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Analysis of the Thermal Insulation of Textiles Using Thermography and CFD Simulation Based on Micro-CT Models

机译:基于Micro-CT模型的热成像和CFD仿真纺织品隔热分析

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摘要

The article presents the results of an attempt to use high-resolution X-ray micro-computed tomography (micro-CT) to model the thermal insulation of clothing as one of the most important parameters affecting the heat balance between a human and his/her surroundings. Cotton knitted fabric applied in functional clothing for newborns and aramid woven fabric used in multilayer protective clothing for firefighters were the tested materials. The 3D models of real textiles based on micro-CT images were developed. Next, the models were applied to heat transfer simulations using the finite volume method. The usefulness of the models was experimentally verified using thermography with real textiles. The simulation results were consistent with the measurement results and confirmed the relationship between the thermal insulation and geometry of the textiles on the one hand and the physical parameters of the raw materials from which they were made on the other hand.
机译:该物品提出了尝试使用高分辨率X射线微型计算机断层扫描(Micro-CT)来模拟衣服的保温作为影响人类和他/她之间的热平衡的最重要参数之一的结果环境。棉针织面料适用于用于新生儿和芳纶织物的功能性服装,用于消防员的多层保护衣物是测试的材料。开发了基于Micro-CT图像的真实纺织品的3D模型。接下来,使用有限体积法将模型应用于传热模拟。模型的有用性是用真正的纺织品进行实验验证的。模拟结果与测量结果一致,并确认了纺织品的热绝缘和几何形状之间的关系,另一方面,原料的物理参数。

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