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Appendices

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APPENDIX 59: Energy sources, Heat cycles and their realizations, Derivation of energy balance equations of Brayton cycle
APPENDIX 101: Fluid dynamics, Flow of gases and steam through nozzles, Derivation of equation for gas velocity at nozzle outlet
APPENDIX 102: Fluid dynamics, Flow of gases and steam through nozzles, Calculation of nozzle mass flow
APPENDIX 104: Fluid dynamics, Flow of gases and steam through nozzles, Calculation of cone Laval nozzle dimensions
APPENDIX 109: Fluid dynamics, Flow of gases and steam through nozzles, Calculation of Laval nozzle dimensions in flow with losses
APPENDIX 116: Turbomachinery, Thermodynamics of heat turbines, Derivation of equations for multi-stage adiabatic expansion
APPENDIX 118: Turbomachinery, Thermodynamics of turbocompressors, Derivation of equations for adiabatic compression
APPENDIX 121: Turbomachinery, Thermodynamics of turbocompressors, Derivation of equations for multistage adiabatic compression
APPENDIX 122: Turbomachinery, Thermodynamics of turbocompressors, Calculation of additional losses, preheat coefficient and internal efficiency of turbocompressor
APPENDIX 123: Engineering sciences, Engineering thermomechanics, Derivation of equations for isobar and isochor of ideal gas
APPENDIX 124: Engineering sciences, Engineering thermomechanics, Derivation of equation for entropy difference on izotherm in T-s chart
APPENDIX 131: Turbomachinery, Performance of steam turbines, Calculation of thermal efficiency of steam cycle including heat regeneration
APPENDIX 145: Engineering sciences, Vibration, Calculation of free harmonic frequencies and stiffness of various types of structures
APPENDIX 151: Turbomachinery, Performance of steam turbines, Calculation of mass flow through individual branches of technological unit
Appendices
  page 2
APPENDIX 153: Turbomachinery, Aerodynamics of wind turbines, Calculation of forces acting on blade element
APPENDIX 162: Fluid dynamics, Flow of gases and steam through nozzles, Derivation of Bendemann ellipse equation
APPENDIX 166: Turbomachinery, Aerodynamics of wind turbines, Calculation of stagger angle of blade profile on investigated radius
APPENDIX 171: Fluid dynamics, Internal fluid friction and boundary layer development, Derivation of equations for stream function and velocity potential
APPENDIX 175: Energy sources, Organic fuels and their cycles, Calculation of area required for energy gains from biomass and incident solar radiation if they were to replace energy gains from coal
APPENDIX 179: Turbomachinery, Essential equations of turbomachines, Calculation of reaction of steam turbine stage
APPENDIX 188: Turbomachinery, Thermodynamics of heat turbines, Calculation of reaction stage
APPENDIX 191: F. dynamics, Throttling of gases and steam, Calc. of kinetic energy, enthalpy and stagnation enthalpy of gas
APPENDIX 196: Turbomachinery, Essential equations of turbomachines, Derivation of equation for force on blade from fluid flow
APPENDIX 205: Engineering sciences, Engineering mathematics, Determination of total differential using example of gas flow equation through nozzle
APPENDIX 214: Engineering sciences, Engineering mathematics, Performing partial derivatives using example of gas flow equation through a nozzle
APPENDIX 238: Stirling engine, Losses in Stirling engines, Derivation of simplified equation for directly calculating pressure amplitude shift caused by piston ring leaks in Stirling engine
APPENDIX 248: Turbomachinery, Essential equations of turbomachines, Proof of statement that resultant of forces from an incompressible fluid is perpendicular to mean aerodynamic velocity
APPENDIX 251: Stirling engine, Stirling Engine Cycle, Derivation of equation for temperature of working gas in investigated volumes of Stirling engine
APPENDIX 254: Turbomachinery, Essential equations of turbomachines, Calculation of forces on pipe from fluid flow
