Liu Dawei, Hu Gang, Li Shi, et al. Improvement and application of method for calculating upper permeability limit in tight oil reservoir[J]. Petroleum Reservoir Evaluation and Development, 2018, 8(3): 19-23.DOI:
the upper limit value of permeability is an important parameter
which is used to determine the tight oil reserves and reasonable development way. The existing calculation or determination methods can
'
t fully and accurately reflect the geology and development characteristics in tight oil reservoirs. It can
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t even better reflect the characteristics of the seepage and the current unity understanding which is embodied in the development way of tight oil reservoir at home and abroad. On the basis of the research on the methods for calculating the upper permeability limit in tight oil reservoir at ho
me and abroad
by using the seepage theory
and from dense reservoir development and production practice
we proposed a new method
which is used to calculate the upper limit value of permeability in tight oil reservoir by the power function relationship between the air permeability and start-up pressure gradient. The studies show that based on the unified understanding on the development of the tight oil reservoir
although there are some difficulties during it
the tight oil reservoir could realize the effective economic usage through the technology research
and the tight oil reservoir could be difficult to achieve the economic usage of the reservoir under the condition of the development technology. This understanding determines that the calculation and determination of the upper limit value of permeability in tight oil reservoir must fully and accurately reflect the characteristics of the non-Darcy seepage in the tight oil reservoir
which is affected by the start-up pressure gradient. The new method has the theoretical basic. At the same time
the new method not only relies on the mathematical theory
but also is more sufficient in theoretical basis
and more reliable
reasonable and practical than the previous calculation methods. Therefore