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The CFB gasifier system is mainly composed of a ceramic furnace, auger screw conveyor, gas supplier, gas-solid separation unit, temperature and pressure measuring system, and Distributed Control System (DCS).
Our findings suggest that an external factor, which could be the different position of the Sun relative to the satellite, still influences both the VFM electronic unit temperature and the VFM magnetic measurements which nonlinearly and chaotically respond to this external disturbance.
Mobile unit temperature and fluid infusion temperature were independently associated with hypothermia.
The severity of injury, mobile unit temperature, and medical interventions were risk factors associated with hypothermia on the victim's arrival at hospital.
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For heat exchangers, heat transfer per unit temperature difference and heat capacity is defined by effectiveness of heat exchanger and capacity ratio of hot and cold streams (Cr).
In both cases due to the nonlinear response to the external forcing, the complexity of the magnetic measurements is increased with respect to those of the inducing electronic unit temperature changes, and therefore, they are characterized by a higher number of IMFs.
In the developed eigenstrain-based method, residual stress and deformation fields are analyzed elastically using the simulated eigenstrain as initial strain, which is incorporated into the model by thermal expansion with a predefined unit temperature field and different anisotropic thermal expansion coefficients.
We apply the same method of analysis to the VFM electronic unit temperature data ((T_{mathrm{EU}})) and decompose it into 13 IMFs and a residue as reported in Fig. 10.
The relative contribution of each of the three most significant risk factors (severity of injury, infusion fluid temperature, and mobile unit temperature) in the onset of hypothermia no doubt varied according to circumstance and weather conditions; the circumstances of the accident, and pre-hospital care may have masked other influential factors [ 7].
Changes in practice could help reduce the impact of factors such as infusion fluid temperature and mobile unit temperature.
The ECFs reported in the present study can be considered normalized results because those factors are actually the energy consumption of a sub-system per unit volume flow rate (and unit temperature degree).
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