ANSI ASABE S613-1-2009 Tractors and Self-Propelled Machinery for Agriculture - Air Quality Systems for Cabs - Terminology and Overview《农业用拖拉机和自推进式机械.驾驶室用空气质量设备.术语和概览》.pdf
《ANSI ASABE S613-1-2009 Tractors and Self-Propelled Machinery for Agriculture - Air Quality Systems for Cabs - Terminology and Overview《农业用拖拉机和自推进式机械.驾驶室用空气质量设备.术语和概览》.pdf》由会员分享,可在线阅读,更多相关《ANSI ASABE S613-1-2009 Tractors and Self-Propelled Machinery for Agriculture - Air Quality Systems for Cabs - Terminology and Overview《农业用拖拉机和自推进式机械.驾驶室用空气质量设备.术语和概览》.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、 ANSI/ASABE S613-1 FEB2009 (R2013) Tractors and Self-Propelled Machinery for Agriculture Air Quality Systems for Cabs Terminology and Overview American Society of Agricultural and Biological Engineers ASABE is a professional and technical organization, of members worldwide, who are dedicated to adva
2、ncement of engineering applicable to agricultural, food, and biological systems. 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 fiel
3、d equipment, farmstead equipment, structures, soil and water resource management, 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 ar
4、e informational and advisory only. Their use by anyone engaged in industry or 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 ordina
5、nces, laws and regulations. Prospective users are responsible for protecting 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 revi
6、sion approval date. Newly developed Standards, Engineering Practices and Data 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 verifica
7、tion by ANSI that the requirements for due process, consensus, and other criteria 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. Substanti
8、al agreement means much more than a simple majority, but not necessarily unanimity. 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. Additiona
9、lly, procedures of ASABE require that action be taken periodically to reaffirm, 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, h
10、qasabe.org ANSI/ASABE S613-1 FEB2009 (R2013) Copyright American Society of Agricultural and Biological Engineers 1 ANSI/ASABE S613-1 FEB2009 (R2013) Approved February 2009; Reaffirmed January 2014 as an American National Standard Tractors and Self-Propelled Machinery for Agriculture Air Quality Syst
11、ems for Cabs Terminology and Overview Proposed by the ASABE Environment Within Ag Vehicle Enclosures subcommittee; approved by the Power and Machinery Division February 2009; approved as an American National Standard February 2009; reaffirmed by ASABE December 2013; reaffirmed by ANSI January 2014.
12、Keywords: Air quality, Cabs, Environment, Engineering control, Filters, HVAC, Procedures, Safety, Terminology, Test, Tractor, Ventilation 1 Scope This standard is intended for application to agricultural self propelled machinery including tractors as defined by ASABE Standard ASAE S390.4. It covers
13、terminology, definitions and an overview of how cabs may be used in contaminated environments as part of an Occupational Health and Safety Management System. 2 Normative References The following referenced documents are indispensable for the application of this document. For dated references, only t
14、he edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. ASAE S390.4 JAN05, Definitions and Classifications of Agricultural Field Equipment. ISO 5353:1995, Earth moving machinery, and tractors and machinery for agriculture an
15、d forestry Seat index point ASABE/ISO 14269-1:1997, Tractors and self-propelled machines for agriculture and forestry Operator enclosure environment Part 1: Vocabulary ASABE/ISO 14269-5:1997, Tractors and self-propelled machinery for agriculture and forestry Cab environment Part 5: Pressurization sy
16、stem test method ANSI/AIHA Z10-2005, American Industrial Hygiene Association Occupational Health and Safety Management Systems 3 Terms(s) and Definition(s) For the purpose of this standard these definitions apply: 3.1 aerodynamic diameter: The diameter of a unit density sphere (i.e., density = 1.00
17、g/cm3) that would have the same settling velocity as the particle or aerosol in question. ANSI/ASABE S613-1 FEB2009 (R2013) Copyright American Society of Agricultural and Biological Engineers 2 3.2 aerosol: Small droplets of liquid or particles of solid matter suspended in air that are fine enough i
18、n size, 0.01-100 m, aerodynamic diameter to have a negligible falling velocity (generally considered to be less than 0.25 m/s) 3.3 air exchange rate: The number of times per unit of time the air in the cab is replaced. 3.4 air flow rate: The volumetric unit of air transfer expressed in volume per re
19、levant unit of time (m3/h). 3.5 air intake: The designated area or opening through which air enters the cab. 3.6 air filtration: Removal of contaminants from the air, forced or drawn into the operator enclosure by mechanical means 3.7 air purifying device: The assembly that lowers the contaminant co
20、ncentration in the air. Note, it can be a filter, sorbent, catalyst, a combination of these, or alternate technology capable of meeting the performance criteria. 3.8 air purifying efficiency: The ability of the air purifying system and/or device to remove contaminant matter 3.9 ambient conditions: E
21、nvironmental conditions surrounding the work vehicle. 3.10 breathing zone: The zone surrounding the operators face. Its center is located 660mm above the seat index point (SIP). 3.11 cab (operator enclosure): The part of the machine or tractor which forms a physical boundary between the space surrou
22、nding the operator and the outside environment. This boundary may comprise components such as the glass, roof and floor that completely surround the operator. 3.12 cab pressure: The pressure differential between the static pressure inside and outside the cab (ISO 14269 Part 5), (Pa.) 3.13 cab volume
23、: The interior free space volume of the cab without the operator present, (m3) 3.14 catalyst: A substance that increases the rate of reaction but does not become part of the reaction product. 3.15 challenge concentration: The unit of contaminant per unit of volume used to test the system/air purifyi
24、ng device. 3.16 contaminant: Any unwanted material. 3.17 dermal exposure: An exposure to a contaminant by skin contact 3.18 droplet: A small, generally spherical shaped body of predominantly liquid material. 3.19 dust: Any particulate material, capable of being suspended in air, formed from a finely
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