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Peabody C.H. — Thermodynamics of the Steam Engine and other Heat-engines
Peabody C.H. — Thermodynamics of the Steam Engine and other Heat-engines

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Название: Thermodynamics of the Steam Engine and other Heat-engines

Автор: Peabody C.H.

Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Издание: 6-th edition

Год издания: 1909

Добавлена в каталог: 31.03.2013

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Absolute temperature.      56
Absorption refrigerating apparatus      411
Adiabatic for gases      63
Adiabatic for gases for liquid and vapor      100
Adiabatic for gases, lines      17
Adiabatics, spacing of      31
After burning      319
Air, flow of      429
Air, friction in pipes      380
Air, pum      374 375
Air, thermometer      368
Air-compressor, calculation      377
Air-compressor, compound      366
Air-compressor, cooling during compression      360
Air-compressor, effect of clearance      363
Air-compressor, efficiency      370
Air-compressor, fluid piston      359
Air-compressor, friction      369
Air-compressor, moisture in cylinder      361
Air-compressor, power expended      362
Air-compressor, three-stage      368
Alternative method      49
Ammonia      123
Automatic and throttle engines      276
Bell-Coleman refrigerating machine      413
Binary engines      180 280
Blast-furnace gas-engine      335
Boyle’s law      54
British thermal unit      5
Buchner      437
Callendar and Nicolson      231
Calorie      5
Calorimeter      191
Calorimeter, separating      194
Calorimeter, Thomas      195
Calorimeter, throttling      161
Carburetors      334
Carnot’s engine      22
Carnot’s engine, function      28
Carnot’s engine, principle      26
Characteristic equation      2
Characteristic equation for gases      55
Chestnut Hill, engine test      239
Compound air-compressor      366
Compound air-compressor, air-engine      384
Compound-engines      156
Compound-engines, cross-compound      169
Compound-engines, direct-expansion      163
Compound-engines, indicator diagrams      162
Compound-engines, low-pressure cut-off      161
Compound-engines, ratio of cylinders      162
Compound-engines, total expansions      160
Compound-engines, with receiver      159
Compound-engines, without receiver      158
Compressed-air      358
Compressed-air engine      384
Compressed-air engine, calculation      388
Compressed-air engine, compound      388
Compressed-air engine, consumption      385
Compressed-air engine, final temperature      385
Compressed-air engine, interchange of heat      386
Compressed-air engine, moisture in cylinder      3
Compressed-air engine, volume of cylinder      386
Compressed-air, calculation      377
Compressed-air, compound compressor      366
Compressed-air, effect of clearance      363
Compressed-air, friction, etc      369
Compressed-air, hydraulic compressor      372
Compressed-air, interchange of heat      365
Compressed-air, storage of power      392
Compressed-air, temperature after compression      364
Compressed-air, transmission of power      391
Condensers      149
Condensers, cooling surface      151
Condensers, ejector      471
Creusot, tests on engine      248
Critical temperature      71
Cut-off and expansion      273
Cycle, closed      25
Cycle, non-reversible      4
Cycle, Reversible      24
Delafond      248
Density at high-pressure      71
Denton      419 20
Designing steam-engines      152 179
Diesel motor      341
Diesel motor, economy      355
Differential coefficient dp/dt      79
Dixwell’s tests      270
Dryness-f actor      86
Dynamometers      186
Economy of steam-engines      237
Economy, compounding      257
Economy, expansion      256
Economy, increase of size      255
Economy, intermediate reheaters      268
Economy, methods of improving      245
Economy, raising pressure      247
Economy, steam-jackets      261 266
Economy, superheating      270
Economy, variation of load      274
Effect of raising steam-pressure      148 247
Efficiency      25
Efficiency of reversible engines      33
Efficiency of steam-engine      130 144
Efficiency of superheated steam      115
Efficiency, maximum      39
Efficiency, mechanical      287
Ejector      470
Ejector, condenser      471
Engine of a liquid      97
Engine of a liquid and vapor      99
Engine of gases      67
Engine, Carnot’s      22
Engine, compressed-air      384
Engine, due to vaporization      99
Engine, expression for      35
Engine, hot-air      298
Engine, internal combustion      298
Engine, reversible      24
Engine, scale of      31
entropy      32
Exponential equation      66
First and second laws combined      49
First law of thermodynamics      13
First law of thermodynamics, application of      45
First law of thermodynamics, application of vapors      87
Flow in tubes and nozzles      434
Flow in tubes and nozzles, Buchner’s experiments      437
Flow in tubes and nozzles, design of a nozzle      444
Flow in tubes and nozzles, experiments      436
Flow in tubes and nozzles, friction head      435
Flow in tubes and nozzles, Kneass’ experiments      440
Flow in tubes and nozzles, Kuhhardt’s experiments      443
Flow in tubes and nozzles, Lewicki’s experiments      442
Flow in tubes and nozzles, Rateau’s experiments      440
Flow in tubes and nozzles, Rosenhain’s experiments      441
Flow in tubes and nozzles, Stodola’s experiments      441
Flow of air in pipes      380
Flow of air, Fliegner’s equations      429
Flow of air, maximum velocity      430
