£139.57

Heat and Mass Transfer Modelling During Drying: Empirical to Multiscale Approaches

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£153.19 £123.28 £129.81 £136.33 £142.86 £149.38 £155.91 10 June 2024 02 November 2024 28 March 2025 20 August 2025 13 January 2026

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26 days 150 days · current 15 days 79 days 61 days 48 days 14 days 190 days 0 48 95 143 190 £126 £140 £141 £146 £149 £150 £151 £153 Days at Price

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Most common price: £153 (190 days, 32.6%)

Price range: £126 - £153

Price levels: 8 different prices over 583 days

Description

Most conventional dryers use random heating to dry diverse materials without considering their thermal sensitivity and energy requirements for drying. Eventually, excess energy consumption is necessary to attain a low-quality dried product. Proper heat and mass transfer modelling prior to designing a drying system for selected food materials can overcome these problems. Heat and Mass Transfer Modelling During Drying: Empirical to Multiscale Approaches extensively discusses the issue of predicting energy consumption in terms of heat and mass transfer simulation. A comprehensive mathematical model can help provide proper insight into the underlying transport phenomena within the materials during drying. However, drying of porous materials such as food is one of the most complex problems in the engineering field that is also multiscale in nature. From the modelling perspective, heat and mass transfer phenomena can be predicted using empirical to multiscale modelling. However, multiscale simulation methods can provide a comprehensive understanding of the physics of drying food materials. KEY FEATURES Includes a detailed discussion on material properties that are relevant for drying phenomena Presents an in-depth discussion on the underlying physics of drying using conceptual visual content Provides appropriate formulation of mathematical modelling from empirical to multiscale approaches Offers numerical solution approaches to mathematical models Presents possible challenges of different modelling strategies and potential solutions The objective of this book is to discuss the implementation of different modelling techniques ranging from empirical to multiscale in order to understand heat and mass transfer phenomena that take place during drying of porous materials including foods, pharmaceutical products, paper, leather materials, and more.

Product Specifications

Format
hardcover
Domain
Amazon UK
Release Date
30 September 2021
Listed Since
18 October 2019

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