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Lattice Boltzmann Simulation of Airflow and Mixed Convection in a General Ward of Hospital

机译:医院普通病房内气流和混合对流的Lattice Boltzmann模拟

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In the present investigation the airflow and heat transfer for mixed convection have been simulated for a model general ward of hospital with six beds and partitions using the Lattice Boltzmann Method (LBM). Three different Reynolds numbers 100, 250, and 350 have been considered. Bounce-back condition has been applied at the wall. Results have been represented in three different case studies and the changes have been discussed in terms of streamlines and isotherms. Code validation has also been included before going through the simulation process and it shows good agreement with previously published papers when the comparison is made on average Nusselt number. Results show that the pattern of indoor airflow is varied in each and every case study due to the effect of mixed convection flow and placement of partition. In addition, the changes in average rate of heat transfer indicate that patients closer to inlet get the most air and feel better and if any patient does not need much air, he or she should be kept near the outlet to avoid temperature related complications.
机译:在本研究中,已经使用莱迪思玻尔兹曼方法(LBM)对具有六张病床和隔板的医院模型普通病房的混合对流气流和传热进行了模拟。已经考虑了三种不同的雷诺数100、250和350。墙壁已应用反跳条件。在三个不同的案例研究中代表了结果,并根据流线和等温线讨论了变化。在进行模拟过程之前,还包括代码验证,当对平均Nusselt数进行比较时,它表明与以前发表的论文有很好的一致性。结果表明,由于混合对流和隔板位置的影响,每个案例研究中室内气流的模式都不同。此外,平均传热速率的变化表明,靠近入口的患者获得的空气最多,感觉更好,如果任何患者不需要太多空气,则应将其保持在出口附近,以避免温度相关的并发症。

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