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1、䕤ᇘ⥛㸼ᴀ㡖列出ⱘ䕤ᇘ⥛᭄ᰃḍ㑶㒓᭛⤂䌘᭄᭭∛㓪㗠参㗗ᴤ᭭1MikaélA.Bramson:InfraredRadiation,AHandbookforApplications,Plenumpress,N.Y.2WilliamL.Wolfe,GeorgeJ.Zissis:TheInfraredHandbook,OfficeofNavalResearch,DepartmentofNavy,Washington,D.C.3Madding,R.P.:ThermographicInstrumentsandsystems.Madison,Wisconsin
2、:UniversityofWisconsin–Extension,DepartmentofEngineeringandAppliedScience.4WilliamL.Wolfe:HandbookofMilitaryInfraredTechnology,OfficeofNavalResearch,DepartmentofNavy,Washington,D.C.5Jones,Smith,Probert:Externalthermographyofbuildings...,Proc.oftheSocietyofPhoto-OpticalInstrumenta
3、tionEngineers,vol.110,IndustrialandCivilApplicationsofInfraredTechnology,June1977London.6Paljak,Pettersson:ThermographyofBuildings,SwedishBuildingResearchInstitute,Stockholm1972.7Vlcek,J:Determinationofemissivitywithimagingradiometersandsomeemissivitiesatλ=5嘕m.PhotogrammetricEngi
4、neeringandRemoteSensing.8Kern:Evaluationofinfraredemissionofcloudsandgroundasmeasuredbyweathersatellites,DefenceDocumentationCenter,AD617417.9Öhman,Claes:EmittansmätningarmedAGEMAE-Box.Tekniskrapport,AGEMA1999.(EmittancemeasurementsusingAGEMAE-Box.Technicalreport,AGEMA1999.)䕤ᇘ⥛㸼
5、T:全光䈅;SW:2–5嘕m;LW:8–14嘕m,LLW:6.5–20嘕m;1:ᴤ᭭;2:㾘Ḑ;3:⏽ᑺ°C;4:光䈅;5:䕤ᇘ⥛:6:参㗗123456不䫜䩶18-8㉏,800°C60T0.852下⇻化不䫜䩶18-8㉏,ᡯ光20T0.162不䫜䩶合䞥,8%䬡,18500T0.351%䫀不䫜䩶喷ⷖ700T0.701不䫜䩶ᡯ光㭘ᵓ70LW0.149䕤ᇘ⥛㸼123456不䫜䩶ᡯ光㭘ᵓ70SW0.189不䫜䩶加Ꮉ㭘ᵓ,ሔ70LW0.289䚼ᣀ㢅不䫜䩶加Ꮉ㭘ᵓ,ሔ70SW0.309䚼ᣀ㢅不䫜䩶䔻制700T0.451冰:→∈ೳຸ充∈20T0.952ೳຸᑆ➹20T
6、0.922ล᭭PVC,ล㛊䫎䴶,70LW0.939ᱫ哑,៤ᔶล᭭PVC,ล㛊䫎䴶,70SW0.949ᱫ哑,៤ᔶล᭭㑸㓈⦏⩗压ᵓ70LW0.919(印刷㒓䏃ᵓ)ล᭭㑸㓈⦏⩗压ᵓ70SW0.949(印刷㒓䏃ᵓ)ล᭭㘮亚ᅝ䝃䱨䷇ᵓ70LW0.559(frigolit)ล᭭㘮亚ᅝ䝃䱨䷇ᵓ70SW0.299(frigolit)㒌㒚䭓Ḝ,⌙♄20SW0.856㒌㒚䭓Ḝ,㑶㡆20SW0.906Ꮧ᭭咥㡆20T0.981᧾⫋20T0.91᧾⫋⍖ⓚ20T0.85–0.951ᴤ17SW0.985ᴤ19LLW0.9628ᴤ刨ᑇ20T0.8–0.91ᴤ刨ᑇ‵20
7、T0.902ᴤ刨ᑇ‵70LW0.889䕤ᇘ⥛㸼123456ᴤ刨ᑇ‵70SW0.779ᴤഄ䴶T0.5–0.71ᴤᵒ,4件不同ḋ70LW0.81–0.899品ᴤᵒ,4件不同ḋ70SW0.67–0.759品ᴤⱑ㡆,╂20T0.7–0.81ᴤ㛊合ᵓ,光⒥,36SW0.827ᑆ➹ᴤ㛊合ᵓ,加Ꮉ20SW0.836‵㛊ᶨ䕃、♄㡆,㉫20T0.951㊭‵㛊⹀䋼20T0.951⇶⇻化䪱ẝ㉝T0.281⇻化䪰ẝ㉝T0.841⇻化䪰㑶㡆,㉝⢊T0.701⇻化䪱⌏ᗻ,㉝⢊T0.461⇻化䪱㒃⇻化䪱㉝T0.161⇻化䬡500–650T0.52–0.
8、591⇻化䬡1000–1250T0.75–0.861∈冰、光⒥0T0.971∈冰