真空干燥
材料科学
含水量
织物
工艺工程
真空度
真空室
水分
航程(航空)
大气压力
复合材料
过程(计算)
环境科学
冷冻干燥
化学
计算机科学
色谱法
气象学
岩土工程
物理
量子力学
工程类
操作系统
作者
Amir Naderian Jahromi,Hamood Ur Rahman,Meryem Atila Özer,Onur Ercan,Ömer Ensar Durmuş,Songül Bayraktar,İsmail Lazoğlu
标识
DOI:10.1080/07373937.2023.2284822
摘要
Drying is a time-consuming and energy-intensive process linked to environmental thermodynamic properties. Conventional methods often use high temperatures for long durations, potentially harming textiles. This article introduces an innovative vacuum textile drying technique utilizing pressure pulsation. Experimental validation reveals that pulsed vacuum drying (PVD) accelerates drying rates and lowers operational temperatures for cotton samples. Compared to constant vacuum drying, PVD achieves a 23% faster reduction to 5% moisture content while maintaining quality. PVD reduces drying temperature from 80 to 60 °C for the same drying time at atmospheric pressure. This article presents a numerical model to analyze fabric drying properties. Simulation results align with experimental results, with deviations in a range of 10 °C for critical temperatures and 2% for moisture content and drying time. The experimental and computational results helped to identify dryer performance key variables: chamber pressure, temperature, and vacuum pulse modulation. A series of experiments reveal optimized vacuum modulation that enhances average drying rate and minimizes drying time.
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