Heping Chen
PetroChina
15 Papers
31 Citations
Heping Chen is an academic researcher from PetroChina. The author has contributed to research in topics: Fluvial & Reservoir modeling. The author has an hindex of 3, co-authored 14 publications.
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Papers
Division and resources evaluation of hydrocarbon plays in Putomayo-Oriente-Maranon Basin, South America
Zhongzhen Ma,Heping Chen,Yinfu Xie,Zhang Zhiwei,Yaming Liu,Xiaofa Yang,Yubing Zhou,Dandan Wang +7 more
TL;DR: Based on the latest seismic, logging and reservoir reserve data, through hydrocarbon accumulation elements analysis, the play of Putomayo-Oriente-Maranon (POM) basin, South America is divided.
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Preliminary study on a depositional interface-based reservoir modeling method
TL;DR: In this paper, a reservoir modeling based on the depositional interface (DI) is extended from turbidite fans to fluvial sandstones, in order to reconstruct the deposition process and improve the architecture simulation of channel sands.
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Big data paradox and modeling strategies in geological modeling based on horizontal wells data
TL;DR: Based on analysis of horizontal well data characteristics, the differences of data distribution and variogram between vertical and horizontal wells in MPE3 oil field of Orinoco heavy oil belt were compared, and modeling strategies were proposed to cope with the big data paradox when data of horizontal wells was used directly into geologic modeling.
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Muddy interlayer forecasting and an equivalent upscaling method based on tortuous paths: A case study of Mackay River oil sand reservoirs in Canada
TL;DR: In this paper, an equivalent upscaling method of geologic model based on tortuous paths under the effects of muddy interlayer has been proposed, where single muddy interlayers in each coarse grid are tracked and identified, and the average length, width and proportion of the interlayer is determined by using the geological connectivity tracing algorithm.
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Auto-optimization of production-injection rate for reservoirs with strong natural aquifer at ultra-high water cut stage
TL;DR: Based on the optimal control theory and taking the production law of reservoirs with strong natural aquifer as the basic constraint, a mathematical model of liquid production for such reservoirs in the later stage of development is established as mentioned in this paper.
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