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A survey of seed cotton dryers in cotton gins in the southwestern United States.

机译:美国西南部轧花厂中的籽棉干燥机调查。

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Seed cotton drying is an important and costly part of cotton ginning. Seed cotton having a moisture content above 7% cannot be cleaned or ginned properly. In this study, 73 dryers were surveyed by on-site visits in 23 gins located in the southwestern United States during the 2007 to 2010 ginning seasons. Drying systems surveyed included: standard tower, short tower, hot shelf, hi-volume tower, belt, big reel, vertical, hot air cleaner, pipe, cross-flow, hot box, hi-slip, jet, fountain, and collider systems. Forty-eight percent of dryers had the recommended dual temperature controls, while 26% had only a primary temperature control and 26% had only a maximum temperature control. Belt and big reel dryers had the lowest specific airflow rates (0.34 to 0.72 m3/kg of seed cotton) and also had the lowest energy in the conveying air (1.7 kJ/kg of lint or less). Collider, fountain, and hi-volume tower dryers had the highest specific airflow rates (1.9 to 2.8 m3/kg) and hi-slip, hi-volume tower, and standard tower dryers had the highest energy in the conveying air (7.7 kJ/kg or more). Belt, cross-flow, and hot air cleaner dryers had the lowest pressure drop across the dryer (0.5 kPa or less), while hi-slip, pipe, and standard tower dryers had the highest pressure drop (1.8 kPa or more). Fuel use was positively correlated with airflow (r=0.58) and temperature rise (r=0.59). Systems with fountain, collider, belt, big reel, jet, and hot air cleaner dryers had favorable, low values for fuel use (13.7 kJ/kg of lint or less), while systems with crossflow and hi-volume tower dryers had high values for fuel use (30.0 kJ/kg or more).
机译:籽棉干燥是轧棉的重要且昂贵的部分。水分含量高于7%的籽棉无法清洁或轧花。在这项研究中,在2007年至2010年轧花季节期间,对位于美国西南部的23台轧花机进行了现场访问,对73台干燥机进行了调查。被调查的干燥系统包括:标准塔,短塔,热架,高容量塔,皮带,大卷轴,立式,热空气清洁器,管道,横流,热箱,滑移式,喷射,喷泉和对撞机系统。 48%的干燥机具有建议的双重温度控制,而26%的干燥机仅具有主要温度控制,而26%的干燥机仅具有最高温度控制。带式和大卷筒式干燥机的单位风量最低(0.34至0.72 m 3 / kg棉籽棉),并且在输送空气中的能量最低(1.7 kJ / kg皮棉或更少) 。对撞机,喷泉和大容量塔式干燥机具有最高的比风量(1.9至2.8 m 3 / kg),而高滑,大容量塔式和标准塔式干燥机具有最高的能量在输送空气中(7.7 kJ / kg或更高)。带式,横流式和热风式干衣机的干燥机压降最低(0.5 kPa或更低),而滑移式,管式和标准塔式干燥机的压降最高(1.8 kPa或更高)。燃料使用与气流(r = 0.58)和温度升高(r = 0.59)呈正相关。带有喷泉,对撞机,皮带,大卷轴,喷气式飞机和热空气滤清器干燥器的系统的燃油使用价值低(13.7 kJ / kg皮棉或更小),而带有横流式和大容量塔式干燥器的系统具有高价值用于燃料(30.0 kJ / kg或更高)。

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