This document describes the objectives, inputs, methods, and worksheet structure for an upgraded Excel (XLS) tool to perform Venturi scrubber design calculations. It’s written to be directly usable as documentation and as a blueprint for implementing or updating an Excel workbook with calculation sheets, input validation, and reporting output.
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To build an interactive dashboard for rapid engineering iterations, organize your Excel workbook into four clean, color-coded tabs: Tab 1: Project Readme & Revision Control
ρp = particle density
Convert to micrometres for reporting: d_l_um = d_l_m * 1E6 .
The table below provides realistic L/G starting values for your spreadsheet. These values help you quickly narrow down the feasible design space.
ratio dictates both the fluid dynamics and the operating cost. It typically ranges from venturi scrubber design calculation xls upd
Kp=C⋅ρp⋅dp2⋅vt9⋅μg⋅d0cap K sub p equals the fraction with numerator cap C center dot rho sub p center dot d sub p squared center dot v sub t and denominator 9 center dot mu sub g center dot d sub 0 end-fraction = Cunningham slip correction factor ρprho sub p = Particle density ( kg/m3kg/m cubed = Particle diameter ( The overall penetration ( ) of particles through the scrubber throat is derived by:
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Once droplet size is known, the predicts collection efficiency for a given particle diameter: This document describes the objectives, inputs, methods, and
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Where Qg_actual must be in . Convert if necessary:
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