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Under normal circumstances, the closer to the provenance, the greater the topographic slope and the more sea level drops, the more abundant the sediment supply, the greater the load density, the higher the deposit velocity, and the stronger the erosive power (He et al. 2011; Zhuo et al. 2013; Li et al. 2011).
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A set of computations using ad hoc hypotheses regarding slurry properties, deposit velocities, laminar turbulent transition conditions and pressure losses was performed in the light of a minimization problem including hydrodynamic and productive constraints.
Based on the deposit accumulation velocity, the needed flushing intervals are defined in order to allow deposit-free maintenance of the distribution network in the future.
The deposit aggradation velocity depends only on the initial powder expansion and is similar to that of a collapsing bed of the same powder, expanded by the same amount, under quasi-static, non-shearing conditions.
In the present paper, the usual approach consisting of the need to consider turbulent and above deposit transport velocities is extended to admit partial pipeline utilization to seek lower specific energy operational points, with no compromise to overall throughput goals.
The best-fit parameters, defined as the parameters that best reproduce all simulation constraints (e.g. impact area, deposit distribution and velocity), for each of the three case histories are summarized in Table 1.
The fatigue behavior of a SAE 4340 steel, coated with a 50%WC 10Co 4Cr/500% Colmonoy 88 deposit, by high velocity oxygen fuel (HVOF) thermal spray, has been investigated.
Nanostructured WC Co and WC Co Al coatings, with about 300-μm as-deposited coating thickness, were deposited by high velocity oxy-fuel (HVOF) spraying.
The coatings were deposited by High Velocity Air Fuel (HVAF) on a steel substrate.
Both were made of NiCoCrAlY alloy and deposited using high velocity oxygen-fuel technique.
TiO2 photocatalytic coatings were deposited through high velocity oxy-fuel spray using anatase powder and rutile powder as feedstock.
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