Exact(4)
The ARIES-ST study has highlighted many areas where trade-off among physics and engineering systems are critical in determining the optimum regime of operation for ST power plants.
Analysis shows that there exists an optimum regime of operating parameters for which deposition of the drug carrying magnetic particles in a target zone on the partly occluded vessel wall can be maximized.
From this information real fluids can be selected or even synthesized which have fluid defining properties in the optimum regime like critical temperature or ideal gas capacities of heat, allowing to find new working fluids, not considered so far.
In this initial study we model the proposed reactor as a continuous-flow dynamical system in the well-stirred limit, compute the steady states and analyse their stability properties over the operating parameter space, flag potential design and operational challenges, and suggest an optimum regime for effective operation.
Similar(56)
The characteristic output properties, evaluated in the optical and electrical spectral and temporal domains, that indicate operation in these regimes are summarised in the right-hand panels of Fig. 2. Evident from Fig. 2 is the sparseness of stable states, highlighting the need for an extremum seeking approach to quickly and efficiently find optimum regimes from any unknown initial state.
It is demonstrated that the Mather-type plasma focus device, operated in the optimum regimes, has a remarkably low sensitivity to this parameter which relates the insulator length to the electrodes geometry.
(4) Modification of the optimum regimes, however, was needed as the verification tests showed that the compressive strengths of cylinders obtained from the optimum regimes were 4 8%% less than the required strength of 0.7( f_{{{text{cd}}}}^{prime }) due to inherent statistical variety related to model predictions.
Although the modified optimum regimes became less effective in E idx than the optimum ones at the price of conservatism, they still save energy by 25, 31 and 40%% for ( f_{{{text{cd}}}}^{prime }) = 30, 40 and 50 MPa, respectively, for 24-turnover period (or t f = 18 h) compared with those by typical 3-6-3 curing regimes (Table 5).
Determining an optimum drying regime and/or potentially customizing drying regimes depending on production history (e.g. DAA, harvest m.c).
The results proved that WH/ac is the optimum curing regime for all groups of mortars in duration of 3 7 days, whereas the optimum curing regime is not the same in duration of 28 90 days.
A universal solution, applicable to different laser designs, should find the globally optimum operating regime without any prior knowledge of the system.
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