ANSI ASABE S598-2010 Procedure for Sampling Measuring and Reporting Commingled Crop in Combine Harvest of a Subsequent Crop《联合收割后茬作物中混合作物的取样 测量和汇报规程》.pdf
《ANSI ASABE S598-2010 Procedure for Sampling Measuring and Reporting Commingled Crop in Combine Harvest of a Subsequent Crop《联合收割后茬作物中混合作物的取样 测量和汇报规程》.pdf》由会员分享,可在线阅读,更多相关《ANSI ASABE S598-2010 Procedure for Sampling Measuring and Reporting Commingled Crop in Combine Harvest of a Subsequent Crop《联合收割后茬作物中混合作物的取样 测量和汇报规程》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、ANSI/ASABE S598 JAN2010 (R2014) Procedure for Sampling, Measuring and Reporting Commingled Crop in Combine Harvest of a Subsequent Crop American Society of Agricultural and Biological Engineers ASABE is a professional and technical organization, of members worldwide, who are dedicated to advancement
2、 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 field equip
3、ment, 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 are infor
4、mational 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 ordinances, l
5、aws 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 revision ap
6、proval 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 verification by
7、 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. Substantial agre
8、ement 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. Additionally, pr
9、ocedures 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, hqasabe.
10、org ASABE S598 JAN2010 (R2014) Copyright American Society of Agricultural and Biological Engineers 1 ANSI/ASABE S598 JAN2010 (R2014) Approved January 2010, reaffirmed January 2015 as an American National Standard Procedure for Sampling, Measuring and Reporting Commingled Crop in Combine Harvest of a
11、 Subsequent Crop Developed by ASABE Grain Harvesting Committee and approved by the Power and Machinery Division. Adopted as an ASABE Standard January 2010; approved by ANSI January 2010; reaffirmed by ASABE December 2014; reaffirmed by ANSI January 2015. Keywords: Biotech, Clean, Combine, Commingled
12、, Genetically Modified, GMO, Grain 1 Purpose and Scope 1.1 This standard establishes a method to estimate the percentage of commingled grain or seed from a previously harvested crop present in that of the next crop subsequently harvested by a combine harvester. 1.2 A standardized estimate of the lev
13、el (percentage) of commingled grain present after cleaning all or parts of a combine harvester and/or flushing with a quantity of grain is produced from these procedures. Because of differences among various large- and small-seeded crop varieties as well as other harvest factors, estimates from this
14、 procedure should only be used as a comparative guide between machine treatments using these procedures and not as an absolute value of maximum commingled grain percentage for all crop conditions or any single sample value from one of the crops tested. This standard is without warranty of any kind,
15、either expressed or implied. In no event shall the producers of this standard be liable for any damages including lost profits, lost savings or other indirect, incidental or consequential damages arising out of the use or inability to use this standard. 2 Normative References ASAE/ISO 5687, Equipmen
16、t for harvesting Combine harvesters Determination and designation of grain tank capacity and unloading device performance ASAE 343.3, Terminology for Combine and Grain Harvesting ISO 6689-1:1997, Equipment for harvesting Combines and functional components Part 1: Vocabulary ISO 6689-2:1997, Equipmen
17、t for harvesting Combines and functional components Part 2: Assessment of characteristics and performance defined in vocabulary 3 Terminology and Definitions 3.1 commingled grain: Grain, oilseeds, or edible beans from an earlier harvested crop that is present in collection of grain, oilseeds, or edi
18、ble beans from a subsequent harvest. 3.2 separator, belt: A moving, inclined belt separator to separate spherical from non-spherical material. Non-spherical particles continue moving up with the belt to a catch bin while spherical-shaped particles roll down the inclined moving belt (opposite to belt
19、 movement) into a separate catch bin. Belt incline and speed may be varied to improve separation. ASABE S598 JAN2010 (R2014) Copyright American Society of Agricultural and Biological Engineers 2 3.3 separator, spiral: A spiral separator of one or more helices to separate spherical from non-spherical
20、 material. Unseparated material enters the top of an inner helix. As round particles pick up speed, centrifugal force causes them to roll over the edge of the helix into an outer helix or catch trough, while non-spherical particles continue down the inner helix into a separate bin. 3.4 Other combine
21、 terminology is defined in ASAE S343.3 and ISO 6689-1 and ISO 6689-2. 4 Test Conditions 4.1 Harvest will alternate between two crops of different grains, oilseeds, or edible beans that can be separated by some reasonable method to accommodate measurement of commingled grain concentration from prior
22、crop in a subsequently harvested crop. Corn and soybean crops are specifically referred to as examples throughout this standard, however, other crops that can be reasonably separated by available grain sorting equipment may be used instead. Separate gathering heads (i.e. corn head, grain platform) w
23、ill be used as required for harvest. 4.2 Crop conditions should be reasonable for harvest and noted in published test results. 4.3 The combine shall be tested with features readily available in the marketplace. If specific modifications are made before tests they should be noted in published test re
24、sults. 5 Test Procedure 5.1 General procedure 5.1.1 Harvest alternates between corn and soybeans with four samples collected at the exit of the conveyor during unloading of the first grain tank of subsequent crop. These samples are used for inspection of commingled grain concentration from the prior
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