Handbook of Applied Thermal DesignMcGraw-Hill, 1989 - 720 стор. Problems in thermal design are encountered in a vast array of fields, from manufacturing equipment to energy systems and consumer products to scientific aparatuses. The tools to achieve the solutions to these problems lie within this handbook. Written for the non-specialist, this comprehensive resource addresses the use and control of thermal phenomena in both products and processes. With contributions from leading experts in the field, this book gives a foundation to the four principal facets of thermal design: heat transfer analysis, materials performance, heating and cooling technology, and instrumentation and control. The focus is on providing practical thermal design and development guidance across the spectrum of problem analysis, material applications, equipment specification, and sensor and control selection. Professional in thermal design, heat transfer, and mechanical engineering will find this handbook invaluable. |
З цієї книги
Результати 1-3 із 81
Сторінка 1-39
... defined as Tw = Twi + Tw2 2 ( 3.54 ) All of the fluid properties are evaluated at ( T „ + T , ) / 2 . Based on the data reported in Refs . 32 , 33 , and 34 and by using the correlation technique of Ref . 18 , Ref . 2 proposes the ...
... defined as Tw = Twi + Tw2 2 ( 3.54 ) All of the fluid properties are evaluated at ( T „ + T , ) / 2 . Based on the data reported in Refs . 32 , 33 , and 34 and by using the correlation technique of Ref . 18 , Ref . 2 proposes the ...
Сторінка 1-44
... defined by Ra = 8B ( TT ) D ' Ма ( 3.116 ) and where T , and T are the gas and the surface tempera- tures , respectively . On a Sphere , Cylinder , or a Cube Placed in a Spherical or a Cubical Enclosure Natural - convection heat ...
... defined by Ra = 8B ( TT ) D ' Ма ( 3.116 ) and where T , and T are the gas and the surface tempera- tures , respectively . On a Sphere , Cylinder , or a Cube Placed in a Spherical or a Cubical Enclosure Natural - convection heat ...
Сторінка 1-45
... defined in Eq . ( 3.38 ) and given in Ta- ble 3.2 parameter defined in Eq . ( 3.24 ) and given in Ta- = ble 3.1 = specific heat of fluid = # | # 1 = parameter in Eq . ( 3.45 ) given in Table 3.3 parameter defined in Eq . ( 3.25 ) and ...
... defined in Eq . ( 3.38 ) and given in Ta- ble 3.2 parameter defined in Eq . ( 3.24 ) and given in Ta- = ble 3.1 = specific heat of fluid = # | # 1 = parameter in Eq . ( 3.45 ) given in Table 3.3 parameter defined in Eq . ( 3.25 ) and ...
Зміст
Longsworth APD Cryogenics Inc Allentown Pa PART | 1-5 |
Conduction HeatTransfer Solutions 120 | 1-20 |
Forced Convection Heat Transfer 148 | 1-48 |
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alloys aluminum ambient applications ASTM Btu/h Btu/lb carbon cellular ceramic chemical components compressor condenser cooling corrosion cryogenic density diameter effect electrical element emittance energy equation fibers fins fluid foams ft² furnace fusible alloys gases glass Hastelloy heat exchangers heat flow heat flux heat transfer heat-transfer coefficient heater high-temperature Inconel increase kg/m³ laminar lb/ft³ lb/in² liquid load materials maximum measured mechanical melting metal methods module Nusselt Nusselt number operating oxide perature percent physical properties pipe plastic plate polyisocyanurate polyurethane pressure radiation ratio refractory refrigerant resistance thermometer sensor shown in Fig silicon silicon carbide specific heat stainless steel strength stress surface T₁ Table temperature thermal conductivity thermal design thermal expansion thermal insulations thermal performance thermal resistance thermocouple thermometers thickness tube Typical values valve vapor velocity wall wire yield strength
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