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1

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3

4

5

6 T 0 n T n( T 0 T) n : : T : : T : T 0 : T = 100T 0 = 30n = 80

7 V JIS 0

8 JIS Z

9 T h V T h V T c T c JIS C K T

10 T ca T h T cb T c V T c T c T c T ca T cb 0

11 T h T ja T jb T ca T cb T c V T j T c T ja T jb

12 JIS

13 10 40 m 1 m

14

15

16

17 10 khz DANTEC

18 JIS Z 8704,

19 1) 2) ) 4) 5)

20 1) = 2) 3)

21 : 1) T T 1 G f j f T T ws ws 1 2r 1 4 as h w / 1 ln( r as / ra ) 2 i a G f 2r tc 2r tc Tj : Tws : Tf : 2ra : r : a : i : w : h : 2 as - p.297 2r a 2r as

22 1 mm 0.2 mm 2r a = m 2r as = m a = (400+22)/2 = 211 W/mK a = (19+30)/2 = 24.5 W/mK i = 0.2 W/mK T

23 2) (Satyamurthy et al., Int. J. Heat Mass Transf., 22 (1979), pp ) m m w f m j T T j f T T G G j w w w f 2 1 m /( r 2 ) a a /( r 2 ) a a a a G /( r 2) w exp( mwltc) / m m / m m / m f 1 G 1 G w f G j j f j ln( rh / ras) ln( ras / r 2h 2i 1 ln( ras / ra) 2 ras h 2 i h ra 2 w a ) G w : - G w : - G w : - Tj : Tw : Tf 2ra 2 as : : r : 2rh : a i h : : : : h : - - 2r as 2r h l tc T j T f T w

24 1 mm 0.2 mm 2r a = m 2r as = m 2r h = m a = (400+22)/2 = 211 W/mK a = (19+30)/2 = 24.5 W/mK i = 0.2 W/mK h = 10 W/mK - = m 1 mm10 1 % T

25 : 63.2% c c V c h A,c : V, A : h : - c c d 6h d : c c d 4h d : c c h :

26 d = 1 mm = 9000 kg/m 3 u1 m/s c = 400 J/kgK h = 150 W/m 2 K c ( ) c d = 4 s 6h 98% 4 c = 16 s d = 1 m = kg/m 3 u1 m/s c = 133 J/kgK h = W/m 2 K c ( ) c d = ms 4h 98% 4 c = 0.29 ms

27

28 28

29 IR FPA (Norton, P., Encyclopedia of Optical Engineering, 2003, pp ) 29

30 InSb, MCT, QWIP NETD Hz pixel 420 Hz pixel NETD Hz 300 g

31 () E f (T) E T f (T). f (T) T 31

32 E E 1 E Ta 2 f ( T) (1 ) f ( Ta ) f ( T a ) E1 f ( T) E (1 ) f ( T 2 a ) T, 1 T a T T a 32

33 E f ( T) (1 ) f ( Ta)

34 E f ( T) (1 ) f ( Ta) 1) T a 2) T a

35 35

36 1) 2) 1 m 36

37 E b T E b = f (T) T y z x E T a E = f (T) + (1 ) f (T a ) E b E T a 37

38 () T T IRb ( = ) T IR = T () T y z x T IRb T IR T a 38

39 q h f A( T dt dy Q w T 0 y 0 ) h( T T ) [W/m 2] q : w f [W/m 2K] Q : 0 h TW y q T0 h : 1-

40 h [W/m 2 K]

41 q h q T cv w f T dt f dy dt dy y 0 0 y 0 h( T T 0) w s T w f T 0 q cv q q cv q h T w rd s T dt s dy dt dy 0 y 0 y 0 h( T T 0) w y q rd

42 h q HFS T w : q cv T q HFS T q 0 w T 0 q q rd rd T w T 0 q HFS q cd qrd

43 Q gen: [W] Q Q cv gen Q cd Q h A( Tw T 0) A( Tw T 0) Q cv: Q cd Q rd A: : : [W] [W] [W] rd T 0 T w Q cv Q gen Q cd Q rd

44 q gen : [W/m 2 ] h T w q cv T q : [W/m 2 ] cv q : [W/m 2 ] cd q : [W/m 2 ] rd q gen q cd q rd 2 T x 0 Tw T 0 : : 2 w 2 T z 2 w T 0 T w (x,z) q cv q q rd q cd

45 Nu c Re n Pr m 1) Nu x /2 1/ Re 1 Pr, ( Pr 0.6) x y 2) Nu x.8 1/ Re 0 Pr, ( Pr x 0.6) x Nu c ( Gr Pr) n 1) Nu L / ( Gr Pr) 1, (10 Gr Pr 10, Pr L L 0.7) 2) Nu x / ( Gr Pr) 1, (10 Gr Pr 10 ) x x

46

47 J I S JIS Z JIS Z JIS B 8705, 1992 JIS C 1602, 1995 JIS C 1604, 1997 JIS C 1605, 1995 JIS C 1606, 1989 JIS C 1611, 1995 JIS C 1612, 2000

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untitled 2009 7 29-30 1 2 + + = 1 = 1 ( = = 0) 3 Eb (, T ) exp[ C C 2 1 5 /( T )] 1 [ W/(m2μm)] : [ m] T : [K] C 1 = 3.743 10 8 [W m 4 /m 2 ] C 2 = 1.439 10 4 [ m K] 4 E b max max T 2897 m m K = 10 m 5 E E b E

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