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Integration of large-scale experiments and numerical simulations for the calibration of friction laws in volcanic conduit flows

机译:大规模实验和数值模拟相结合,用于校准火山管道中的摩擦规律

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The eruptive columns of explosive volcanism are fed by a gas-particle conduit flow, which characteristics determine the eruptive regime and are important for assessing the hazard of active volcanoes. In this paper, by means of the combined use of large-scale experiments and numerical modeling, a study on some parameters of the gas-particle conduit flow of explosive eruptions is carried out. A 1D two-phase non-homogeneous Eulerian-Eulerian model has been developed for checking the influence of some crucial quantities: interphase drag, particle-wall friction and particle shape factor. Hundreds of different parameters combinations are tested and used for the simulation of controlled experimental runs. The parameter combination that best fits the whole set of experiments, including both column collapses and convective plumes, results into an average error of about 10%. A further analysis has been carried out to determine the sensitivity of solutions to model parameters. The choice of the interphase drag does not influence dramatically the solution, except for highly concentrated flows. The particle shape factor severely affects gas and particle velocities. The influence of various particle-wall friction laws, which were originally obtained in pneumatic engineering, is thoroughly investigated, as the suitability of these laws has never been proved in volcanology. A detailed parametric analysis allowed the re-calibration of two of these laws, which are now specifically tailored for the case of highly concentrated conduit flows that feed collapsing columns, and dilute flows that feed convective plumes.
机译:爆炸性火山的爆发柱由气体颗粒导管流供入,该特性决定了爆发状态,对评估活火山的危害性很重要。本文通过大规模实验和数值模拟相结合的方法,对爆炸性喷发的气固两相流一些参数进行了研究。已经开发出一维两相非均质欧拉-欧拉模型,以检查一些关键量的影响:相间阻力,颗粒壁摩擦力和颗粒形状因子。测试了数百种不同的参数组合,并将其用于模拟受控实验运行。最适合整个实验的参数组合,包括柱塌陷和对流羽流,平均误差约为10%。已经进行了进一步的分析以确定溶液对模型参数的敏感性。除高度集中的流量外,相间阻力的选择不会显着影响解决方案。颗粒形状因子严重影响气体和颗粒的速度。由于尚未在火山学中证明这些定律的适用性,因此对在气动工程中最初获得的各种颗粒壁摩擦定律的影响进行了彻底的研究。进行详细的参数分析后,可以重新校准其中两个定律,这些定律现在专门针对高浓度的导管流(供入塌陷柱)和稀释液(供对流羽流)使用。

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