Transient and Steady-State Thermal Design Evaluation of a Carbon Monoxide Gas Sensor Using CFD Tool

T. Lee, R. Sharma, A. Peyre-Lavigne
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引用次数: 5

Abstract

This paper summarizes thermal modeling work performed on the Motorola Carbon Monoxide (CO) chemical sensor. Gas sensors need low cost reliable packages, good thermal operation, and low power consumption. The goal is to provide a validated thermal model of a gas sensor and its package and develop a sensor design capability with reduced design cycle time. Due to the complex structure of the sensor package, Computational Fluid Dynamics (CFD) tool was used to analyze the heat transfer and fluid flow within the package. Based on the validated model, parametric studies on filter location and package orientation were performed. In order to minimize the influence of humidity, the sensor is toggled between high and low temperatures by applying 5 volts for 5 seconds of heating, and 1 volt for 10 seconds of cooling. Transient thermal analysis was also performed to predict the temperature response of various components. A detailed description of the thermal model and its results are described in the paper.
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基于CFD工具的一氧化碳气体传感器瞬态和稳态热设计评价
本文综述了摩托罗拉一氧化碳(CO)化学传感器的热建模工作。气体传感器需要低成本可靠的封装,良好的热操作和低功耗。目标是提供一个经过验证的气体传感器及其封装的热模型,并在更短的设计周期内开发传感器设计能力。由于传感器封装结构复杂,采用计算流体力学(CFD)工具对封装内的传热和流体流动进行了分析。在验证模型的基础上,进行了滤波器位置和封装方向的参数化研究。为了尽量减少湿度的影响,传感器在高温和低温之间切换,通过施加5伏加热5秒,1伏冷却10秒。还进行了瞬态热分析,以预测各组分的温度响应。文中详细描述了热模型及其结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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