INVESTIGATING INDOOR AIR QUALITY AND THERMAL COMFORT USING DIFFERENT VENTILATION SYSTEMS UNDER IRAQI CLIMATE

A. A. Mahdi, S. Abbas
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Abstract

Computational Fluid Dynamics (CFD) of indoor environment as well as qualityconsiderations are important element in the study of energy consumption, thermal comfortand indoor air quality in buildings. This paper investigate a comparison work betweenimpinging jet, displacement, and mixing ventilation systems for an isothermal and nonisothermalventilated room for Indoor Air Quality (IAQ) and thermal human comfort underIraqi climate. For IJV system, draught discomfort is the issue of most concern since itsupplies cooled air directly to the occupied zone. This study investigated a number of factorsinfluencing draught discomfort and temperature stratification in an office environment. Theconsidered factors, supply airflow rate and supply air temperature. RNG K-? turbulencemodel was used with the turbulent flow. The second aspect included numerical analyses byadopting ANSYS FLUENT15 code to generate simulation models. A square shaped airsupply device was used with [0.1 times room height (h)] outlet terminal height from the footlevel end. The IJV system proved more efficient than displacement and mixing ventilationsystems. The Air Distribution Performance Index (ADPI) obtained for an isothermal andnon-isothermal ventilated room adopting IJV system gave best values (0.80, 0.83)respectively compared with the other two ventilation systems.
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研究伊拉克气候条件下不同通风系统的室内空气质量和热舒适性
室内环境的计算流体力学(CFD)和质量考虑是研究建筑能耗、热舒适和室内空气质量的重要因素。本文研究了在伊拉克气候条件下,对等温和非等温不通风房间的室内空气质量(IAQ)和人体热舒适性进行了对比研究。对于IJV系统来说,由于它直接向被占用区域提供冷却空气,因此气流不适是最受关注的问题。本研究调查了办公室环境中影响通风不适和温度分层的一些因素。考虑的因素为送风风速和送风温度。RNG K - ?紊流模型采用紊流模型。二是数值分析,采用ANSYS FLUENT15代码生成仿真模型。采用方形送风装置,出风口端距足部高度为[0.1倍房间高度(h)]。事实证明,IJV系统比置换和混合通风系统更有效。采用IJV系统的等温和非等温通风房间的气流组织性能指数(ADPI)与其他两种通风系统相比分别为0.80和0.83。
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审稿时长
24 weeks
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