globalchange  > 过去全球变化的重建
DOI: 10.1016/j.scitotenv.2019.03.074
WOS记录号: WOS:000463663500032
论文题名:
On the interactions between airflow and ice melting in ice caves: A novel methodology based on computational fluid dynamics modeling
作者: Bertozzi, Barbara1; Pulvirenti, Beatrice2; Colucci, Renato R.3,4; Di Sabatino, Silvana5
通讯作者: Pulvirenti, Beatrice
刊名: SCIENCE OF THE TOTAL ENVIRONMENT
ISSN: 0048-9697
EISSN: 1879-1026
出版年: 2019
卷: 669, 页码:322-332
语种: 英语
英文关键词: Ice cave ; CFD approach ; Heat transfer ; Ice melting ; Climate change
WOS关键词: PERMAFROST ; EVOLUTION ; GLACIERS ; ALPS
WOS学科分类: Environmental Sciences
WOS研究方向: Environmental Sciences & Ecology
英文摘要:

Motivated by progressive climate-change influence on ice degradation in caves, in this paper we present a novel methodology to investigate the link between air dynamics and ice melting. Specifically, we use surveys available for the Leupa ice cave (LIC), located in the Canin-Kanin group in the southeastern Alps and a general purpose computational fluid dynamics model (CFD). Detailed numerical simulations are evaluated on the basis of well-established approaches that consider domain, grid, boundary-conditions, turbulence closure models, buoyancy effects, porous media properties and verification with measured data. External atmospheric conditions are the main trigger for internal circulation but morphology and thermal characteristics of ice and bedrock induce a dynamical process of heat exchange ultimately responsible for ice melting. This process is generally poorly documented in real conditions. Using CFD analyses we show that both in summer and winter, warm and cold air currents within the cave are "disturbed" by several vortices and stagnation zones which locally modify the energy balance. To account for this we introduce a macroscopic physical model based on energy balance between ice surfaces and the inner ice cave airflow to determine the heat exchanged between ice and air. Using this model, a prediction of ice thickness decay over time is obtained. In the case of LIC a reduction of initial 4cm per year is first obtained with projection of a much faster increase. The methodology is general and easily extendable to other sites, proving to be a powerful method to estimate ice evolution in caves induced by external and internal forcing. (C) 2019 Elsevier B.V. All rights reserved.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/140362
Appears in Collections:过去全球变化的重建

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作者单位: 1.Karlsruhe Inst Technol, Inst Meteorol & Climate Res, Karlsruhe, Germany
2.Univ Bologna, Dept Ind Engn, Bologna, Italy
3.CNR Trieste, ISMAR, Dept Earth Syst Sci & Environm Technol, Trieste, Italy
4.Soc Alpina Giulie Trieste, E Boegan Cave Commiss, Trieste, Italy
5.Univ Bologna, Dept Phys & Astron, Bologna, Italy

Recommended Citation:
Bertozzi, Barbara,Pulvirenti, Beatrice,Colucci, Renato R.,et al. On the interactions between airflow and ice melting in ice caves: A novel methodology based on computational fluid dynamics modeling[J]. SCIENCE OF THE TOTAL ENVIRONMENT,2019-01-01,669:322-332
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