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- Jack Summers
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1 -.., «-» «,.»,..,,..,,.., 2017
2 , , -2-1, -2, -3, ё,,,,, ,,,, ,... 40
3 ё , ё Conclusion
4 , , :, -,,, -,, -, -. -,.,. -, -,,, -
5 . -. -, -
6 , 105 ё ( ) , , , - ё : ( ) 2,7, ( ) 1,5. ( SMR) ( ). : ,,, - -,., ,, 40. -, : ; -, 5..;
7 ; ; ; ; ; - ; ; ; ;. 1.1.,,, :, -. : -,, -
8 , , -. - ().,. -, () -, -., -.
9 ,,..,.., ,
10 ., , елз елз елз / ,75 0,68 0,75 0, , / /
11 / 109,86 110,62 0,94 0, % : ; ; ,.
12 ,, ,, WERT/ ,, GRT/ WERT/25 1 1
13 1.6,, , 6 1.7,, ,, ,,. 1 1 WERT/ ,,. WERT/
14 1.11,, , ,,. Lip ,, ,,
15 ,,,,, -.,, 2 12,,, -,. 8, , 3-4,,. -,.,. -,,.., , ,,,.,. -, -
16 . - (),.. -, -., -,, ,.,..,. 1.8,. -.,,.. :, -,, ;, ; ; -, :, ;
17 ; ;. ;
18 : ( A C ). 1. (l CC ) елз-7555 елз-7547 елз , , , , , (.), (.), (.), (.), (.), , % , % , % , % К () 1,05 1,05 1,05 1 () 1,1 1,1 1,1 1 () 1,1 1,1 1,1 2 1,15 1,15 1,15 2 1,15 1,15 1,15 2 1,15 1,15 1,15 3 2,3 2,6 2, ,15 1,15 1,15
19 ,15 1,15 1,15 6 0,8 0,8 0,8 6 0,9 0,9 0, ,3 0,3 0,3 0,3 0,3 0,3,.. 0,3 0,3 0,3,.. 6,78 6,46 8,6-1,.. 14,7 12,5 19,5-2,.. 33,9 32,3 43-3, , , ,.. 15,8 14,2 18,4,.. 3,4 2,05 4, , / 15, , ( 2.2) , , / , 8,85 8,09 11,5, 5,3 4,62 7,85,
20 2.2 - : - K 1 ; К 2 ; К 3 ; К 4 ; К 5 ;, К 6 ;, К 7. - () К К. (2.1) 5 К6 К7 К К К. (2.2) 5 К6 К7 - К. (2.3) К 1 К 2 К К 1 К 2. (2.4)
21 - ( ) К К. (2.5) 1 К 2 К3 К 4 К6 К7 - К Ш К. (2.6) 1 К 4 К5 К6 К7 -. (5%) - L n К, (2.7) L mp L n 50%, ; L mpi, ; Q i ё, i- ; L ni 50%,. L n i i Q L i n Q L ni 1. (2.8) 1 mpi 2.3.
22 , 3, %, 0,8 1 1,1 50% 0,25 0,25 0,22 1,15 1,15 1,15 1,15 1,15 1,15-1,15 1,15 1,15 1,150 1,150 1,150 1,208 1,208 1,208 2,328 2,631 2,631 0,99 0,99 0,99-2, % L l. (2.9) E 0 сс L l. (2.10)., (TO-1) - L / L K V 1 1 э, (2.11) L 1 TO-1.. ; K - () ; V э, /.
23 , (TO-2), - L / L К V, 2 (2.12) 2 э L 2 TO-2. ; K - () ; V э, /. (TO-3),,. L / L К V, 3 (2.13) 3 э L 3 TO-3. ; K - () ; V э, /. (-1), L / 1 L 1 К V, (2.14) э L 1-1. ; K - () ; V э, /.
