The structural characteristics of three gelled waxy crude oils were studied through DSC analysis, rheological test, and a scaling model for colloidal gels. The total wax content is 8.1 wt % for crude oil A, 11.5 wt % for crude oil B, and 17.3 wt % for crude oil C. The concentration of precipitated wax crystals, φ W increases gradually with the decrease of temperature. The gelation point, which increases with the increase of wax content, is 16.5 °C for crude oil A, 26 °C for crude oil B, and 41 °C for crude oil C. The elastic modulus in linear region, G E ′ of the gelled crude oils always increases with decreasing temperature while the critical linear elastic strain, γ E of the gelled crude oils first decreases with decreasing temperature, then increases with the further decrease of temperature. The microstructure of gelled crude oils, which can be divided into strong-link region and weak-link region, is similar to that of colloidal gels. In the strong-link region, the G E ′ increases but the γ E decreases with increasing φ W, and the microstructure of the gelled crude oils is porous and loose due to the small value of φ W . In the weak-link region, the G E ′ and γ E both increases with increasing φ W and the microstructure of the gelled crude oils is relatively compact because of the high value of φ W . The fractal dimension D increases with increasing φ W indicating the continuous development of the microstructure of the gelled crude oils with increasing φ W .
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Yang et al. (2013) studied this question.
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