Measurement and analysis of fish pond water temperature field in summer based on fiber Grating string.

IF 2.6 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES PLoS ONE Pub Date : 2025-01-31 eCollection Date: 2025-01-01 DOI:10.1371/journal.pone.0317523
Guoli Li, Fei Feng, Caihua Qian, Bo Wei
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Abstract

To solve the problems of low detection efficiency and inability to adapt to distributed measurement in traditional detection methods, a water temperature field detection system based on a fiber Bragg grating string was designed. In this system, six fiber Bragg gratings with different center wavelengths are connected in series on a single fiber optic cable based on wavelength division multiplexing technology. The fiber Bragg grating string is encapsulated in stainless steel tube and vertically fixed in the measured water body of the fish pond. The space division multiplexing technology is employed to collect information from multiple fiber Bragg grating strings. Water temperature measurement experiments were conducted in the summer pond environment. The experimental results show that the daily variation curve of temperature in each water layer of the fish pond is relatively smooth and approximates a cosine function with a 24-hour period. In summer, the daily average water temperature in the pond is no more than 1°C higher than the average air temperature. The difference between the maximum and the minimum water temperature is approximately 2°C. During the daytime, the temperature gradually decreases from the surface to the deeper water layers, whereas at night, the temperature variation among the water layers is minimal. As depth increases, the amplitude of the water temperature curve oscillations gradually decreases, exhibiting exponential decay. However, the peak time gradually lags behind. There is a correlation between the temperatures of the water layers in the fish pond, and the smaller the distance between the water layers, the stronger the correlation. The experimental results obtained in this study are highly significant for real-time services in aquatic planting and aquaculture. Additionally, this measurement method can provide valuable reference and guidance for measuring temperature fields in other fluids.

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基于光纤光栅串的夏季鱼塘水温场测量与分析。
为解决传统检测方法检测效率低、不适应分布式测量的问题,设计了一种基于光纤光栅串的水温场检测系统。该系统采用波分复用技术,将6个中心波长不同的光纤布拉格光栅串联在一根光纤电缆上。光纤布拉格光栅串封装在不锈钢管中,垂直固定在鱼塘被测水体中。采用空分复用技术对多个光纤光栅串进行信息采集。在夏季池塘环境下进行水温测量实验。实验结果表明,鱼塘各水层温度的日变化曲线较为光滑,近似于一个24小时周期的余弦函数。夏季池塘日平均水温比平均气温不高于1℃。最高水温与最低水温之差约为2℃。白天从表层到深层温度逐渐降低,而夜间各水层之间的温度变化最小。随着深度的增加,水温曲线振荡幅度逐渐减小,呈现指数衰减。然而,峰值时间逐渐滞后。鱼塘各水层温度之间存在相关性,且水层间距离越小,相关性越强。本研究获得的实验结果对水产种植和水产养殖的实时服务具有重要意义。此外,该测量方法可为其他流体温度场的测量提供有价值的参考和指导。
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来源期刊
PLoS ONE
PLoS ONE 生物-生物学
CiteScore
6.20
自引率
5.40%
发文量
14242
审稿时长
3.7 months
期刊介绍: PLOS ONE is an international, peer-reviewed, open-access, online publication. PLOS ONE welcomes reports on primary research from any scientific discipline. It provides: * Open-access—freely accessible online, authors retain copyright * Fast publication times * Peer review by expert, practicing researchers * Post-publication tools to indicate quality and impact * Community-based dialogue on articles * Worldwide media coverage
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