Selection of Natural Gas Dehydration Process for Offshore Floating Production Storage and Offloading

Author:

Zhu Jian‐lu1ORCID,Wang Han2,Cao Hang1,Zhang Shu‐sen1,Li Yu‐xing1,Ge Xin‐can3,Luo Jia‐qi3

Affiliation:

1. School of Storage, Transportation and Civil Engineering China University of Petroleum Qingdao 266580 China

2. Engineer & Technology Business Division China Offshore Engineer & Technology Co., Ltd. Shanghai 200010 China

3. Offshore Engineering and New Energy R&D Center COSCO Shipping (Qidong) Offshore Co., Ltd. Qidong 226259 China

Abstract

Based on the oil and gas component data of an offshore gas field in West Africa, the steady‐state models of the triethylene glycol (TEG) dehydration process and the low‐temperature separation dehydration process are established. The adaptability of two kinds of processes to the disturbance of pressure, temperature, and flow of imported natural gas source is studied, and the sensitivity analysis is carried out. In addition, the investment cost and operating cost of the two types of processes are compared. The low temperature separation dehydration process is more adaptable to the disturbance of inlet gas source than the TEG dehydration process. The former is more expensive to build than the latter, but less expensive to run. The low temperature separation dehydration is preferred as the natural gas dehydration process which is more suitable for floating production storage and offloading.

Funder

Ministry of Industry and Information Technology of the People's Republic of China

Publisher

Wiley

Subject

General Energy

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