4.7 Article

Comprehensive study of the underground hydrogen storage potential in the depleted offshore Tapti-gas field

期刊

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
卷 48, 期 33, 页码 12396-12409

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijhydene.2022.12.172

关键词

Underground hydrogen storage; Offshore depleted gas field; Chemical stability; Production analysis; Sealability

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Hydrogen is being considered as an alternative energy source due to its zero greenhouse gas emissions. Geological storage, such as depleted reservoirs and salt caverns, shows great potential for underground hydrogen storage. A study was conducted to assess the viability of hydrogen storage in the Tapti-Daman formation in India. The results suggest that the site is suitable for storage with minimal chemical and microbiological losses, and an optimum production-injection scheme is recommended for efficient operation.
Hydrogen is becoming an alternative for conventional energy sources due to absence of any Greenhouse Gases (GHG) emissions during its usage. Geological storage of hydrogen will be potential solution for dealing with large volume requirement to manage uninterrupted Hydrogen supply-chain. Geological Storages such as depleted reservoirs, aquifers and salt caverns offer great potential option for underground hydrogen storage (UHS). There are several depleted gas fields in India. One of such field is located in Tapti-Daman formation. A comprehensive study is conducted to assess the possibility of hydrogen storage in this Indian field which is first of its kind. The geological characteristic of this site is assessed for its viability for storage. Additionally, several aspects including storage capacity, sealability, chemical and micro-biological stability, reservoir simulation, and production viability are assessed using various analytical and numerical models. The qualitative analysis of the Tapti-gas field suggests that the integrity of the storage site will be intact due to existing anticlinal four-way closed structure. The chemical and micro-biological losses are minimal and will not lead to major loss of hydrogen over time. The reservoir modeling results show that optimum gas production-injection scheme needs to be engineered to maintain the required reservoir pressure level in the Tapti-gas field. Also, the deliverability of the various seasonal storage time show that 80 days production scheme will be suitable for efficient operation in this field. Finally, a synergistic scheme to enable green energy production, storage, and transportation is proposed via implementation of UHS in the offshore Tapti-gas field. ?? 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.

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