ASTM C108-1946(2013) Standard Symbols for Heat Transmission《热传导的标准符号》.pdf
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1、Designation: C108 46 (Reapproved 2013)Standard Symbols forHeat Transmission1This standard is issued under the fixed designation C108; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parenthese
2、s indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.SPECIAL PRACTICES RELATING TO HEAT FLOWTERMSTerms Ending in “ivity”Terms ending in “ivity” designatecharacteristics of materials, normally independent of size orshape,
3、 sometimes called “specific properties.”Examples: Conductivity and resistivity.Terms Ending in “ance”Terms ending in “ance” designateproperties of a particular object, depending not only on thematerial, but also upon size and shape, sometimes called“total quantities.”Examples: Conductance and transm
4、ittance.Terms Ending in “ion”Terms ending in “ion” designatetime rate of the process of transfer; flux, flow rate.Examples: Conduction and transmission.Transmission“Transmission,” “transmissivity,” “transmit-tance” usually refer to transfer by one or more of theprocesses of conduction, convection, a
5、nd radiation.Conduction“Conduction,” “conductivity,” “conductance”usually refer to transfer within a medium, and without bodilydisplacement as occurs with convection, and without transferat a distance as occurs with radiation.HEAT FLOW SYMBOLSA = areap = density; pounds, kilograms, etc., per unit of
6、 volumeL = length of path of heat flowQ = total quantity of heat transferred (with subscripts for particular casesand to distinguish for Q for volume rate)Q = volume rate; discharge by volume; fluid rate of flow by volume.(There also is used q with a subscript to distinguish from heat flowrate.)c =
7、specific heatT = temperature on absolute scalet = temperature, degrees Celsius or Fahrenheitt, = timeW = weight; quantity of matter measured in pounds, kilograms, etc.w = flow rate; pounds, kilograms, etc., per unit of timeq = heat flow rate; time rate of heat transferred for a particular setupwith
8、any value of area Aq is in general the time derivative of total quantity of heattransferred. For steady-state heat flow, q is total quantity of heatdivided by time.k = thermal conductivity; heat flow rate, per unit of area, per “degreeper unit of length”dq/dA52ksdt/dLd general expression giving valu
9、e at eachpointk5sq/Ad/st/Ld for substantially uniform and steady-stateheat flow through a homogeneous medium of thickness L,with plane parallel faces of area A, and a constant tempera-ture difference t applied to the faces1/k = thermal resistivity; reciprocal of conductivityR = thermal resistance; d
10、egrees, per unit of heat flow rate, for a particu-lar body or setup (where the area may not be known)R5t/q for substantially uniform and steady-state heat flow,generallyR5L/kA for substantially uniform and steady-state heat flowthrough a homogeneous medium of thickness L with planeparallel faces of
11、area A1/R = thermal conductance; reciprocal of thermal resistance (C is alsoused)1/RA = thermal conductance per unit of area; heat flow, rate, per unit ofarea, per degreeRA = thermal resistance of unit area; degrees, per “unit of heat flow rateper unit of area.” R is used for resistance for a setup
12、with a particu-lar area (which may not be known) and RA for resistance of unitarea. In some British texts R is used for thermal resistance of unitarea, here called RA1These symbols are under the jurisdiction of ASTM Committee C08 onRefractories and are the direct responsibility of Subcommittee C08.0
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