Title: Evaluation of the performance of the oceanic hydrate accumulation at site NGHP-02-09 in the Krishna-Godavari Basin during a production test and during single and multi-well production scenarios

Journal Article · · Marine and Petroleum Geology
 [1]; ORCiD logo [2];  [2]; ORCiD logo [3]
  1. Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States). Energy Geosciences Division; Texas A&M Univ., College Station, TX (United States). Petroleum Engineering Dept.
  2. Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States). Energy Geosciences Division
  3. National Energy Technology Lab. (NETL), Pittsburgh, PA (United States).

The objective of this study is to quantify, by means of numerical simulation, the response of the complex system of gas hydrate accumulations at Site NGHP-02-09, Krishna-Godavari Basin, Indian Ocean, to different production conditions, and to determine the technical feasibility of gas production through depressurization-induced dissociation. The study assesses the suitability of the site for a long-term production test involving a single vertical well, and the long-term potential of the deposit under full-field production using a system of multiple vertical wells. We simulate gas and water flow, estimate the production performance of the accumulation and separately investigate the corresponding geomechanical response of the system. Results indicate that production from Site NGHP-02-09 under the conditions of a long-term field test involving a single vertical well is technically feasible and can yield high gas production rates. However, an inability to fully isolate the water bearing zones results in production that is largely from dissolved gas rather than hydrate dissociation and is thus burdened by excessive water production. Given the estimated physical properties of the reservoir system, Site NGHP-02-09 does not appear to be a promising location for a single-well field test of gas production, but may be a promising production target for full-field production operations using a multi-well system in which exterior wells can mitigate water inflows to allow interior wells to more effectively depressurize the formation and capture methane from gas hydrate dissociation. Geomechanical issues need to be carefully considered as significant displacements are possible, which can be challenging to well construction and stability.

Research Organization:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)
Sponsoring Organization:
USDOE; USDOE Office of Fossil Energy (FE), Oil and Natural Gas (FE-30)
Grant/Contract Number:
AC02-05CH11231
OSTI ID:
1567105
Journal Information:
Marine and Petroleum Geology, Journal Name: Marine and Petroleum Geology Vol. 108; ISSN 0264-8172
Publisher:
ElsevierCopyright Statement
Country of Publication:
United States
Language:
English

References (23)

Overestimating climate warming-induced methane gas escape from the seafloor by neglecting multiphase flow dynamics: WARMING-INDUCED SEAFLOOR CH journal August 2016
Evaluation of the Gas Production Potential of Some Particularly Challenging Types of Oceanic Hydrate Deposits journal April 2011
Comparison of kinetic and equilibrium reaction models in simulating gas hydrate behavior in porous media journal June 2007
Gas production potential of disperse low-saturation hydrate accumulations in oceanic sediments journal June 2007
Gas production from a cold, stratigraphically-bounded gas hydrate deposit at the Mount Elbert Gas Hydrate Stratigraphic Test Well, Alaska North Slope: Implications of uncertainties journal February 2011
Downhole physical property-based description of a gas hydrate petroleum system in NGHP-02 Area C: A channel, levee, fan complex in the Krishna-Godavari Basin offshore eastern India journal October 2019
Permeability variation and anisotropy of gas hydrate-bearing pressure-core sediments recovered from the Krishna–Godavari Basin, offshore India journal October 2019
Pressure core based onshore laboratory analysis on mechanical properties of hydrate-bearing sediments recovered during India's National Gas Hydrate Program Expedition (NGHP) 02 journal October 2019
India National Gas Hydrate Program Expedition 02 summary of scientific results: Numerical simulation of reservoir response to depressurization journal October 2019
Gas hydrate reservoir identification, delineation, and characterization in the Krishna-Godavari basin using subsurface geologic and geophysical data from the national gas hydrate program 02 expedition, offshore India journal October 2019
India National Gas Hydrate Program Expedition 02 summary of scientific results: Evaluation of natural gas-hydrate-bearing pressure cores journal October 2019
India National Gas Hydrate Program Expedition-02: Operational and technical summary journal October 2019
India National Gas Hydrate Program Expedition 02 Summary of Scientific Results: Gas hydrate systems along the eastern continental margin of India journal October 2019
Geomechanical response of permafrost-associated hydrate deposits to depressurization-induced gas production journal July 2009
Estimating the upper limit of gas production from Class 2 hydrate accumulations in the permafrost: 1. Concepts, system description, and the production base case journal March 2011
Estimating the upper limit of gas production from Class 2 hydrate accumulations in the permafrost: 2. Alternative well designs and sensitivity analysis journal March 2011
Evaluation of Gas Production Potential from Marine Gas Hydrate Deposits in Shenhu Area of South China Sea journal November 2010
Methane release from warming-induced hydrate dissociation in the West Svalbard continental margin: Timing, rates, and geological controls: METHANE FROM WARMING-INDUCED HYDRATE DISSOCIATION IN SVALBARD journal January 2013
Numerical Modeling of CO 2 and Brine Leakage through Open Fracture in a Fault Zone: Open Channel Flow or Darcy Flow journal January 2017
Evaluation of the Gas Production Potential of Marine Hydrate Deposits in the Ulleung Basin of the Korean East Sea journal July 2009
Toward Production From Gas Hydrates: Current Status, Assessment of Resources, and Simulation-Based Evaluation of Technology and Potential journal October 2009
Depressurization-Induced Gas Production From Class-1 Hydrate Deposits journal October 2007
A Closed-form Equation for Predicting the Hydraulic Conductivity of Unsaturated Soils1 journal January 1980

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