Tapered Flocculation G Schedule

The mixing power each stage of a tapered floc train needs.

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Example

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Details, formula, and sources

P_stage = G_stage^2 x mu(T) x V, the Camp-Stein relation inverted across 2-3 stages of decreasing G. A 50/30/20 per-second taper in three 100 m^3 stages at 15 C needs 285 / 102 / 46 W - the last stage runs at a sixth of the first, the gentle finish that grows settleable floc without shearing it. Reports the composite Gt and flags a schedule that is not tapered or steps outside the 10-100/s band. A design aid, not a process design.

P_stage = G_stage^2 x mu(T) x V_stage (Camp-Stein inverted); Gt = mean(G) x total_time; mu = water dynamic viscosity at the given temperature.

Camp-Stein velocity gradient, tapered multi-stage schedule (Camp & Stein 1943; Ten States Standards), by name.

The velocity-gradient relation is a public water-treatment result; the viscosity comes from a standard water-property table and the treatment-process design governs.

Estimate. AHJ and licensed professional govern.

Field names used by the API: stage1_g_per_s, stage2_g_per_s, stage3_g_per_s, stage_volume_m3, water_temp_c, total_detention_min, stage1_power_w, stage2_power_w, stage3_power_w, total_power_w, mean_g, gt_value

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