Flow of air, through porous plug      69
Flow of fluids      423
Flow of gases      426
Flow of incompressible fluids      425
Flow of saturated vapor      430
Flow of superheated steam      433
French and English units      56
Friction of engines      285
Friction of engines, distribution      295
Friction of engines, initial and load      287
Gas-engine      304
Gas-engine, after burning      319
Gas-engine, blast-furnace gas      333
Gas-engine, economy and efficiency      320 348
Gas-engine, ignition      329
Gas-engine, starting devices      329
Gas-engine, temperature after explosion      318
Gas-engine, valve-gear      324
Gas-engine, water jackets      320
Gas-engines four-cycle      337
Gas-engines two-cycle      338
Gas-engines with compression in cylinder      308
Gas-engines with separate compression      305
Gas-producers      33
Gases      54
Gases, adiabatic equations      64
Gases, characteristic equation      55
Gases, characteristics for gas-engines      314
Gases, entropy      67
Gases, general equations      61
Gases, intrinsic energy      66
Gases, isoenergic equation      63
Gases, isothermal equation      61
Gases, special method      60
Gases, specific heats      59
Gases, specific volumes      57
Gasoline engine      334
Gauges      186
Gay — Lussac’s law      54
Graphical representation of characteristic equation      4
Graphical representation of efficiency      33
Graphical representation of energy      20
Grashoff’s formula      432
Hallauer’s tests      219
Hall’s investigations      230
Heat of the liquid      81
Heat of vaporization      81
Him engine, tests on      220
Hirn’s analysis      205
Hot-air engines      298
Ignition      329
Indicators      187
Influence of cylinder walls      199
Influence of cylinder walls, Callendar and Nicolson      231
Influence of cylinder walls, Hall      230
Influence of cylinder walls, Hirn’s analysis      205
Influence of cylinder walls, representation      202
Injector      447
Injector, combining-tube      458
Injector, delivery-tube      459
Injector, double      461
Injector, efficiency of      459
Injector, exhaust steam      467
Injector, Korting      462
Injector, lifting      460
Injector, restarting      464
Injector, self-adjusting      462
Injector, Seller’s      460
Injector, steam-nozzle      458
Injector, theory      448
Injector, velocity in delivery tube      455
Injector, velocity of steam-jet      452
Injector, velocity of water      454
Internal combustion engines      298
Internal latent heat      86
Intrinsic energy      14
Intrinsic energy of gases      66
Intrinsic energy of vapors      95
Isoenergic for gases      63
Isoenergic or isodynamic line      17
Isothermal lines      16
Isothermal lines for gases      61
Isothermal lines for vapors      9
Josse, tests on binary engine      282
Joule and Kelvin’s experiments      69
Kelvin’s graphical method      29
Kerosene-oil engine      335
Kilogram      56
Kneass      440—452
Kuhhardt      443
Latent heat of expansion      6
Laws of thermodynamics      13 22
Laws of thermodynamics, application to gases      59
Laws of thermodynamics, application to vapors      88
Lewicki      442
Lines of equal pressure      16
Lines of equal volume      16
Lines, adiabatic      17
Lines, isoenergic      17
Lines, isothermal      16
Mechanical efficiency      286
Mechanical equivalent of heat      78
Meter      56
Meyer      350
Non-reversible cycles      40
Oil-engine economy      355
Oil-engines      335
Porous plug, flow through      69
Pressure of saturated steam      83
Pressure of vapors      84
Pressure, specific      2
Quality      86
Rankine’s equations for flow of steam      432
Rankine’s equations, cycle      134
Rateau      440
Ratio of cylinders, compound engines      162
Refrigerating machines      396
Refrigerating machines, absorption      411
Refrigerating machines, air      396
Refrigerating machines, calculations for      403 408
Refrigerating machines, compression      405
Refrigerating machines, fluids, for      409
Refrigerating machines, proportions      398 406
Refrigerating machines, tests      412 413 417
Refrigerating machines, vacuum      398
Regnault’s equations for steam      77
Relations of adiabatics and isothermal lines      18
Relations of thermal capacities      12
Reversible cycle      24
Reversible cycle, engine      24
Rontgen’s experiments      72
Rosenhain      441
Rowland      81
Saturated vapors      76
Saturated vapors, adiabatic equations      100
Saturated vapors, entropy      97 99
Saturated vapors, flow of      430
Saturated vapors, general equation      87
Saturated vapors, intrinsic energy      95
Saturated vapors, isoenergic equation      95
Saturated vapors, isothermal equation      94
Saturated vapors, pressure of      77
Saturated vapors, special method      90
Saturated vapors, specific heats      93
Saturated vapors, specific volumes      91
Schroter’s tests of refrigerating, machines      412 417
Schroter’s tests of refrigerating, tests of steam-engines      273
Seaton’s multipliers      179
Seaton’s multipliers for steam engine design      179
Seaton’s multipliers triple-expansion      172
Seaton’s multipliers with non-conducting cylinder      134
Second law of thermodynamics      22 27
Second law of thermodynamics, application of      47
Second law of thermodynamics, application to vapors      88
Specific-heat      6 58
Specific-heat of gases      58
Specific-heat of liquids      83
Specific-heat of superheated steam      93
Specific-heat of water      78
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