APPENDIX 255: Turbomachinery, Essential equations of turbomachines, Derivation of equations for changes in fluid flow momentum at stationary flow (Theorem of momentum change)
Appendices
  page 3
APPENDIX 256: Turbomachinery, Essential equations of turbomachines, Calculation of reaction of Francis turbine
APPENDIX 259: Turbomachinery, Water turbines, Calculation of Francis turbine and draft tube dimensions
APPENDIX 260: Turbomachinery, Aerodynamics of wind turbines, Derivation of equation for kinetic wind power
APPENDIX 262: Turbomachinery, Using similarities of turbomachines in turbomachine design, Calculation of radial stage dimensions using similarity theory
APPENDIX 264: Turbomachinery, Shapes of blades and flow parts of turbomachines, Calculation of dimensions of spiral casing of radial fan
APPENDIX 265: Turbomachinery, Rotodynamic pumps, Calculation of pump operating point and pipeline characteristic
APPENDIX 266: Fluid dynamics, Internal fluid friction and boundary layer development, Derivation of formulas for calculating mean fluid velocity using energy balance of laminar flow
APPENDIX 274: Turbomachinery, Shapes of blades and flow parts of turbomachines, Calculation of coordinates of camber line of radial backward curved blade
APPENDIX 275: Turbomachinery, Shapes of blades and flow parts of turbomachines, Optimization of blade shape according to specified requirements
APPENDIX 282: Turbomachinery, Essential equations of turbomachines, Calculation of logarithmic spiral and spiral casing dimensions
APPENDIX 288: Engineering sciences, Engineering thermomechanics, Derivation of equation of first law of thermodynamics for open system
APPENDIX 303: Turbomachinery, Water turbines, Derivation of equation for energy balance of water turbine
APPENDIX 307: Turbomachinery, Thermodynamics of heat turbines, Derivation of equations for adiabatic expansion
APPENDIX 309: Turbomachinery, Fans, Derivation of internal work equation for fans
APPENDIX 316: Turbomachinery, Introduction to turbomachinery, Derivation of equations of reference radii of blades
APPENDIX 317: E. sciences, Engineering thermomechanics, Calculation of amount of heat for heating air and entropy changes
APPENDIX 318: Turbomachinery, Essential equations of turbomachines, Derivation of Euler turbomachinery equation at stationary flow
APPENDIX 323: Turbomachinery, Shapes of blades and flow parts of turbomachines, Derivation of formula for value of mean width of blade passage
Appendices
  page 4
APPENDIX 325: Fluid dynamics, Aerodynamics of airfoils, Derivation of formulas for lift and drag airfoil
APPENDIX 326: Turbomachinery, Aerodynamics of wind turbines, Derivation of ideal wind turbine rotor parameters
APPENDIX 330: Turbomachinery, Aerodynamics of profile cascades, Calculation of profile loss of profile cascade
APPENDIX 333: Fluid dynamics, Mach number and high velocity flow effects, Derivation of equations of stable normal shock wave (Rankine-Hugoniot equations)
APPENDIX 334: Fluid dynamics, Flow of gases and steam through nozzles, Derivation of equation for mass flow of gas through nozzle
APPENDIX 336: Fluid dynamics, Flow of gases and steam through nozzles, Calculation of Laval nozzle dimensions for steam flow
APPENDIX 337: Fluid dynamics, Mach number and high velocity flow effects, Derivation equation for speed of sound
APPENDIX 341: Turbomachinery, Using similarities of turbomachines in turbomachine design, Derivation of general formula for flow coefficient
APPENDIX 347: Steam engine, Essential equations of crank mechanism of steam engine, Derivation of equations for calculating forces acting on crank mechanism
APPENDIX 356: Engineering sciences, Engineering mathematics, Example of calculating cube of a large number using logarithms
APPENDIX 357: Turbomachinery, Aerodynamics of wind turbines, Derivation of formula for thrust coefficient
APPENDIX 358: Turbomachinery, Aerodynamics of wind turbines, Derivation of equation for power coefficient
