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Minimum exergy consumption can be achieved following the design methodology.
An important conclusion is that minimum exergy consumption (or maximum exergy production) can be achieved when expansion starts at pinch temperatures or ambient temperature.
It is concluded that minimum exergy consumption can be achieved when compression starts at pinch temperatures, ambient temperature or the cold utility temperature.
Similar(57)
The results agree well with the previous analyses, and moreover, the points giving minimum human body exergy consumption rate coincide with the points usually regarded as most comfortable in summer conditions.
The objective is to minimize exergy consumption.
However, the methanol has the minimum exergy efficiency and the maximum exergy destruction.
Influences of design variables on minimum exergy loss are investigated.
Maximum exergy efficiency was obtained 66.8% while minimum exergy efficiency was 31.6%.
The results demonstrated that the methane has the maximum exergy efficiency and the minimum exergy destruction.
The main goal is the minimum exergy loss in accomplishing that goal [24].
The objective is to minimize exergy consumption (or maximize exergy production).
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