Aguiar Martim, Gaspar Pedro Dinis, Silva Pedro Dinho
Faculty of Engineering, Department of Electromechanical Engineering, University of Beira Interior, Rua Marquês d'Ávila e Bolama, 6201-001 Covilhã, Portugal.
C-MAST-Centre for Mechanical and Aerospace Science and Technologies, 6201-001 Covilhã, Portugal.
Sensors (Basel). 2023 Jun 1;23(11):5253. doi: 10.3390/s23115253.
Heat exchangers (HXs) play a critical role in maintaining human thermal comfort and ensuring product safety and quality in various industries. However, the formation of frost on HX surfaces during cooling operations can significantly impact their performance and energy efficiency. Traditional defrosting methods primarily rely on time-based control of heaters or HX operation, overlooking the actual frost formation pattern across the surface. This pattern is influenced by ambient air conditions (humidity and temperature) and surface temperature variations. To address this issue, frost formation sensors can be strategically placed within the HX. However, the non-uniform frost pattern poses challenges in sensor placement. This study proposes an optimized sensor placement approach using computer vision and image processing techniques to analyze the frost formation pattern. Through creating a frost formation map and evaluating various sensor locations, frost detection can be optimized to control defrosting operations with higher accuracy, thereby enhancing the thermal performance and energy efficiency of HXs. The results demonstrate the effectiveness of the proposed method in accurately detecting and monitoring frost formation, providing valuable insights for sensor placement optimization. This approach presents significant potential in enhancing the overall performance and sustainability of the operation of HXs.
热交换器(HXs)在维持人体热舒适度以及确保各行业产品安全与质量方面发挥着关键作用。然而,在冷却操作过程中,热交换器表面结霜会显著影响其性能和能源效率。传统的除霜方法主要依赖于对加热器或热交换器运行的基于时间的控制,而忽略了整个表面实际的结霜模式。这种模式受环境空气条件(湿度和温度)以及表面温度变化的影响。为解决这一问题,可在热交换器内合理放置结霜传感器。然而,结霜模式的不均匀性给传感器的放置带来了挑战。本研究提出一种优化的传感器放置方法,利用计算机视觉和图像处理技术来分析结霜模式。通过创建结霜模式图并评估各种传感器位置,可以优化结霜检测,从而更精确地控制除霜操作,进而提高热交换器的热性能和能源效率。结果表明所提方法在准确检测和监测结霜方面的有效性,为传感器放置优化提供了有价值的见解。这种方法在提高热交换器运行的整体性能和可持续性方面具有巨大潜力。