Successful reduction of indoor radon activity concentration via cross-ventilation: experimental data and CFD simulations.

IF 1.1 4区 环境科学与生态学 Q4 CHEMISTRY, INORGANIC & NUCLEAR Isotopes in Environmental and Health Studies Pub Date : 2024-03-01 Epub Date: 2024-01-31 DOI:10.1080/10256016.2023.2282686
Diana Altendorf, Henning Wienkenjohann, Florian Berger, Jörg Dehnert, Hannes Grünewald, Dmitri Naumov, Ralf Trabitzsch, Holger Weiß
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Abstract

Advanced computational fluid dynamics (CFD) simulations are essential for predicting airflow in ventilated spaces and assessing indoor air quality. In this study, a focus was set on techniques for the reduction of indoor radon-222 activity concentration [Rn], and it is demonstrated how true-to-scale 3D CFD models can predict the evolution of complex ventilation experiments. A series of ventilation experiments in an unoccupied flat on the ground floor of a residential block in Bad Schlema (Saxony, Germany) were performed. Specifically, the 'Cross-ventilation 100 %' experiment resulted in room-specific [Rn] reductions from ∼3000 to ∼300 Bq m-3. We quantitatively interpreted the results of the ventilation experiment using a CFD model with a k-ϵ turbulent stationary flow model characterised by the used decentralised ventilation system. The model was coupled with a transient transport model simulating indoor [Rn]. In a first approach, the model overestimated the decrease in the starting of the experiment and the steady state. Adjusting the model parameters inflowing radon and inlet velocity the model results are in a good agreement with the experimental values. In conclusion, this paper demonstrates the potential of CFD modelling as a suitable tool in evaluating and optimising ventilation systems for an effective reduction of elevated [Rn].

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通过交叉通风成功降低室内氡活度浓度:实验数据和CFD模拟。
先进的计算流体动力学(CFD)模拟对于预测通风空间的气流和评估室内空气质量至关重要。在本研究中,重点研究了降低室内氡-222活性浓度[Rn]的技术,并展示了真实比例的3D CFD模型如何预测复杂通风实验的演变。在Bad Schlema(德国萨克森州)的一个住宅楼的一层无人居住的公寓里进行了一系列的通风实验。具体来说,“100%交叉通风”实验导致特定房间的[Rn]从~ 3000 Bq - m-3减少到~ 300 Bq - m-3。我们使用以分散式通风系统为特征的k- λ湍流稳态流模型的CFD模型定量解释了通风实验的结果。该模型与模拟室内的瞬态输运模型耦合[Rn]。在第一种方法中,模型高估了实验开始时和稳态时的下降。调整模型参数和入口速度,模型结果与实验值吻合较好。总之,本文证明了CFD建模作为评估和优化通风系统的合适工具的潜力,以有效减少升高的[Rn]。
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来源期刊
CiteScore
2.80
自引率
7.70%
发文量
21
审稿时长
3.0 months
期刊介绍: Isotopes in Environmental and Health Studies provides a unique platform for stable isotope studies in geological and life sciences, with emphasis on ecology. The international journal publishes original research papers, review articles, short communications, and book reviews relating to the following topics: -variations in natural isotope abundance (isotope ecology, isotope biochemistry, isotope hydrology, isotope geology) -stable isotope tracer techniques to follow the fate of certain substances in soil, water, plants, animals and in the human body -isotope effects and tracer theory linked with mathematical modelling -isotope measurement methods and equipment with respect to environmental and health research -diagnostic stable isotope application in medicine and in health studies -environmental sources of ionizing radiation and its effects on all living matter
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