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Enhancing the energy efficiency of domestic dryer by drying process optimization

机译:通过干燥工艺优化提高家用干燥机的能效

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摘要

The domestic tumble dryers are becoming indispensable household appliances and responsible for up to 10% of the total residential energy use in developed countries. However, their energy efficiency is low. In this paper, the development of a multi-sensor computer-controlled prototype platform for fabric drying is described for improving the efficiency of dryers. The prototype platform enables the real-time control and recording of key drying parameters including heater power, air flow velocity, rotating speed of drying drum and drying cycle time. These parameters are automatically adjusted according to the exhaust air humidity instead of the temperature which is used traditionally. Additionally, a new drying model of dividing the drying process into 4 stages based on the humidity of the exhaust air has been investigated in order to further increase the energy saving. The performance of this staged drying model is experimentally evaluated in respect to energy consumption, drying time, and the smoothness of fabric after drying. The results clearly indicate that the staged controlling of heating power input not only decreases energy consumption by 21.5% but also improves the fabric smoothness by 0.9 grade compared to using a single heating power input for the whole drying process. The research outcome can enable the design and production of new dryers that are more energy efficient and lead to dried clothes that require less ironing, which in turn further reduces energy consumption.
机译:家用滚筒式干衣机已成为必不可少的家用电器,并占发达国家住宅能源总使用量的10%。但是,它们的能量效率低。在本文中,描述了用于织物干燥的多传感器计算机控制原型平台的开发,以提高干燥机的效率。该原型平台能够实时控制和记录关键的干燥参数,包括加热器功率,空气流速,干燥鼓的转速和干燥周期。这些参数是根据排气湿度自动调节的,而不是传统上使用的温度。另外,已经研究了一种新的干燥模型,该模型基于废气的湿度将干燥过程分为四个阶段,以进一步提高节能效果。从能耗,干燥时间和干燥后织物的光滑度方面,对该阶段干燥模型的性能进行了实验评估。结果清楚地表明,与在整个干燥过程中使用单个加热功率输入相比,分阶段控制加热功率输入不仅将能耗降低了21.5%,而且将织物的光滑度提高了0.9级。研究成果可以使新烘干机的设计和生产更加节能,从而使干衣需要的熨烫次数更少,从而进一步降低了能耗。

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