APPENDIX 375: Turbomachinery, Fans, Derivation of specific speed equation for fans
APPENDIX 379: Fluid dynamics, Pressure loss at fluid flow and its calculation, Calculation of increase in pressure loss over time due to fouling
APPENDIX 383: Turbomachinery, Aerodynamics of profile cascades, Calculation of aerodynamic quantities of profile cascade
APPENDIX 387: E. sciences, Engineering mathematics, Determination of total differential using example of continuity equation
APPENDIX 388: Turbomachinery, Aerodynamics of profile cascades, Calculation of dimensions of blade cascade of axial fan rotor
APPENDIX 397: Engineering sciences, Limits of material use, Derivation of equation for average bearing load
APPENDIX 404: Fluid dynamics, Flow of gases and steam through diffusers, Derivation of energy balance equation of ejector mixing zone
APPENDIX 407: Turbomachinery, Essential equations of turbomachines, Calculation of dimensions of bladeless stator
Appendices
  page 5
APPENDIX 409: Fluid dynamics, Internal fluid friction and boundary layer development, Derivation of equations for characteristic boundary layer thicknesses
APPENDIX 410: Fluid dynamics, Flow of gases and steam through diffusers, Injector dimensions calculation
APPENDIX 413: Fluid dynamics, Internal fluid friction and boundary layer development, Calculation of characteristic boundary layer thicknesses
APPENDIX 421: Engineering sciences, Engineering mathematics, Derivation of equation for rotor vector in cylindrical coordinate system
APPENDIX 432: Fluid dynamics, Flow of gases and steam through diffusers, Derivation of equation for pressure rate of change inside diffuser
APPENDIX 434: Turbomachinery, Using similarities of turbomachines in turbomachine design, Derivation of equations for reaction of ideal axial stages
APPENDIX 436: Stirling engine, Stirling Engine Cycle, Derivation of equation for mean temperature of working gas in regenerator of Stirling engine
APPENDIX 437: Stirling engine, Stirling Engine Cycle, Derivation of general equation for change in pressure of working gas in Stirling engine
APPENDIX 441: Fluid dynamics, Flow of gases and steam through diffusers, Calculation of cone diffuser with constant pressure gradient
APPENDIX 442: Stirling engine, Stirling Engine Cycle, Derivation of equation for minimum and maximum size of reduced volume of a Stirling engine
APPENDIX 444: Stirling engine, Stirling Engine Cycle, Calculation of pressure profile in Stirling engine
APPENDIX 447: Stirling engine, Stirling Engine Cycle, Proof that Schmidt idealization is special case of general Stirling engine cycle
APPENDIX 448: Turbomachinery, Aerodynamics of wind turbines, Calculation of wind turbine blade parameters
APPENDIX 453: Engineering sciences, Engineering thermomechanics, Calculation of amount of heat for water heating
APPENDIX 456: Fluid dynamics, Flow of gases and steam through diffusers, Calculation of cone diffuser and its pressure gradient
APPENDIX 460: Stirling engine, Energy balance of Stirling engine cycle, Derivation of heat balance equations for hot side, cold side and regenerator of Stirling engine
APPENDIX 461: Turbomachinery, Aerodynamics of wind turbines, Calculation of wind turbine rotor power
Appendices
  page 6
APPENDIX 463: Stirling engine, Energy balance of Stirling engine cycle, Derivation of equation for internal work of Stirling engine
APPENDIX 464: Stirling engine, Energy balance of Stirling engine cycle, Derivation of equations for approximate calculation of internal thermal efficiency of Stirling engine
APPENDIX 466: Stirling engine, Energy balance of Stirling engine cycle, Calculating internal efficiency of Stirling engine
APPENDIX 467: Stirling engine, Energy balance of Stirling engine cycle, Calculating internal work of Stirling engine
APPENDIX 469: Stirling engine, Energy balance of Stirling engine cycle, Derivation of heat balance equations for Stirling engine regenerator
