储层表征

地质力学在深水环境中成功实施

本文介绍了海上油田地质力学模型的构建,该模型集成了钻井、地质、岩石物理学和油藏数据,以在油藏的可钻性和产能方面发挥重要作用。

公海上的深水石油平台。 阿塞拜疆
盖蒂图片社。

地质力学在建井和完井过程中评估地层完整性方面发挥着重要作用。在完整的论文中,研究油田K属于具有油气前景的深水环境中的上里奥-更新世层序。作为勘探活动的一部分,四口现有的偏置油井被考虑用于地质力学模型构建。该油田的地质力学模型是通过整合现有的钻井、地质、岩石物理学和油藏数据而建立的。

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Reservoir characterization

Geomechanics Successfully Implemented in a Deepwater Setting

This paper describes the building of a geomechanical model for an offshore field that integrated drilling, geology, petrophysics, and reservoir data to play a major role in the drillability and deliverability of the reservoir.

Deepwater oil platform on the open sea. Azerbaijan
Getty Images.

Geomechanics plays an important role in assessing formation integrity during well construction and completion. In the complete paper, study field K belongs to a Plio-Pleistocene sequence in a deepwater environment with hydrocarbon prospects. As a part of exploration activity, four existing offset oil wells were considered for geomechanical model construction. The geomechanical model for the field was built by integrating available drilling, geology, petrophysics, and reservoir data.

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