Numerical study on the effect of thermal diffusivity ratio in phase change heat transfer of crude oil using lattice Boltzmann method

Author:

Liu Xiaoyan1,Zhou Zheng1,Li Cong2,Zhao Haiqian1,Xu Ying1,Chen Shu2,Li Xiaoqing3

Affiliation:

1. School of Mechanical Science and Engineering, Northeast Petroleum University, Daqing, China

2. PetroChina Tarim Oilfield Company, Korla, China

3. School of Electronic and Information Engineering, Changshu Institute of Technology, Changshu, China

Abstract

When the long distance crude oil pipeline is stopped, the crude oil will solidify gradually with the decrease of the temperature in the pipeline. The solid-liquid thermal diffusivity can reflect the ability of heat diffusion in the phase change heat transfer process of crude oil stop-transport. Based on the mathematical model of oil phase transition heat transfer established by enthalpy method, the lattice Boltzmann method isused to solve the governing equations of oil phase transition heat transfer. According to the simulation results, the phase change heat transfer process of crude oil is divided into three stages, and the mechanism of the phase change heat transfer process of crude oil is studied. The results show that the influence of solid-liquid thermal diffusion ratio increase gradually with time. When Fourier number? 0.043, Nusselt number and convective heat transfer intensity of mobile phase interface slightly decrease with the increase of solid-liquid thermal diffusivity ratio. The research results of this paper can provide a reference for controlling the stoppage time of pipeline.

Publisher

National Library of Serbia

Subject

Renewable Energy, Sustainability and the Environment

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