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Agitator design calculation
Agitator design calculation







agitator design calculation

Readers will also benefit from the inclusion of: A thorough introduction to the design of gas-liquid fermenters and bioreactorsAn exploration of agitator fundamentals, impeller systems, optimum power, and air flow at peak mass transfer calculationsA discussion of how to optimize operation for minimum energy per batchStep-by-step processes to assist engineers, chemists, and scientistsAn examination of heat transfer surfaces and calculations, shaft seal considerations, mounting methods, and mechanical design Step-by-step processes are included throughout the book to assist engineers, chemists, and other scientists in the design, construction, installation, and maintenance of these systems.

agitator design calculation

The accomplished author has created a practical and hands-on tool that discusses the subject of agitation systems from first principles all the way to implementation in the real world. The book covers agitator fundamentals, impeller systems, optimum power and air flow at peak mass transfer calculations, optimizing operation for minimum energy per batch, heat transfer surfaces and calculations, shaft seal considerations, mounting methods, mechanical design, and vendor evaluation.

  • Types of Agitators, Agitator's Design and Signific.AGITATOR DESIGN FOR GAS-LIQUID FERMENTERS AND BIOREACTORSĮxplore the basic principles and concepts of the design of agitation systems for fermenters and bioreactorsĪgitator Design for Gas-Liquid Fermenters and Bioreactors delivers a -concise treatment and explanation of how to design mechanically sound agitation systems that will perform the agitation process function efficiently and economically.
  • Tonne of Refrigeration, How to Calculate required TR.
  • Overall Heat Transfer Co-Efficient Calculation.
  • Overall Heat Transfer Co-efficient Calulation base.
  • Try to do a reverse calculation basing upon the fixed rate of distillation and find the LMTD of both cases, which uses brine at -10degC and chilled water at 8degC, then you will come to know the difference. Using a better utility for condenser will enhance the rate of distillation, for a chilled brine at -10 deg C, the temperature difference can be considered as 7-8 deg C, and for a utility like chilled water having a inlet temperature of 8 deg C, the temp difference will be around 3-4 degC, because the reaction mass temperature will be around 15-20 degC under vacuum, so mostly the vapours will reach equillibrium with utility outlet, and in the process of condensing the vapour will exchange only latent heat, whereas in case of -10 degC brine, there will be exchange of sensible heat also, and if you want to calculate it theoretically then read the post in this link, then you will get a clear idea, What it can do ? : It can be used in various operations, in a pharma industry it can be used in multiple operations like reactions, work up's, drying, filtration, etc.,ĭifference between Agitation and Mixing : How to Select a Condenser? What Does a TR exactly means? How to Calculate the Energy of Steam?

    agitator design calculation

    "what is an agitator ?, And what it can do ?" "What is the difference between Agitation and Mixing ?" Agitator : An agitator is something which is used to stir liquid or mixture of liquids. So, for knowing the types of agitators and their significance you don't need any basic knowledge, but just an idea that Introducing or discovering the types of agitators in pharma field is certainly a revolution because different agitators will have different purposes and different advantages, but most commonly used agitators are Anchor, Propeller, Turbine, Paddle etc., and still these agitators are sub divided into types, for example Round Anchor and Anchor combined with Gate are two types of Anchor. Today i gonna give you a description that limits upto my knowledge, and most of you may find it useful, about the Industrial Agitators, Types of Agitators, their Power Numbers, Design Equations and their significance in production.









    Agitator design calculation