Thermofluids

- From Nature to Engineering

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Thermofluids: From Nature to Engineering presents the fundamentals of thermofluids in an accessible and student-friendly way. Author David Ting applies his 23 years of teaching to this practical reference which works to clarify phenomena, concepts and processes via nature-inspired examples, giving the readers a well-rounded understanding of the topic. It introduces the fundamentals of thermodynamics, heat transfer and fluid mechanics which underpin most engineering systems, providing the reader with a solid basis to transfer and apply to other engineering disciplines.  With a strong focus on ecology and sustainability, this book will benefit students in various engineering disciplines including thermal energy, mechanical and chemical, and will also appeal to those coming to the topic from another discipline.

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Detaljer
  • SprogEngelsk
  • Sidetal434
  • Udgivelsesdato19-04-2022
  • ISBN139780323906265
  • Forlag Academic Press Inc
  • FormatPaperback
Størrelse og vægt
  • Vægt700 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Drag Radiation Ecology Energy conservation. Fluid mechanics Dimensional analysis Dimensions Reynolds number Units Convection Thermal conductivity Energy Boundary layer Thermodynamics Specific heat Conduction Barometers Newtonian fluids THERMAL ENERGY Enthalpy Streamline Heat transfer Thermoregulation Fluid Statics Open Transient heat conduction Fluid Heat engine Steady Conduction Buoyancy Thermodynamic Cycle LIFt Friction factor Natural Convection Thermal Plumes Thermals Internal energy Carnot cycle Closed Streamlining and isolated systems Bernoulli Equation Biot Number Buckingham Pi Theorem Categorization of fluid motions Bluff body aerodynamics Carnot Engine Constant-temperature boundary condition Dimensionless parameters Dynamic Pressure continuum fluid Energy quality Entrance Length External Flows Energy Grade Line Forced convection-wall shear relation Convection Heat Transfer Coefficient Hydrostatic Head Loss Dimensional Homogeneity intelligent designs Ectotherms endotherms lumped system Entropy and disorder Minor losses manometers Moody Chart Flow around a circular cylinder Fourier's law of heat conduction Laminar pipe flow Flat Plate Forced Convection Natural convection along a vertical plate Moving-boundary work Pathline Reverse heat engine Isothermal-plane method Rayleigh–Bernard convection Stagnation Pressure Streakline Hydraulic Grade Line thermal reservoirs thermodynamic laws Thermodynamic state and properties Internal Flow Thermofluids Work versus heat transfer Major losses Nusselt Number Thermal jets Natural fluid Prandtl number Parallel-path method Stability of floats Static pressure Turbulent Pipe Flow thermodynamic systems Total pressure Semi-infinite wall

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