TY - JOUR
T1 - Economic and heating efficiency analysis of double-shell downhole electric heater for tar-rich coal in-situ conversion
AU - Wang, Zhendong
AU - Yang, Fu
AU - Fu, Deliang
AU - Ma, Li
AU - Duan, Zhonghui
AU - Wang, Qiuwang
AU - Kang, Shijie
AU - Guo, Wei
N1 - Publisher Copyright:
© 2022 Elsevier Ltd. All rights reserved.
PY - 2023/1
Y1 - 2023/1
N2 - Downhole electric heater studied in this paper is used for tar-rich coal in-situ conversion, and the closed double-shell structure is proposed to improve the performance and economy of heater. In this paper, four downhole electric heaters were experimentally studied, and the single-shell heater was used as the control. According to the experimental results, it can be seen that the mass flow rate has a great impact on the total cost, and the parallel double-shell downhole electric heater has the highest total cost. In addition, the larger the helical pitch or the heater shell diameter, the lower the heater shell surface temperature, and thermal radiant is the main way of heater shell to lose heat, which is accounts for 78.91%-92.91%. Moreover, from the perspective of heat transfer quality, heater with closed double-shell structure is more efficient than the single-shell heater, and the energy utilization efficiency of heater with closed double-shell structure achieves 97.38%-99.59%. Finally, taking the comprehensive cost of in-situ exploitation of tar-rich coal into account, the small outer shell diameter is an optimal choice for the heater with closed double-shell structure.
AB - Downhole electric heater studied in this paper is used for tar-rich coal in-situ conversion, and the closed double-shell structure is proposed to improve the performance and economy of heater. In this paper, four downhole electric heaters were experimentally studied, and the single-shell heater was used as the control. According to the experimental results, it can be seen that the mass flow rate has a great impact on the total cost, and the parallel double-shell downhole electric heater has the highest total cost. In addition, the larger the helical pitch or the heater shell diameter, the lower the heater shell surface temperature, and thermal radiant is the main way of heater shell to lose heat, which is accounts for 78.91%-92.91%. Moreover, from the perspective of heat transfer quality, heater with closed double-shell structure is more efficient than the single-shell heater, and the energy utilization efficiency of heater with closed double-shell structure achieves 97.38%-99.59%. Finally, taking the comprehensive cost of in-situ exploitation of tar-rich coal into account, the small outer shell diameter is an optimal choice for the heater with closed double-shell structure.
KW - Closed double-shell
KW - Energy utilization efficiency
KW - In-situ conversion
KW - Irreversibility analysis
KW - Tar-rich coal
UR - https://www.scopus.com/pages/publications/85143887667
U2 - 10.1016/j.csite.2022.102596
DO - 10.1016/j.csite.2022.102596
M3 - 文章
AN - SCOPUS:85143887667
SN - 2214-157X
VL - 41
JO - Case Studies in Thermal Engineering
JF - Case Studies in Thermal Engineering
M1 - 102596
ER -