Concepts, characteristics, potential and technology of unconventional hydrocarbons: On unconventional petroleum geology

Концепции, характеристики, потенциал и технологии нетрадиционных углеводородов: о нетрадиционной геологии нефти
Caineng Zou, Guosheng ZHANG, Zhi Yang, Shizhen Tao, Lianhua Hou, Rukai Zhu, Xuanjun Yuan, Qiquan Ran, Denghua Li, Zhiping Wang
2013-08-01

Darcy flowcontinuous hydrocarbon accumulationshale gastight oil and gasunconventional petroleum geology
Petroleum geology is evolving into two branches, conventional petroleum geology and unconventional petroleum geology, with the latter becoming a new theoretical frontier in the petroleum industry. The core of conventional hydrocarbon geological study is based on identifying the match between source rock, reservoir, caprock, migration, trap, preservation and timing; the core of unconventional hydrocarbon geological study evaluates if the oil and gas is part of a continuous accumulation, where stress is placed on the evaluation of “lithology, physical properties, brittleness, oiliness, source rock features, stress anisotropy” and their configuration. The oil and gas accumulation mode and theoretical formula at various low limits of pore throat diameter have been established, as well as the “L” type production curve. Theoretical production prediction models for unconventional oil and gas, and formation mechanism and development patterns for unconventional oil and gas are being revealed. The connotation, characteristics, potential and technology for unconventional oil and gas have been observed, and two key marks to identify unconventional hydrocarbon have been put forward: (1) continuous distribution of hydrocarbon-bearing reservoirs over a large area, with no obvious trap boundary; and (2) no natural stable industrial production, and no obvious Darcy flow. Systematic research shows that the proportion of global unconventional to conventional hydrocarbon resources is 8:2, in which the unconventional oil is almost equal to conventional oil, and the unconventional gas is about 8 times that of conventional gas. In China, unconventional oil resources are about 240×108 t and unconventional gas resources are about 100×1012 m3. In recent years the development of tight gas and tight oil should be strengthened to realize industrial reserves and increase production. Construction of shale gas pilot plants and shale oil research should be strengthened. Unconventional oil and gas industrial systems and research should be set up, including unconventional hydrocarbon geology, fine particle sedimentology, unconventional reservoir geology, seismic reservoir prediction, massive fracturing of horizontal wells, “factory-like” operation, low cost management and subsidy policy and personnel training.
1
China is estimated to contain approximately 240×10^8 tonnes of unconventional oil and 100×10^12 cubic metres of unconventional gas, supporting intensified tight-gas, tight-oil, shale-gas, and shale-oil development.
2
Global unconventional resources are estimated at roughly 80% of total hydrocarbons; unconventional oil is nearly equal to conventional oil, while unconventional gas is about eight times conventional gas.
3
The study establishes accumulation models, low pore-throat-diameter theoretical relationships, an “L”-type production curve, and prediction models for unconventional oil and gas.
4
Two diagnostic criteria for unconventional hydrocarbons are proposed: large-area continuous reservoir distribution without clear trap boundaries, and absence of stable natural industrial production with no obvious Darcy flow.
5
Unconventional petroleum geology is identified as a distinct theoretical branch focused on continuous hydrocarbon accumulations rather than conventional source–reservoir–trap matching.
6
Unconventional reservoirs are evaluated using lithology, physical properties, brittleness, oiliness, source-rock characteristics, stress anisotropy, and their spatial configuration.

unconventional hydrocarbons, including unconventional oil and gas accumulations

the geological concepts, characteristics, resource potential, accumulation modes, production behavior, formation mechanisms, and development technologies of unconventional hydrocarbons

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2013-08-01
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Caineng Zou
Guosheng ZHANG
Zhi Yang
Shizhen Tao
Lianhua Hou
Rukai Zhu
Xuanjun Yuan
Qiquan Ran
Denghua Li
Zhiping Wang
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