Download Advances in industrial mixing : a companion to the Handbook by Suzanne M. Kresta, Arthur W. Etchells III, David S. Dickey, PDF

By Suzanne M. Kresta, Arthur W. Etchells III, David S. Dickey, Victor A. Atiemo-Obeng, North American Mixing Forum

Advances in commercial Mixing is a significant other quantity and replace to the guide of commercial blending. the second one quantity fills in gaps for a couple of industries that weren't lined within the first version. major alterations in 5 of the elemental parts are coated in fullyyt up to date or new chapters. the unique textual content is supplied as a searchable pdf dossier at the accompanying USB.

  • This publication explains business mixers and combining difficulties essentially and concisely.
  • Gives sensible insights via the head execs within the box, combining commercial layout criteria with basic insight.
  • Details purposes in 14 key industries. Six of those are new because the first edition.
  • Provides the pro with info he/she didn't obtain in school.
  • Five thoroughly rewritten chapters on blending basics the place major advances have occurred because the first version and 7 concise replace chapters which summarize severe technical information.

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Additional info for Advances in industrial mixing : a companion to the Handbook of industrial mixing

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Again, we ask that the original source be noted in the presentation. A descriptive list of the videos is provided in Table 1. The numbers in column 1 indicate the chapter content matching each video. CONTENTS OF THE DVD, INCLUDING INSTRUCTIONAL VIDEOS lix Table 1 Instructional Videos on the DVD. The section in the book corresponding to each video is given in the title. 2 Turbulent Drop Breakup at Impellers Description positively and negatively buoyant jets flow fields produced by different impellers solids suspension and off-bottom clearance the importance of baffles in producing top to bottom circulation in a stirred tank – limits on D/T ratio for effective flow – – – – – an introduction to terminology and set-up of portable mixers on angled shafts – limitations for solids suspension – the classic video clip of laminar mixing in an SMX – particle tracks from a CFD simulation – radial vortices produced by HEV tabs – blending in an SMV mixer – drop break-up in an SMX mixer with varying pipe diameter and fluid velocity – drop break up, gas dispersion, and heat transfer using static mixers in turbulent flow – multiple impellers for large H/T – effect of impeller speed on blend time – effect of impeller geometry on blend time – a full length video of laminar mixing – the most effective geometry is shown – limited mixing between multiple impellers in a tank where H≫T – configurations which minimize this effect – formation of isolated caverns in yield stress fluids – state of solids suspension at 40%, 60%, 80% and 100% of Njs – effect of impeller speed on cloud height – comparison of cloud height and Njs condition – effect of solids concentration on cloud height – effect of vessel base shape – effect of baffle design on the draw down of floating solids – difficulties due to a stable vortex – operating regimes and the effect of impeller pumping direction on gas-liquid dispersion – computer simulations of drop break-up at the critical capillary number – original H.

Draining the tank while maintaining slurry suspension) 22 INSTRUCTIONAL VIDEOS Compiled and edited by Arthur Etchells, Rowan University, David Dickey, MixTech, Suzanne Kresta, University of Alberta, Thomas Martin, Technische Hochschule Merseberg, and Henry Zhang, University of Alberta In the first volume of Handbook of Industrial Mixing a DVD was included with some of the best videos and animations available at the time. This very popular section has been greatly expanded in this volume. Twenty-two new videos are designed as brief instructional clips, roughly 2-3 minutes long, which are built around highlight clips from the video library.

The reader will almost certainly profit from the time invested in improved understanding of design of mixing equipment. Mixing equipment design must go beyond mechanical and costing considerations, with the primary consideration being how best to achieve the desired process objectives. EDITORS’ INTRODUCTION xlvii Mixing solutions seldom emphasize minimizing equipment costs or optimizing power consumption: They are more likely to focus on critical issues in process performance. How much mixing is enough and when could overmixing be damaging to yield or quality?

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