy Audits American Society of Agricultural and Biological Engineers ASABE is a professional and technical organization, of members worldwide, who are dedicated to advancement of engineering applicable to agricultural, food, and biological syste
2、ms. ASABE Standards are consensus documents developed and adopted by the American Society of Agricultural and Biological Engineers to meet standardization needs within the scope of the Society; principally agricultural field equipment, farmstead equipment, structures, soil and water resource managem
3、ent, turf and landscape equipment, forest engineering, food and process engineering, electric power applications, plant and animal environment, and waste management. NOTE: ASABE Standards, Engineering Practices, and Data are informational and advisory only. Their use by anyone engaged in industry or
4、 trade is entirely voluntary. The ASABE assumes no responsibility for results attributable to the application of ASABE Standards, Engineering Practices, and Data. Conformity does not ensure compliance with applicable ordinances, laws and regulations. Prospective users are responsible for protecting
5、themselves against liability for infringement of patents. ASABE Standards, Engineering Practices, and Data initially approved prior to the society name change in July of 2005 are designated as “ASAE“, regardless of the revision approval date. Newly developed Standards, Engineering Practices and Data
6、 approved after July of 2005 are designated as “ASABE“. Standards designated as “ANSI“ are American National Standards as are all ISO adoptions published by ASABE. Adoption as an American National Standard requires verification by ANSI that the requirements for due process, consensus, and other crit
7、eria for approval have been met by ASABE. Consensus is established when, in the judgment of the ANSI Board of Standards Review, substantial agreement has been reached by directly and materially affected interests. Substantial agreement means much more than a simple majority, but not necessarily unan
8、imity. Consensus requires that all views and objections be considered, and that a concerted effort be made toward their resolution. CAUTION NOTICE: ASABE and ANSI standards may be revised or withdrawn at any time. Additionally, procedures of ASABE require that action be taken periodically to reaffir
9、m, revise, or withdraw each standard. Copyright American Society of Agricultural and Biological Engineers. All rights reserved. ASABE, 2950 Niles Road, St. Joseph, Ml 49085-9659, USA, phone 269-429-0300, fax 269-429-3852, hqasabe.org ANSI/ASABE S612 JUL2009 (R2015) Copyright American Society of Agri
10、cultural and Biological Engineers 1 ANSI/ASABE S612 JUL2009 (R2015) Approved July 2009 as an American National Standard Performing On-farm Energy Audits Developed by ASABE with the cooperation of USDA NRCS. Approved by cross division representation of the society under the guidance of T-11, Energy,
11、and approval of T-01, Standards (Policy reaffirmed December 2015; reaffirmed by ANSI December 2015. Keywords: Audit, Costs, Efficiency, Energy, Management 1 Purpose 1.1 This Standard establishes procedures for performing on-farm audits to determine and document current energy usage, and to provide a
12、n estimation of energy savings from alternatives in the cultivation, protection, harvesting, processing and storage of agricultural commodities and in the feeding, housing and processing of farm animals and animal products. This Standard is provided to guide the reporting of data and the preparation
13、 of specific recommendations for energy reduction and conservation with estimates of energy savings. 2 Scope 2.1 This Standard is intended to support energy audits of all types of farming operations (which includes ranching) typically found in North America. Energy audits shall exclude the farm resi
14、dence, except where it is not practical to separate base line data. 2.2 This Standard does not address secondary (off-farm) energy savings in the development and evaluation of alternatives. For example, reduction in the amount of fertilizer used on a farm would represent a reduction of the associate
15、d energy needed to produce fertilizer for the farm at a fertilizer production facility (off-farm). This type of energy savings is not addressed as a part of this Standard. 3 Definitions 3.1 energy: For the purposes of this Standard energy is the resource used to power equipment to do mechanical work
16、 or to generate heat, light or cooling. 3.2 energy resource: Source from which energy is obtained, including gasoline, diesel fuel, biofuel, propane, natural gas, electricity, solar, wind, wood, biomass, geothermal, etc. 3.3 farm enterprise: Production category of a farm. For example, a farm may inc
17、lude a field crop enterprise and a livestock enterprise (see Table 1). 3.4 major activity: A discrete activity associated with a farm enterprise that utilizes an energy resource, or that heavily impacts energy resource use. For example, a cropping enterprise may include grain drying, crop planting,
18、tilling, and harvesting activities (see Table 1). 3.5 component: Individual parts of a major activity. For example: lighting systems include lamps, ballasts, timers, sensors, etc. (see Table 1). 3.6 energy auditor: A licensed professional engineer or other technically qualified individual who will c
19、ertify that the audit report provided to the farmer/rancher meets the requirements outlined in ASABE S612. ANSI/ASABE S612 JUL2009 (R2015) Copyright American Society of Agricultural and Biological Engineers 2 Table 1 Suggested Components within Major Activities by Farm Enterprises for Audit Assessme
20、nt Major Activity Components Dairy Swine PoultryFarm Enterprises Aqua- culture Nursery/ Green- house Beef/Veal Field Crops/Fruit Vege- tables Lighting1,7,10 lamps, timers, sensors x6 x x x x x x Ventilation2,7,10,11 fans, control system, variable drives, humidity control x6 x x x x x (aeration) x8,9
21、 Refrigeration5,7,10 compressor, evaporator/ chiller, motor, insulation milk, products6 eggs commodity x Veg/cut flowers Milk harvesting7,10pumps, motors, controllers x6 Controllers7,10 master system automation x x x x x Other motors/ pumps3,4,7,10 Types, compressors x6 x x x x x x x Water heating7,
22、10,12 heater, energy source, insulation, recovery, waterers x6 x x x Air heating/ building environment10 heater, energy source, insulation, recovery, variable drives x x x x x x8,9 Drying10 energy source, airflow (motors/fans), handling equipment x Waste handling collection and dispersal equipment/m
23、ethods x x x x x Air cooling energy source, airflow (motors/fans), control systems, evaporative x x x x x8,9 Cultural practices planting, tilling, harvesting, engine-driven equipment x x Crop/feed storage x x x x x Water management wells, reservoir, recycled x x x x x x x x Material handling7,10 equ
24、ipment, motors, pumps x6 x x x x x x x Irrigation10 motors/engine, pumps, power source x x x Listed references are guidance documents or tools useful for assessing the energy use and/or efficiency associated with various major activities and/or farm enterprise. Not included here are the numerous pla
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