首页> 外文会议>International Conference on Parallel Computational Fluid Dynamics >Application of Computational Fluid Dynamics to Simulate a Steady Airflow in all Regions of Chimpanzee's Nasal Cavity
【24h】

Application of Computational Fluid Dynamics to Simulate a Steady Airflow in all Regions of Chimpanzee's Nasal Cavity

机译:计算流体动力学在黑猩猩鼻腔的所有地区模拟稳定气流

获取原文

摘要

Knowing the detailed responses associated with the environment of our closest living relative allows us to comprehend more data about apes which may be useful to conclude hypotheses regarding the behavior of early hominins. The difference between humans and apes toward the adaptability to the living environment is caused by the difference among both bodies' biological functions such as the nasal cavity biological function. Indeed, the temperature and the humidity of the inhaled air are adjusted by the heat and the water exchange in the nasal cavity wall's surface. In order to understand the nasal cavity functions for the adjustment of the temperature and the humidity of the inhaled air, it is necessary to know the flow distribution during breathing process. To do so, a noninvasive measurement is hard to be held. Therefore, this study simulates a laminar steady airflow, in a realistic adult male chimpanzee's nasal cavity shape reconstructed from Computed Tomography (CT) images, using CFD. So far, an airflow study related to chimpanzee's nasal cavity has not been previously reported. We present for the first time a computer simulation of a realistic chimpanzee's nasal cavity flow. This study uses a model with heat and humidity transport. The governing equations include a continuum equation and the equations describing momentum, energy, and water transport. The findings are in agreement with the expected results directly inferred from the biological function of the nasal cavity itself.
机译:了解与我们最接近生活的环境相关的详细响应使我们能够理解有关猿类的更多数据,这可能是关于在早期母素的行为的假设结论假设。人类与猿人对生活环境的适应性的差异是由鼻腔生物学功能的诸如鼻腔生物学功能的差异引起的。实际上,吸入空气的温度和湿度被鼻腔壁表面的热量和水交换调节。为了了解鼻腔功能,用于调节吸入空气的温度和湿度,有必要在呼吸过程中知道流动分布。为此,难以举行非侵入性测量。因此,本研究模拟了层流稳定的气流,在使用CFD的计算机断层扫描(CT)图像中重建的现实成年男性黑猩猩的鼻腔形状。到目前为止,以前没有报道与黑猩猩鼻腔相关的气流研究。我们首次出现了一个逼真的黑猩猩鼻腔的计算机模拟。本研究使用具有热和湿度运输的模型。控制方程包括连续式方程和描述动量,能量和水运输的方程。这些发现与直接从鼻腔本身的生物学功能直接推断出预期结果。

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