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Simulation of heat transfer process of thermal protective clothing based on FPGA and sensor processing system

机译:基于FPGA和传感器处理系统的热防护服传热过程仿真

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摘要

Low radiation exposure to the heat transfer of the heat flux protective clothing. Field Programmable Gate Arrays (FPGA) simulation software and the sensor are used to model the heat transfer through a particular multilayer textile structure. The transfer model is verified by comparison with experimental data. In the previous method, is Initial results with the corresponding experimental results are very consistent. The first of a series of tasks to optimize thermal performance for protective clothing in thermal comfort. It protects the skin from exposure to low-intensity aspects of thermal damage caused by heat radiation has the best performance. Exposed to heat and flame, the clothes will burn. However, these burns? nature depends mostly on the fabric, the fabric structure, garment moisture, and the heart of the finishing agent used. The proposed method improves combustion speed will not change wool than other natural fibers (e.g., cotton, linen, and silk) faster. Gas weaved or loosely woven fabric relatively intact motion of light, tight and more massive than the fabric structure to promote faster flame propagation of these materials.
机译:低辐射暴露于热通量保护性衣服的传热。现场可编程门阵列(FPGA)仿真软件和传感器用于通过特定的多层纺织结构进行模拟传热。通过与实验数据进行比较验证转移模型。在先前的方法中,具有相应的实验结果是非常一致的初始结果。第一系列任务中的第一个优化热舒适性防护服的热性能。它保护皮肤免受热辐射引起的热损坏的低强度方面的暴露,具有最佳性能。暴露在热量和火焰中,衣服会燃烧。但是,这些烧伤了?自然主要取决于织物,织物结构,服装水分和使用的精加工剂的心脏。所提出的方法提高燃烧速度不会比其他天然纤维(例如,棉,亚麻和丝)更快地改变羊毛。气体编织或松散地编织织物的光线相对完整,紧密且更大幅大于织物结构,以促进这些材料的更快的火焰繁殖。

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