APPENDIX 470: Stirling engine, Energy balance of Stirling engine cycle, Calculation of regenerated heat in Stirling engine
APPENDIX 472: Stirling engine, Energy balance of Stirling engine cycle, Calculation of entropy changes in Stirling engine
APPENDIX 474: Stirling engine, Energy balance of Stirling engine cycle, Derivation of equation for change in entropy of working gas in Stirling engine
APPENDIX 483: Stirling engine, Losses in Stirling engines, Derivation of exact equation for directly calculating pressure amplitude shift caused by piston ring leaks in a Stirling engine
APPENDIX 484: Stirling engine, Losses in Stirling engines, Derivation of equation for calculating pressure profile in Stirling engine with leaking piston rings
APPENDIX 485: Stirling engine, Losses in Stirling engines, Calculation of effect of piston ring leakage on work of Stirling engine
APPENDIX 486: Stirling engine, Losses in Stirling engines, Calculation of Stirling engine piston leakage
APPENDIX 487: Stirling engine, Losses in Stirling engines, Losses through leaks of piston rings
APPENDIX 507: Engineering sciences, Radiation, Calculation of area and inclination of solar collector
APPENDIX 515: Fluid dynamics, Flow of gases and steam through nozzles, Derivation of equation for maximum mass flow of gas through nozzle
APPENDIX 518: Fluid dynamics, Mach number and high velocity flow effects, Derivation of Hugoniot's theorem
APPENDIX 536: Engineering sciences, Radioactivity, Derivation of equation for decrease in number of radioactive nuclei in investigated set and formula for half-life of transformation
Appendices
  page 7
APPENDIX 557: Steam engine, Calculation of move and dimensions of slide valve, Derivation of equations for position of slide valve of piston steam engine relative to its midpoint
APPENDIX 559: Steam engine, Essential equations of crank mechanism of steam engine, Derivation of equations for position of piston relative to its top dead center
APPENDIX 568: Steam engine, Calculation of move and dimensions of slide valve, Design and calculation of dimensions of piston steam engine slide valve
APPENDIX 573: Steam engine, Thermodynamic design of steam piston engine, Design and calculation of p-V diagram and internal power of piston steam engine
APPENDIX 577: Steam engine, Thermodynamic design of steam piston engine, Calculation of direct steam consumption in piston steam engine
APPENDIX 583: Turbomachinery, Essential equations of turbomachines, Calculation of force on water turbine blade
APPENDIX 584: Turbomachinery, Essential equations of turbomachines, Calculation of force on fan blade
APPENDIX 586: Turbomachinery, Essential equations of turbomachines, Modification of equations for axisymmetric potential flow
APPENDIX 595: Steam engine, Thermodynamic design of steam piston engine, Calculation of internal efficiency of piston steam engine
APPENDIX 525: Energy sources, Nuclear energy and technologies for its use, Calculation of energy released in fission reaction and fusion reaction
APPENDIX 542: Engineering sciences, Limits of material use, Calculation of stress concentration and evaluation of stress in component
APPENDIX 545: Turbomachinery, Introduction to turbomachinery, Calculation of internal work and pump input power
APPENDIX 546: Turbomachinery, Introduction to turbomachinery, Calculation of internal work, losses and efficiency of steam turbine
APPENDIX 562: Energy sources, Biomass as source of energy, Calculation of efficiency of solar energy storage in phytomass
APPENDIX 563: Energy sources, Biomass as source of energy, Calculation of combustion cessation in event of lack of air
APPENDIX 564: Energy sources, Biomass as source of energy, Calculation of straw burning
APPENDIX 592: Energy sources, Wind power plants, Calculation of capacity coefficient of wind power plant
APPENDIX 597: Energy sources, Use of water gradient, Calculation of dimensions of ideal draft tube of water turbine
Appendices
  page 8
