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首页> 外文期刊>E3S Web of Conferences >Thermal Comfort Analysis in Naturally-Ventilated Handball Arena Utilizing CFD Techniques
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Thermal Comfort Analysis in Naturally-Ventilated Handball Arena Utilizing CFD Techniques

机译:利用CFD技术在自然通风的手球竞技场中进行热舒适性分析

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摘要

This work investigates the feasibility and thermal comfort of using natural ventilation in order to achieve thermal comfort in a handball arena with realistic dimensions and a full occupation of 4300 persons in the Gulf area. The work numerically simulates the temperature and velocity fields inside the full arena using computational fluid dynamics techniques at different internal loads, prevailing wind speeds, prevailing wind temperatures and prevailing wind angles. The work generates certain air opening configuration to be used for natural ventilation and the results show that natural ventilation is feasible if the following conditions are met simultaneously: the occupation density is 25% or less, sitting in the prevailing wind side, the lighting load does not exceed 50% of its full capacity, the prevailing wind temperature does not exceed 30 °C and the prevailing wind velocity is in range 3-4 m/s, where the upper limit arises from the requirement to avoid high velocities in the playing area. These conditions can be met during the training time and during parts of the day and over parts of the year hours making this method conditionally feasible.
机译:这项工作研究了使用自然通风的可行性和热舒适性,以便在手球赛场上达到逼真的尺寸并在海湾地区完全占领4300人,从而获得热舒适感。这项工作使用计算流体力学技术,在不同的内部载荷,盛行风速,盛行风温和盛行风角下,通过计算流体动力学技术对整个竞技场内的温度和速度场进行了数值模拟。该工作产生了一定的通风口配置,可用于自然通风,结果表明,如果同时满足以下条件,则自然通风是可行的:居住密度为25%或更低,位于盛行风侧,照明负荷不超过其最大容量的50%,盛行的风温不超过30°C,盛行的风速在3-4 m / s范围内,其中的上限是出于避免在游戏区域内高速行驶的要求。这些条件可以在培训期间,一天中的部分时间以及一年中的部分时间满足,从而使该方法有条件地可行。

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