Yang Liu, Nam Dinh
The two-fluid model based Multiphase Computational Fluid Dynamics (MCFD) has been considered as one of the most promising tools to investigate two-phase flow and boiling system for engineering purposes. The MCFD solver requires closure relations to make the conservation equations solvable. The wall boiling closure relations, for example, provide predictions on wall superheat and heat partitioning. The accuracy of these closure relations significantly influences the predictive capability of the solver. In this paper, a study of validation and uncertainty quantification (VUQ) for the wall boiling closure relations in MCFD solver is performed. The work has three purposes: i) identify influential parameters to the quantities of interest of the boiling system through sensitivity analysis; ii) evaluate the parameter uncertainty through Bayesian inference with the support of multiple datasets; iii) quantitatively measure the agreement between solver predictions and datasets. The widely used Kurul-Podowski wall boiling closure relation is studied in this paper. Several statistical methods are used, including Morris screening method for global sensitivity analysis, Markov Chain Monte Carlo (MCMC) for inverse Bayesian inference, and confidence interval as the validation metric. The VUQ results indicated that the current empirical correlations-based wall boiling closure relations achieved satisfactory agreement on wall superheat predictions. However, the closure relations also demonstrate intrinsic inconsistency and fail to give consistently accurate predictions for all quantities of interest over the well-developed nucleate boiling regime.
@article{967ae306-626e-4a10-af7c-39668c470264,
title={Validation and Uncertainty Quantification for Wall Boiling Closure Relations in},
author={Yang Liu and Nam Dinh},
year={2017},
language={English}
}TY - JOUR TI - Validation and Uncertainty Quantification for Wall Boiling Closure Relations in AU - Yang Liu AU - Nam Dinh PY - 2017 LA - English ER -
Wing Kam Liu, Shaofan Li
This paper commemorates the eightieth anniversary of the finite element method (FEM), highlighting its evolution, revolutionary impact, and future pot
Aminata Diouf, Bruno Belzile
Spherical robots have garnered increasing interest for their applications in exploration, tunnel inspection, and extraterrestrial missions. Diverse de
Abhishek Rai, N.S Thakur
In recent years, researchers have focused on the storage of direct sunlight in the form of heat by utilizing temperature changes through various techn
Abhinaba Banerjee, Sudipto Datta
Bioprinting is an enabling biofabrication technique to create heterogeneous tissue constructs according to patient-specific geometries and composition
M. N. Sabry, A. E. Hussin
Although transient convection is ubiquitous in natural and manmade phenomena, few research works attempted to create a compact model for it, leading t
Charlotte Geier, Norbert Hoffmann
Localized vibrations, arising from nonlinearities or symmetry breaking, pose a challenge in engineering, as the resulting high-amplitude vibrations ma