APPENDIX 612: Turbo., Thermodynamics of turbocompressors, Calculation of efficiency of turbocompressor with intercooling
APPENDIX 613: Turbomachinery, Using similarities of turbomachines in turbomachine design, Selection of type of turbomachine according to calculated specific speed
APPENDIX 620: E. sources, Heat cycles and their realizations, Derivation of energy balance equations for spark ignition cycle
APPENDIX 622: Energy sources, Heat cycles and their realizations, Derivation of energy balance equations for steam cycle
APPENDIX 623: Energy sources, Heat cycles and their realizations, Calculation of steam cycle
APPENDIX 625: Energy sources, Heat cycles and their realizations, Calculation of Brayton cycle
APPENDIX 629: Energy sources, Heat cycles and their realizations, Derivation of energy balance equations for the refrigeration cycle
APPENDIX 632: Turbomachinery, Aerodynamics of profile cascades, Comparison of shape of two profiles in terms of their inclination to flow separation
APPENDIX 633: Turbomachinery, Aerodynamics of profile cascades, Derivation of equations for calculation of aerodynamic quantities of profile cascade
APPENDIX 637: Turbomachinery, Thermodynamics of turbocompressors, Derivation of ratio of isentropic and isothermal compression work
APPENDIX 648: Fluid dynamics, Throttling of gases and steam, Derivation of equation for velocity in cross-sectional flowmeter
APPENDIX 650: Fluid dynamics, Throttling of gases and steam, Labyrinth seal calculation
APPENDIX 652: Fluid dynamics, Throttling of gases and steam, Derivation of equation for valve flow using valve flow coefficient
APPENDIX 653: Turbomachinery, Performance of steam turbines, Calculation of reduction-cooling station and backpressure turbine of same parameters
APPENDIX 655: Fluid dynamics, Internal fluid friction and boundary layer development, Description how Newton defined viscosity
APPENDIX 656: Fluid dynamics, Internal fluid friction and boundary layer development, Derivation of formula for Reynolds number
APPENDIX 658: Fluid dynamics, Pressure loss at fluid flow and its calculation, Derivation of friction coefficient equation for laminar flow through a pipe
APPENDIX 659: Fluid dynamics, Internal fluid friction and boundary layer development, Calculation of viscosity of gas mixture
Appendices
  page 9
APPENDIX 663: Fluid dynamics, Pressure loss at fluid flow and its calculation, Pressure loss calculation of pipe network and pipeline characteristic
APPENDIX 668: Turbomachinery, Using similarities of turbomachines in turbomachine design, Derivation of equations of operating variables of stages
APPENDIX 685: Turbomachinery, Thermodynamics of heat turbines, Derivation of equations for polytropic expansion
APPENDIX 689: Energy sources, Organic fuels and their cycles, Calculation of temperature of uncooled flame when burning coal
APPENDIX 693: Energy sources, Organic fuels and their cycles, Calculation of energy consumption in natural gas from gas meter readings
APPENDIX 694: Energy sources, Organic fuels and their cycles, Calculation of composition of flue gases when burning natural gas
APPENDIX 701: Energy sources, Biomass as source of energy, Calculation of temperature of uncooled flame during combustion
APPENDIX 703: Fluid dynamics, Flow of gases and steam through nozzles, Derivation of equation for calculating length of conical Laval nozzle
APPENDIX 704: Engineering sciences, Engineering thermomechanics, Calculation of adiabatic air compression in turbocompressor using thermodynamic air data
APPENDIX 706: Turbomachinery, Introduction to turbomachinery, Calculation of Laval turbine velocity triangles
APPENDIX 712: Turbomachinery, Internal losses of turbomachines and their influence on turbomachine design, Derivation of conical stage equation
APPENDIX 713: Turbomachinery, Essential equations of turbomachines, Construction of h-s diagram of turbomachine stage
APPENDIX 714: Turbomachinery, Internal losses of turbomachines and their influence on turbomachine design, Derivation of equation for axial velocity of conical stage with constant circulation
