水分含量对某些种子物理和工程性能的影响

A. El-Sayed, M. El-Wahab, H. El-Shal, W. A. Allah
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引用次数: 1

摘要

种子含水率(MC)被认为是影响收获和收获后/处理操作机械性能的最重要参数之一。因此,本研究旨在测量和实现一些优良种子的MC效应;小茴香、芝麻、八角和三叶草种子的物理和工程特性是农业机械(RDAM)进行收获、清洗、分级和储存操作的研究和开发的重要参数。结果表明,在孜然、芝麻和八角的平均MC水平为12-16% (w.b),三叶草的平均MC水平为10-14% (w.b)的情况下,各种子的长度、宽度、厚度、千粒重、体积、算术直径、几何直径、平坦表面积和横向面积等物理性状均随MC水平的增加而增加,而容重则下降。此外,随着上述MC水平的增加,芝麻种子的球形率降低,而三叶草种子的球形率增加。孜然和大茴香种子的水分含量随种子含水量的增加而增加,为12 ~ 14%(重),随种子含水量的增加而降低,为16%(重)。另一方面,随着所研究的种子的MC水平的增加,种子、木材表面、镀锌板、塑料表面的安息角、终端速度和摩擦系数的工程性能都有所提高。在(12、14和16%)MC水平下,芝麻(5.45、5.78和5.9 m/s),孜然(3.53、3.93和4.15m/s),茴香(3.6、3.75和3.93),三叶草(10、12和14%)的终端速度值分别为(8.4、8.75和8.95 m/s)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFFECT OF MOISTURE CONTENT ON PHYSICAL AND ENGINEERING PROPERTIES OF SOME SEEDS
Moisture content (MC) of seeds is considered one of the most influencing parameters affecting the machinery properties of harvesting and post-harvesting/handling operations. Therefore, this study is conducted to measure and realize the MC effect of some fine seeds are; cumin, sesame, anise and clover seeds on physical and engineering properties that represent an important parameter in research and development of agro-machinery (RDAM) doing harvesting, cleaning, grading and storing operations. Within MC average levels of 12-16% (w.b) for (cumin, sesame and anise) and 10-14% (w.b) for clover seeds, the obtained results revealed that physical properties in terms of length, width, thickness, mass of thousand seeds, volume of seed, arithmetic diameter, geometric diameter, flat surface area and transverse area increased by increasing of mentioned MC levels for the all studied seeds, in contrast, the bulk density decreased. Also, percent of sphericity decreased for sesame seeds but increased for clover seeds by increasing of mentioned MC levels. While, for Cumin and Anise seeds it was increased with increasing of moisture content of seeds from 12-14% (w.b.) and decreased with increasing of moisture content of seeds to 16% (w.b.). On the other hand, engineering properties in terms of angle of repose, terminal velocity and coefficient of friction for (seeds, wood surface, galvanized sheet, plastic surface) increased by increasing of mentioned MC levels for the studied seeds. Terminal velocity values at (12, 14 and 16%) MC levels, were (5.45, 5.78 and 5.9 m/s) for sesame, (3.53, 3.93 and 4.15m/s) for cumin, (3.6, 3.75 and 3.93) for anise, respectively, and (8.4, 8.75 and 8.95 m/s) for clover at (10, 12 and 14%), respectively.
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