Study on dynamic and static elastic moduli of shale oil by different loading methods

Huiyuan Bian , Fei Wang , Wenan Chen , Haiwen Wang
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引用次数: 1

Abstract

Experiments on the dynamic and static elastic parameters under distinct loading conditions help clarify the effects of loading rate and strain amplitude on dynamic and static elastic moduli, and gain further insight into the moduli. Significant scientific guidance are provided for fracturing transformation of oil shale reservoirs. AutoLab 1500, servo-controlled triaxial equipment with ultrasonic transducers, is used in an elastic parameter test on shale oil samples. The test concludes that the loading rate moves the dynamic elastic modulus little, with a maximum change rate of 0.8%, while it significantly affects the static elastic modulus by 31.7% at most. In the loading or unloading phase, the larger the initial differential stress (or strain), the higher the dynamic Young's modulus. The static elastic modulus, on the other hand, presents a significant negative correlation with the stress amplitude. To be specific, the smaller the strain amplitude, the higher the measured modulus; the larger the strain amplitude, the smaller the modulus. Given the loading rate, the smaller the differential stress, the smaller the difference between the dynamic and static elastic moduli. This study can provide a reference base for fracturing construction in oil shale.

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不同加载方式下页岩油动、静态弹性模量研究
不同加载条件下的动静态弹性参数实验有助于阐明加载速率和应变幅度对动静态弹性模量的影响,并进一步了解模量。为油页岩油藏的压裂改造提供了重要的科学指导。AutoLab1500是一种带超声波换能器的伺服控制三轴设备,用于页岩油样品的弹性参数测试。试验结果表明,加载速率对动弹性模量的影响较小,最大变化率为0.8%,而对静弹性模量的最大影响为31.7%。在加载或卸载阶段,初始微分应力(或应变)越大,动态杨氏模量就越高。另一方面,静态弹性模量与应力振幅呈显著负相关。具体地说,应变幅度越小,测得的模量就越高;应变幅度越大,模量越小。给定加载速率,差异应力越小,动态和静态弹性模量之间的差异就越小。本研究可为油页岩压裂施工提供参考依据。
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