Gas hydrate stability zone in Muri coalfield, Qinghai Province, China
Author:
LI JingORCID,
YAO Zheng,
ZHAO Hongbo,
WANG Zewei
Abstract
ABSTRACT
The gas hydrate stability zone (GHSZ) is the essential condition for gas hydrate accumulation, which is controlled by three main factors: gas component, geothermal gradient and permafrost thickness. Based on the gas component of hydrate samples from drilling in Muri coalfield, the gas hydrate phase equilibrium curve was calculated using Sloan's natural gas hydrate phase equilibrium procedure (CSMHYD) program. Through temperature data processing of coalfield boreholes, some important data such as thickness of permafrost and geothermal gradient were obtained. The GHSZ parameters of a single borehole were calculated by programming based on the above basic data. The average thickness of GHSZ of 85 boreholes in Muri coalfield amounted to approximately 1000 m, indicating very broad space for gas hydrate occurrence. The isogram of GHSZ bottom depth drawn from single borehole data in Muri coalfield demonstrated the regional distribution characteristics of GHSZ, and identified three favourable areas of gas hydrate occurrence where the bottom of GHSZ had a burial depth >1500 m – namely, the southern part of Juhugeng Mining Area, the middle part of Duosuogongma Mining Area and the eastern part of Xuehuoli Mining Area.
Funder
Doctoral Introduction Project in College Natural Science Foundation of Shanxi Energy Engineering College
Science and Technology Innovation Project of Higher Education Institutions in Shanxi Province in 2020
Youth Science and Technology Research Project in Natural Science Foundation of Shanxi Province
Natural Science Basic Research Project of Shaanxi Province
Publisher
Cambridge University Press (CUP)
Subject
General Earth and Planetary Sciences,General Environmental Science
Reference27 articles.
1. Numerical simulation study on natural gas hydrate decomposition-two phase flow;Wang;Journal of Shandong University of Science and Technology,2020b
2. Analysis of formation conditions of natural gas hydrate in Muri Coalfield, Qinghai Province;Cao;Coal Geology of China,2009
3. Formation Condition and Distribution Prediction of Gas Hydrate in Qinghai-Tibet Plateau Permafrost
4. 3-D Phase equilibrium surface equation of methane hydrate considering the effect of temperature, pressure and salt concentration;Chuai;Oil and Gas Chemicals,2019