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Modeling of Indoor Air Quality and Comfort In The Tombs of Valley Of Kings

机译:帝王谷陵室内空气质量和舒适度建模

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摘要

Airflow characteristics in ventilated and air-conditioned spaces play an important role to attain comfort and hygiene conditions. This paper utilizes a 3D Computational Fluid Dynamics (CFD) model to assess the airflow characteristics in ventilated and air-conditioned archeological tombs of Egyptian Kings in the Valley of the Kings in Luxor, Egypt. It was found that the optimum airside design system can be attained, if the airflow is directed to pass all the enclosure areas before being extraction with careful selection of near wall velocities to avoid any wear or abrasion of the tomb-wall paintings. In this model conditioned air is allowed to enter the tomb from its entrance with a large area of admission in order to maintain low air velocity while extraction points are distributed along the tomb axis. The mode of evaluation should assess the airflow characteristics in any tomb passage according to its position in the enclosure and the thermal pattern and air quality. The Governing Equations are numerically solved in a three dimensional grid configurations at more than 500000 nodes. The paper addresses the various modeling aspects and constraints and suggests solutions that are viable and do not affect the tomb construction, interior nor sustainability.
机译:通风和空调空间的气流特性在获得舒适和卫生条件方面起着重要作用。本文利用3D计算流体动力学(CFD)模型评估埃及卢克索国王谷中埃及国王的通风和空调考古墓葬中的气流特征。已经发现,如果在抽取气流之前引导气流通过所有围护区域,并仔细选择近壁速度,以免墓壁画磨损或磨损,则可以获得最佳的空侧设计系统。在该模型中,允许经过调节的空气以较大的进入面积从其入口进入坟墓,以保持较低的风速,同时沿坟墓轴分布提取点。评估方式应根据墓穴在围墙中的位置以及热量分布和空气质量来评估其在墓穴中的气流特性。在超过500万个节点的三维网格配置中,对控制方程进行了数值求解。本文讨论了各种建模方面和约束条件,并提出了可行的解决方案,并且不会影响墓葬的结构,内部或可持续性。

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