使用三维温度测量系统对风扇加热器进行数学建模
Dogan Can Samuk1, Oguzhan Cakir2
1Department of Electrical and Electronics Engineering, Faculty of Engineering and Architecture, Recep Tayyip Erdogan University, Rize, 53100, Türkiye. dogancan.samuk@erdogan.edu.tr.
Scientific reports
|November 29, 2025
概括
一个新的3D温度测量系统优化了电热器设计,以节省能源. 该系统使用81个传感器,准确地模拟了加热器的性能,提高了效率.
科学领域:
- 工程 工程师 工程师 工程师
- 热科学 热科学 热科学
- 测量系统 测量系统
背景情况:
- 由于方便和效率,电热器无处不在.
- 优化加热器设计对于节能至关重要.
- 为了有效建模,需要准确的温度分布数据.
研究的目的:
- 为电热器开发一个三维 (3D) 温度测量系统.
- 创建精确的3D加热模型,以改善加热器设计和生产.
- 为了验证从实验加热数据中得出的数学模型.
主要方法:
- 设计了一种具有0.0489°C灵敏度的新型传感器电路.
- 在加热器的xy平面和z轴沿着9x9矩阵中排列了81个传感器.
- 使用风扇加热器的实验数据开发了3D加热模型.
- 通过使用误差指标推导和验证了一个数学加热器模型.
主要成果:
- 3D温度测量系统实现了高灵敏度.
- 实验数据有助于创建精确的3D加热模型.
- 由此衍生的数学模型与测量结果显示出极好的一致性.
- 平均平均绝对误差为0.30°C,在五种配置中R2为98.18%.
结论:
- 开发的3D温度测量系统可实现精确的加热器分析.
- 从这个系统中获得的精确数学模型可以优化电热器设计.
- 这种方法有助于提高能源效率和节省电热应用.
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