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Table 4 summarizes CO2 storage (Fig. 16) and gravity segregation length for SIAP and SIPP.
Heterogeneity increased the non-uniformity of gas through the reservoir; however, segregation length was greater than the base case.
The fitted segregation length l is 1.8 nm, which is in reasonable agreement with that reported in Ref. [19].
We employ the CO2 storage, R g (gravity segregation length), and CO2 utilization ratio as evaluation criteria.
The novel foam can perform well even with short segregation length or early gas breakthrough because they do not reflect the successive stages of gas diversion.
From above analysis we can find, for novel foam, gravity segregation length is a less precise representative parameter of sweep efficiency.
Similar(44)
With slug size increasing, the gravity segregation lengths do enlarge for both types of foams.
Table 4 also summarizes CO2 storage (Fig. 16) and gravity segregation lengths for those two separate injections.
The segregation model developed by Muraki [45] is adopted, which assumes that the segregation lengths of the indium atoms on the interfaces to be equal.
The separate injection (SINB and SIWB) is able to give longer gravity segregation lengths and higher injectivity than simultaneous injection through same sections (SIAP and SIPP).
According to the model suggested in Ref. [19], we assume that the segregation lengths on the two interfaces are equal, i.e., l 1 = l 2. In order to estimate the value of built-in electric field, we perform photoreflectance measurements.
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