APPENDIX 721: Turbomachinery, Using similarities of turbomachines in turbomachine design, Calculation of performance characteristics of turbomachine
APPENDIX 726: Turbomachinery, Thermodynamics of turbocompressors, Calculation of dimensions of radial stage of compressor
APPENDIX 727: Engineering sciences, Limits of material use, Construction of moment and force balance using relaxation method, stress tensor and calculation of equivalent stress
APPENDIX 736: Turbomachinery, Essential equations of turbomachines, Calculation of velocity and pressure distribution in Kaplan turbine
Appendices
  page 10
APPENDIX 737: Engineering sciences, Vibration, Derivation of equations for frequency of oscillation of pendulum, spring and torsion bar
APPENDIX 738: Turbomachinery, Rotodynamic pumps, Change of operating point after pump replacement
APPENDIX 755: Turbomachinery, Shapes of blades and flow parts of turbomachines, Calculation of coordinates of camber line of radial forward curved blade
APPENDIX 760: Engineering sciences, Vibration, Derivation of equation for harmonic frequencies of transverse beam loaded with multiple loads
APPENDIX 764: Steam engine, Essential equations of crank mechanism of steam engine, Derivation of equations for calculating forces acting on piston rod guide
APPENDIX 767: Steam engine, Essential equations of crank mechanism of steam engine, Calculation of forces acting on crank mechanism of piston of steam engine
APPENDIX 768: Steam engine, Essential equations of crank mechanism of steam engine, Derivation of equation for converting piston position expressed in percentage to corresponding value of shaft rotation
APPENDIX 769: Steam engine, Essential equations of crank mechanism of steam engine, Calculation of forces acting on crank mechanism of steam engine slide valve
APPENDIX 774: Steam engine, Essential equations of crank mechanism of steam engine, Derivation of torque equation from forces acting on piston
APPENDIX 776: Steam engine, Essential equations of crank mechanism of steam engine, Calculation of shaft output torque
APPENDIX 781: Fluid dynamics, Internal fluid friction and boundary layer development, Derivation of equations for laminar flow between two plates
APPENDIX 784: Steam engine, Essential equations of crank mechanism of steam engine, Derivation of angular velocity equations for piston engine and working machine with linear power input characteristics
APPENDIX 785: Steam engine, Essential equations of crank mechanism of steam engine, Calculation of unevenness of operation of piston engine and design of flywheel size
APPENDIX 791: Fluid dynamics, Internal fluid friction and boundary layer development, Derivation of Navier-Stokes equation
APPENDIX 793: Turbomachinery, Shapes of blades and flow parts of turbomachines, Derivation of equation for Zweifel coefficient
APPENDIX 795: Engineering sciences, Limits of material use, Calculation of thermal expansion of body
Appendices
  page 11
APPENDIX 796: Turbomachinery, Rotodynamic pumps, Derivation of equation for NPSHR
APPENDIX 803: Turbomachinery, Using similarities of turbomachines in turbomachine design, Derivation of equation for ideal dimensionless characteristics of turbomachine stages
APPENDIX 813: Engineering sciences, Engineering thermomechanics, Derivation of equation of comparative isobar in T-s chart
APPENDIX 815: Engineering sciences, Limits of material use, Calculation of stress in body from thermal expansion
APPENDIX 819: Stirling engine, Stirling Engine Cycle, Calculation of temperature profile in Stirling engine
APPENDIX 828: Engineering sciences, Limits of material use, Derivation of equation for mean value of coefficient of thermal expansion
APPENDIX 832: E. sciences, Radiation, Calculation of average daily totals of incident solar radiation energy for Brno area
