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With the necessary and reasonably expected component performances, refrigeration COPs of 0.11 0.26 can be achieved at design conditions (Tamb = 24 °C) with low source temperatures (110 130 °C) and passive air cooling.
This is important for providing timely and reliable predictions and for ensuring higher dependability in the solution, as it would be unrealistic to assume that optimal QoS can be achieved at design time.
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The matching peak efficiency is achieved at design flow coefficient for both SVD and BCB 05 and slightly lesser efficiencies at off-design flow coefficients for BCB 05.
Management of scale formation can be achieved at the design stage by the inclusion of unit processes to the scale forming constituents or by the application of antiscalants that delay the onset of nucleation.
The results show that acceptable performance levels can be achieved at these extreme design conditions and further exploration of the design space is worthwhile.
In particular, design of the ambient pressure hybrid system with a gas turbine of a high pressure ratio does not seem quite feasible because the system efficiency that can be achieved at the possible design conditions is even lower than the efficiency of the SOFC only system.
Improvements to the disassembly process of products can be achieved at two levels: in the design phase, making choices that favours the ease of disassembly of the constructional system (design for disassembly) and planning at best and optimising the disassembly sequence (disassembly sequence planning).
On the basis of an analysis of distribution of local thermal resistances it has been concluded that additional decrease in the thermal resistance required for cooling a CPU with a generated thermal capacity in excess of 150 W can be achieved at the cost of optimization of radiator design and (or) an increase in the intensity of its cooling.
This could be achieved at a relatively low cost and involve people with AS at the design stage to ensure that the content and tone is appropriate.
It was designed to generate beam energies of 20 TeV, roughly three times as high as those that will be achieved at CERN.
Optimization of the chilled water system is achieved at both design and configuration level using five design variables.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com