A Study on the Acquisition Technology for Weak Seismic Signals from Deep Geothermal Reservoirs

Author:

Wang Ruizhen1,Wang Jinkuan1,Li Haidong1,Cui Hongliang1,Tang Meizhen1,Zhao Jingtao2

Affiliation:

1. BGP, CNPC, Renqiu 062552, China

2. College of Geoscience and Surveying Engineering, China University of Mining & Technology, D11 Xueyuan Road, Haidian District, Beijing 100083, China

Abstract

There are rich geothermal resources in China and they are widely distributed. After years of continuous exploration and production, most of the shallow geothermal resources have been explored and the current exploration mainly focuses on deep ones. Among a great many geophysical exploration methods, seismic survey is the most effective means of geothermal resource exploration and production, but its weak seismic reflection signal, low S/N ratio and poor imaging of thermal reservoirs due to the seismic geological conditions restrict the production and utilization of deep geothermal resources. It considers through the analysis of the geophysical characteristics of the thermal reservoir that the main causes for the weak seismic reflection signals from deep thermal reservoirs are (1) the shielding effect of the strong wave impedance interface between the thermal reservoir and the caprocks; (2) the small reflection coefficient inside the thermal reservoir; and (3) the serious absorption and attenuation of high-temperature fluids such as hydrothermal fluids and steam in the thermal reservoirs by seismic waves. Accordingly, a series of seismic data acquisition technologies are proposed based on the high-precision vibroseis low-frequency shooting, high-sensitivity geophones long-spread receiving and small bin size highfold technologies, and their application in the seismic acquisition of dry-hot rocks (HDR) in Gonghe Basin, Qinghai, shows a very good application effect.

Funder

National Key R&D Program

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference26 articles.

1. Estimation of mean pore-size using formation evaluation and Stoneley slowness;Hosseini;J. Nat. Gas Sci. Eng.,2016

2. Formation evaluation of a clastic gas reservoir: Presentation of a solution to a fundamentally difficult problem;Hosseini;J. Geophys. Eng.,2018

3. Determination of permeability index using Stoneley slowness analysis, NMR models, and formation evaluations: A case study from a gas reservoir, south of Iran;Hosseini;J. Appl. Geophys.,2014

4. Analysis of the seismic response characteristics of weak seismic reflection signals;Wang;Neijiang Sci. Technol.,2013

5. Theoretical research on the characteristics and identification methods of weak reflected seismic signals;Han;Pet. Geophys. Explor.,2011

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