APPENDIX 833: Fluid dynamics, Pressure loss at fluid flow and its calculation, Derivation of equation for heat loss and frictional force in fluid transport
APPENDIX 835: Turbomachinery, Water turbines, Calculation of water wheel dimensions
APPENDIX 849: Turbomachinery, Thermodynamics of turbocompressors, Calculation of isentropic, isothermal and polytropic efficiency of turbocompressor
APPENDIX 862: Fluid dynamics, Flow of gases and steam through nozzles, Calculation of position of shock wave in nozzle
APPENDIX 870: Turbomachinery, Using similarities of turbomachines in turbomachine design, Derivation of formula for specific speed
APPENDIX 871: Turbomachinery, Thermodynamics of heat turbines, Calculation of steam expansion in steam turbine
APPENDIX 872: Fluid dynamics, Internal fluid friction and boundary layer development, Derivation of pressure loss of pipe in laminar fluid flow
APPENDIX 885: Stirling engine, Energy balance of Stirling engine cycle, Calculation of mass of working gas inside Stirling engine
APPENDIX 887: Stirling engine, Losses in Stirling engines, Derivation of equation for approximate calculation of gas mass flow through piston ring leaks in Stirling engine
APPENDIX 896: Fluid dynamics, Mach number and high velocity flow effects, Calculation of loss in normal shock wave formed in Laval nozzle
APPENDIX 900: Turbomachinery, Aerodynamics of wind turbines, Calculation of power and thrust coefficient of blade element and rotational speed
Appendices
  page 12
APPENDIX 913: Turbomachinery, Thermodynamics of heat turbines, Derivation of equation for Euler work of ideal Curtis stage
APPENDIX 923: Turbomachinery, Essential equations of turbomachines, Calculation of Euler work in turbomachine stage
APPENDIX 924: Engineering sciences, Limits of material use, Odvození tenzoru napjatosti pro válcovou soustavu souřadnic
APPENDIX 926: Turbomachinery, Fans, Derivation of equation for recalculating fan characteristics during change in density
APPENDIX 931: Engineering sciences, Engineering mathematics, Example of composition equation
APPENDIX 935: Engineering sciences, Engineering thermomechanics, Derivation of equation for work done by gas confined in container by piston
APPENDIX 936: Turbomachinery, Introduction to turbomachinery, Example of 2D calculation (shape of compressor inducer)
APPENDIX 937: Engineering sciences, Engineering thermomechanics, Derivation of equality between heat and enthalpy in closed system
APPENDIX 963: E. sciences, Engineering mathematics, Derivation of analytical solution to system of two linear equations
APPENDIX 966: Engineering sciences, Engineering thermomechanics, Derivation of equation for enthalpy of working substance
APPENDIX 970: Engineering sciences, Limits of material use, Calculation of component deformation during bending
APPENDIX 977: Energy sources, Heat cycles and their realizations, Derivation of energy balance equations of Lenoir cycle
APPENDIX 979: Energy sources, Heat cycles and their realizations, Derivation of energy balance equations for diesel cycle
APPENDIX 993: Fluid dynamics, Flow of gases and steam through nozzles, Derivation of equation for calculation of inlet part of divergent section of Laval nozzle
APPENDIX 997: Fluid dynamics, Internal fluid friction and boundary layer development, Derivation of Euler equation of hydrodynamics
APPENDIX 1000: Turbomachinery, Performance of steam turbines, Calculation of change in mass flow in turbine
APPENDIX 1005: Turbomachinery, Internal losses of turbomachines and their influence on turbomachine design, Derivation of formula for axial stage reaction
APPENDIX 1007: Fluid dynamics, Mach number and high velocity flow effects, Calculation of oblique shock wave parameters
APPENDIX 1015: Turbomachinery, Shapes of blades and flow parts of turbomachines, Derivation of equation for change of flow area of elementary stage
APPENDIX 1017: Turbomachinery, Fans, Derivation of equation for recalculating fan characteristics during change in rotational speed
Appendices
  page 13
