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用于优化制冷系统按需除霜的霜冻检测电阻式传感器的增材制造

Additive Manufacturing of a Frost-Detection Resistive Sensor for Optimizing Demand Defrost in Refrigeration Systems.

作者信息

Aguiar Martim Lima de, Gaspar Pedro Dinis, Silva Pedro Dinho da

机构信息

Department of Electromechanical Engineering, University of Beira Interior, Rua Marquês d'Ávila e Bolama, 6201-001 Covilhã, Portugal.

C-MAST-Center for Mechanical and Aerospace Science and Technologies, 6201-001 Covilhã, Portugal.

出版信息

Sensors (Basel). 2024 Dec 22;24(24):8193. doi: 10.3390/s24248193.

Abstract

This article presents the development of a resistive frost-detection sensor fabricated using Fused Filament Fabrication (FFF) with a conductive filament. This sensor was designed to enhance demand-defrost control in industrial refrigeration systems. Frost accumulation on evaporator surfaces blocks airflow and creates a thermal insulating barrier that reduces heat exchange efficiency, increasing energy consumption and operational costs. Traditional timed defrosting control methods can mitigate these effects but often lead to inefficiencies due to their inability to align with actual frost accumulation, which can vary according to system and environmental conditions. Frost-detection sensors aim to solve this problem by acting as a tool to support defrosting control. A series of tests were conducted to evaluate the sensor's performance in detecting frost under controlled conditions on a heat exchanger (HX). The sensor reliably detected frost in all cases, demonstrating its effectiveness in real-time frost detection. The sensor measurements were validated by comparison with results obtained through a computer vision method, confirming its reliability. It was also found that the sensor can detect temperature changes. This advancement in sensor technology highlights the potential of additive manufacturing to provide cost-effective, customizable, replicable, and compact sensor designs, contributing to improved system performance and energy efficiency in refrigeration systems.

摘要

本文介绍了一种采用熔丝制造(FFF)技术和导电丝材制造的电阻式霜冻检测传感器的研发情况。该传感器旨在加强工业制冷系统中的按需除霜控制。蒸发器表面的霜层堆积会阻碍气流,并形成隔热屏障,从而降低热交换效率,增加能源消耗和运营成本。传统的定时除霜控制方法可以减轻这些影响,但由于无法与实际的霜层堆积情况相匹配,往往会导致效率低下,而实际的霜层堆积会因系统和环境条件而异。霜冻检测传感器旨在通过作为支持除霜控制的工具来解决这一问题。在热交换器(HX)上进行了一系列测试,以评估该传感器在受控条件下检测霜冻的性能。该传感器在所有情况下都能可靠地检测到霜,证明了其在实时霜冻检测方面的有效性。通过与计算机视觉方法获得的结果进行比较,验证了传感器的测量结果,证实了其可靠性。还发现该传感器能够检测温度变化。传感器技术的这一进步凸显了增材制造在提供经济高效、可定制、可复制且紧凑的传感器设计方面的潜力,有助于提高制冷系统的性能和能源效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62e6/11679009/b55f0731e2ac/sensors-24-08193-g001.jpg

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