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The measured profiles were shown to be unaffected by the presence of material surcharge above the cone, independent of material discharge rate, and strongly dependent upon the roughness of the internal walls.
Following the flow initiation, the position of the voidage maximum is found to move up the cone, resulting in a counter-current voidage wave front accompanying the steady material discharge from the hopper orifice.
The effects of material head in the hopper, the outlet size and the hopper half-angle were investigated to predict material discharge rates as well as the wall stress profiles during both filing and discharge.
In Table 4 the nutrient flows and material discharge via water is presented.
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The material discharged to an average manganese valence 3.25+ showed negligible static Jahn Teller effect.
Process tank means a tank that is used within a process to collect material discharged from a feedstock storage vessel or equipment within the process before the material is transferred to other equipment within the process or a product storage vessel.
The method of characteristics has been used to predict the exact stress and velocity fields in an incompressible, cohesionless, Coulomb material discharging from a conical hopper for a great variety of boundary conditions imposed on the top surface.
The prepared CuO material performs favourably compared to EMD under high rate discharge conditions (>600 mA g−1), where the material discharges 154 and 135 mA h g−1 capacity at a discharge rate of 1000 and 2000 mA g−1, respectively, compared to 132 and 83 mA h g−1 for EMD under the same conditions.
Attention naturally focused on the possible role of the nearby Sellafield nuclear complex, particularly on the risk of exposure to ionising radiation from radioactive material discharged into the environment, although chance could not be confidently excluded as an explanation for this post hoc observation of a cluster of around half a dozen cases.
Colby (1964) determined bed-material discharge as a function of mean flow velocity, depth, mean sediment size, water temperature and concentration of fine sediment.
The conductive MWNT-embedded cement composites with percolative networks produced by controlling the flow are expected to be utilized as piezoresistive sensors, EMI shielding materials, electrostatic discharge materials, heating elements, etc. Future work will be focused on in-depth study of the origin of the flow effect on the MWNT distribution.
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