APPENDIX 1028: Energy sources, Use of water gradient, Calculation of reference (ideal) water flow performance
APPENDIX 1030: Turbomachinery, Essential equations of turbomachines, Calculation of reaction of fan
APPENDIX 1035: Turbomachinery, Internal losses of turbomachines and their influence on turbomachine design, Calculation of axial stage with twisted blades at compressible flow and consideration of losses
APPENDIX 1036: Turbomachinery, Internal losses of turbomachines and their influence on turbomachine design, Calculation of internal losses of stage using empirical formulas
APPENDIX 1044: Engineering sciences, Limits of material use, Calculation of component torsion
APPENDIX 1049: Turbomachinery, Thermodynamics of turbocompressors, Derivation of equation for amount of condensate rejected from compressed and cooled moist air
APPENDIX 1065: Turbomachinery, Aerodynamics of wind turbines, Derivation of formula for angle of mean aerodynamic velocity
APPENDIX 1068: Engineering sciences, Engineering mathematics, Rewriting system of linear equations into matrix and solving it using Gauss elimination method
APPENDIX 1079: Engineering sciences, Engineering mathematics, Compilation of equations for construction of parallel-scale nomogram nomogram
APPENDIX 1080: Engineering sciences, Engineering mathematics, Construction of parallel-scale nomogram for calculating peripheral speed
APPENDIX 1081: Fluid dynamics, Pressure loss at fluid flow and its calculation, Calculation of pipeline system constant from measured pressure loss
APPENDIX 1085: Engineering sciences, Engineering mathematics, Application of gradient and level of scalar field on example of determining pressure in container with liquid
APPENDIX 1087: Engineering sciences, Engineering mathematics, Determining acceleration of pipe gas by applying gradient of function
APPENDIX 1088: Turbomachinery, Aerodynamics of wind turbines, Derivation of formula for thrust coefficient using airfoil theory
APPENDIX 1105: Engineering sciences, Radiation, Calculation of surface temperature of black body irradiated by sunlight
APPENDIX 1135: Engineering sciences, Radiation, Calculation of reduction in energy of gamma radiation after passing through human body
APPENDIX 1139: Fluid dynamics, Internal fluid friction and boundary layer development, Fluid stress tensor proposal
Appendices
  page 14
APPENDIX 1144: Engineering sciences, Limits of material use, Calculation of thermal expansion of shaft with uneven thermal load
APPENDIX 1176: Engineering sciences, Introduction to domain of atoms and molecules, Calculation of ionization energy of visible light
APPENDIX 1185: Engineering sciences, Introduction to domain of atoms and molecules, Calculation of ionization energy of chlorine
APPENDIX 1188: Engineering sciences, Introduction to domain of atoms and molecules, Determination of enthalpy of fusion of substance
APPENDIX 1235: Fluid dynamics, Internal fluid friction and boundary layer development, Derivation of potential vortex equations
APPENDIX 1238: Fluid dynamics, Internal fluid friction and boundary layer development, Vector analysis of laminar flow
APPENDIX 1249: Engineering sciences, Radioactivity, Calculation of sample activity and determination of radioactivity products
APPENDIX 1254: Engineering sciences, Radiation, Derivation of equations for decrease in radiation intensity when passing through plate
APPENDIX 1260: Engineering sciences, Engineering mathematics, Example of solving equation using Monte Carlo iterative method
APPENDIX 1262: Fluid dynamics, Aerodynamics of airfoils, Calculation of aerodynamic variables of airplane model during gliding flight
APPENDIX 1266: Turbomachinery, Introduction to turbomachinery, Calculation of power output of turboset
APPENDIX 1271: Fluid dynamics, Throttling of gases and steam, Steam throttling calculation
APPENDIX 1276: Fluid dynamics, Throttling of gases and steam, Proof of equality of enthalpies of gases during throttling
©Jiří Škorpík, LICENCE