基于物联网的空气源热泵干燥系统能效评价研究

Chunguang Lu, Mengliang Ge, Leina Song, Jiliang Wu, G. Pan, Haipeng Wang
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引用次数: 0

摘要

空气源热泵利用电能代替传统的木材燃烧来干燥经济作物,具有自动化程度高、节能环保、降低成本、提高效率等优点。为了评价空气源热泵在电热转换和干燥加热过程中的能效,提出了两个等级的能效指标。一次能效指标可以衡量电热转换和回收的利用效率,二次能效指标可以直接衡量电能对输出的输出效率。为提高干燥系统的自动化能力,设计开发了基于物联网(IoT)的空气源热泵干燥系统远程监控系统,可在云和手持终端在线实时监控空气源热泵干燥系统的运行过程和状态,控制干燥运行的工艺流程,并可计算二级能效指标。基于物联网的远程监控系统起到了保护和用电安全的作用。食用菌干燥实验表明,物联网空气源热泵干燥系统具有自动化程度高、效率高、使用方便等优点,可有效评价空气源热泵在食用菌干燥过程中的能效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy efficiency Evaluation Study on the Air Source Heat Pump Drying System Based on Internet of Things
The air source heat pump (ASHP) using electric energy instead of traditional wood burning to dry cash crops has the advantages of high automation, energy saving and environmental protection, cost reduction, and efficiency. Aiming to evaluate the energy efficiency in the process of electric heat conversion and drying heating of air source heat pumps, two levels of energy efficiency indexes have been proposed. The primary energy efficiency index can measure the utilization efficiency of electric heat conversion and recovery, and the secondary index can directly measure the output efficiency of electric energy on output. Aiming to improve the automatic ability of the drying system, a remote monitoring system of air source heat pump drying system has been designed and developed based on the Internet of Things (IoT), which can monitor the operation process and status of air source heat pump drying system online in real-time in the cloud and handheld terminal, and control the process flow of drying operation, and also can calculate the two-level energy efficiency indexes. The remote monitoring system based on IoT plays the role of protection and electricity safety. The drying experiments of edible mushrooms show that the IoT air source heat pumping drying system has the advantages of high automation, high efficiency, and convenience, and can effectively evaluate the energy efficiency of the air source heat pump in the drying process of edible mushrooms.
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