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'Fluid Transport: Pipes', part of the 'Industrial Equipment for Chemical Engineering' set, provides a description and calculation of the essential equipment used for fluid transport. Gas-liquid flows are studied with regard to the nature of this type of flow, along with the pressure drop that they may trigger. Many numerical examples are offered, and the calculation of a fluid transport line is detailed. The vacuum technique and the behaviour of non-Newtonian liquids is thoroughly presented, and the author also provides the methods needed for understanding the equipment used in applied thermodynamics to encourage students and engineers to self build the programs they need.
Divided Solids Transport, part of the Industrial Equipment for Chemical Engineering set, discusses the transport of a divided solid between workshops in a factory, and from a factory to the external market. Numerical examples are given for almost all the devices involved, and the pneumatic and hydraulic transportation parameters are also calculated. This book includes discussions on the movement of a divided solid by a liquid or gaseous stream, the energy consumption for a given flow, and how transporters are affected by the density and flow behavior of the divided solid being handled. The author also provides methods needed for understanding the equipment used in applied thermodynamics in the hope of encouraging students and engineers to self build the programs they need. Chapters are complemented with appendices that provide additional information and associated references.Discusses the transport of a divided solid between workshops in a factory, and from a factory to the external marketIncludes discussions on the movement of a divided solid by a liquid or gaseous stream, the energy consumption for a given flow, and how transporters are affected by density and flowPresents methods needed for understanding the equipment used in applied thermodynamics
This book is part of the Industrial Equipment for Chemical Engineering Set. Throughout these concise and easy-to-use books, the author uses his vast practical experience and precise knowledge of global research to present an in-depth study of a variety of aspects within the field of chemical engineering. In this volume, filtration parameters are used to calculate and measure the properties of filters separating a divided solid from a liquid. Well-known equations are used to describe the passing of a solution through a membrane to then deduce the expression of membrane rejection for solutes. Biological membranes are used as examples, and the ionic flows that pass through them as well as their involvement in these reactions within the membrane are discussed. The author also provides methods needed for understanding the equipment used in applied thermodynamics in the hope of encouraging students and engineers to build the programs they need themselves. The chapters are complemented with appendices which provide additional information as well as any associated references. Clear analysisPractical applications
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