Numerical Simulation and Analysis of the Heat and Mass Transfer of Oil-Based Drill Cuttings in a Thermal Desorption Chamber

Author:

Wang Maoren1ORCID,Liu Li2,Xu Changlong3,Di Liang4

Affiliation:

1. School of Engineering, China University of Petroleum—Beijing at Karamay, Karamay 834000, China

2. Karamay Vocational & Technical College, Karamay 834000, China

3. CNPC Western Drilling Engineering Co., Ltd., Zhundong Drilling Company, 6 Huanting Road, Baijiantan District, Karamay 834000, China

4. CNPC Western Drilling Engineering Co., Ltd., Drilling Fluid Company, Karamay 834000, China

Abstract

To reveal the coupled heat and mass transfer process during thermal desorption of oil-based drill cuttings, a numerical model of heat and mass transfer was established, which is divided into four components = evaporation. The C language programming catch-up method was used to solve the discrete equation, and the interactive effects of the oil-based drill cuttings’ particle size, water content, oil content, content of light and heavy components in oil, heating temperature, heating time, and other operating parameters on the mass and heat transfer of the oil-based cutting particles were investigated. Results showed that the time at which the center point temperature of oil-based drill cuttings with radius of 1 mm and 5 mm reached 600 °C was 441 s and 63 s, respectively, and the temperature difference between the center and the surface increased with particle size. The desorption process of water, light components, and heavy components was not completed individually but mixed alternately. The duration of each desorption component was closely related to the temperature at the center of the oil-based drill cuttings. The smaller the particle size was, the lower the water and oil contents were, and the higher the heating temperature and time were. These conditions were beneficial to thermal desorption, mass transfer, and heat transfer.

Funder

“Tianchi Talents” Introduction Program in Xinjiang, China

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference46 articles.

1. Composition analysis and risk assessment of typical oil-based drill cuttings from shale gas fields;Chen;Environ. Eng.,2017

2. Component analysis and environment hazard evaluation of oil-based drilling fluid waste used in drilling deep well of oil-field;Wu;J. Chem. Ind. Eng.,2012

3. Low-temperature thermal desorption and secure landfill for oil-based drill cuttings management: Pollution control, human health risk, and probabilistic cost assessment;Hu;J. Hazard. Mater.,2021

4. Treatment Efficiency of Drill Cuttings Using Thermal Desorption Technology;Nwosu;J. Eng. Res. Rep.,2021

5. Life cycle assessment of low-temperature thermal desorption-based technologies for drill cuttings treatment;Hu;J. Hazard. Mater.,2021

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