首页> 外文会议>ASME/JSME Joint Fluids Engineering Conference >EXAMINATION OF HEATING AND COOLING FUNCTION IN NASAL CAVITY THAT APPLIES HEAT CONDUCTION MODEL TO INNER WALL
【24h】

EXAMINATION OF HEATING AND COOLING FUNCTION IN NASAL CAVITY THAT APPLIES HEAT CONDUCTION MODEL TO INNER WALL

机译:检查鼻腔中的加热和冷却功能,将导热模型应用于内壁

获取原文

摘要

Heating is a main function of a nose. The most important contribution to this function is made by the upper respiratory tract before the air reaches the laryngotracheal region [1]. The examination of the temperature distribution in the nasal cavity by the measurement and numerical analysis was done in previous research [1-3]. However, accurate measurement of the temperature distribution in nasal cavity is technically difficult, and there isn't the research of numerical simulation about the distribution of the temperature on the wall including the inflow temperature influence. In this study, we set the temperature condition in inner wall, and we used the heat conduction model to inner wall. The heat source is a blood that surrounds the nasal cavity. It exists in the nasal cavity wall. The temperature distribution inside the nasal cavity or on the surface of the boundary wall was examined. Moreover, the nasal cavity shape was restructured with the medical CT images of the volunteer. So far, we have examined the flow in the nasal cavity according to the nasal cavity shape restructured with the CT images [4]. In result, we showed that air was heated enough by the temperature of wall and the result by the heat conduction model showed a good agreement with the measurement result of the research of Keck [1]. In addition, because flow velocity was different with the right and left nasal cavity, the temperature distribution of a right and left nasal cavity was different. Moreover, the flow profile and the temperature distribution depended on each volunteer's shape and were different.
机译:加热是鼻子的主要功能。对该功能的最重要贡献是由上呼吸道在空气到达喉头区域之前的[1]。通过测量和数值分析对鼻腔中的温度分布的检查是在先前的研究[1-3]中进行的。然而,在技术上难以精确测量鼻腔中的温度分布,并且在包括流入温度影响的壁上的温度分布上没有数值模拟的研究。在这项研究中,我们将温度条件设置在内壁中,我们将热传导模型与内壁进行了。热源是围绕鼻腔的血液。它存在于鼻腔壁中。检查鼻腔内或边界壁的表面内的温度分布。此外,用志愿者的医疗CT图像重组鼻腔形状。到目前为止,我们已经根据用CT图像重组的鼻腔形状检查鼻腔中的流动[4]。在结果中,我们表明,通过壁的温度,通过壁的温度来加热空气,导热模型的结果表明了keck [1]的研究的测量结果。另外,由于流速与右侧和左鼻腔不同,所以右侧鼻腔的温度分布是不同的。此外,流程轮廓和温度分布依赖于每个志愿者的形状并且不同。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号