24 (-2) L / 2 L2 К V, (2.15) э L 2-2, - ; K - () ; V э, /. (-1) / К, (2.16) 1i 1i 1-1,..; K - (). (-2) / 2i 2i К, (2.17) 2-2,..; K - (). (-3) / К, (2.18) 3i 3i 3-3,
25 ..; K - (). (-1) - / К, (2.19) 1i 1i 1-1,..; K (- ). (-2) -! К, (2.20) 2i 2i 2-1,..; K. () / i i К, (2.21)
26 ,..; K...; / Шi Шi К, (2.22) Ш Ш, K Ш. / 2i 20 i, (2.23) 100 / i,..; 2 i -2, , , , 4456, ,75-2., 8912, ,5-3., , , ,.. 16,91 14,38 22,43-2,.. 40,95 39,02 51,94-3,.. 54,05 51,75 69,00-1,.. 362,4 302,0 483,2-2,.. 652,32 623, ,52,.. 36,78 37,36 48,41,.. 3,37 2,03 4,75,.. 40,15 39,39 53,16,.. 8,19 7,804 10,388
27 2.4-1, -2-1, - 2, -3, Li Li N 1i Aci ( ). (2.24) L L Li Li N 2i Aci ( ). (2.25) L L Li Li N 3i Aci ( ). (2.26) L L Li Li N 1i Aci ( ). (2.27) L L N L A ( L L ) i i 2i ci. (2.28) 2 LК N Кi Li Aci ( Ni ), (2.29) L К
28 N -1i, N -2i, N T0-3i, N -1i, N -2i, N Ki i- ; L i i-, ; L -1, L -2, L -3,L -1, L -2,L К -,, ; N i i-,.; A ci i-, , N 1i N 1i, (2.30) 1 N 2i N 2i, (2.31) 2 N 3i N 3i, (2.32) 3 N N 1i 1i, (2.33)
29 N N 2i 2i, (2.34) N i N i, (2.35) N -1i, N -2i, N T0-3i, N -1i, N -2i, N i i- ; -1, -2, -3,, -1, -2, -3,, , ,04 2,59 0,79-2 0,52 1,29 0,39-3 0,27 0,66 0,20-1 0,03 0,07 0,02-2 0,02 0,04 0, ё,,,,, -. i-,.. T i N. (2.36) i i TO-1, -2-3 i-,..! T 1i 1 i N 1i, (2.37)! T2i 2 i N2i,! T 3i 3 i N 3i (2.38). (2.39)
30 -1, -2 i-,..! T 1i 1 i N 1i, (2.40)! T2i 2 i N2i, (2.41)! T2i 2 i N2i. (2.42) () i-,.. T, - i i Ni, (2.43) -2 20% -2,.. Ti 0,2 2i, (2.44) K, , -2, - 3, -1, -2,, i-,.. N T N T N T T K TO1i TO1i TO2i TO2i TO3i TO3 i COO (2.45) N i 1i N 2 i 2 i i К 1, К, К,. 2.7.
31 2.7 ё,,,, , ,8 7635,8 3611,2-2, , ,3 4155,2-3, ,8 6986, , ,6-2, , , ,6, ,..,.. 766, ,.. 16,38 15,61 20,78, , , , , , , ,70, , , ,86 2.6,,,,,.. T n i1 i. (2.46) - TO-1, -2-3,.. n T 1C 1i i1, (2.47) n T2C 2i i1, (2.48) n T3C 3i i1. (2.49) -1, -2,.. n T 1 1i i1, (2.50) n T2 2 i i1, (2.51)
32 T n i1 i. (2.52) -,.. T n i1 i, (2.53) - 1, -2, -3, -1, -2,,,.. T n i1 i. (2.54) ,,,, - ё, , , , , , ,5 52, , , ,80 - ( ) , -2, , % , %
33 , , ,46 999,82 226,40 206, , , , ,49-113, ,46 249,95 124,98 124,98 124, , , ,01 792, , ,77 905, ,67 0,00 792, ,09 124, , , ,31 113,20 206,21 124,98 226,40 824,83 124,98 226, , ,79 206,21 206,21 206,21 113,20 206,21 0,00 226,40 618,63 124,98 226,40 824,83 124,98 113,20 206,21 124, , , , , , , , % , %, ,0 1 1,0 1,5 0, , , 0,5 0,5 0,5 0,5 0,5 0, ,5 2,0 0, ,5 1 0,5 1 0,5 0, , , %
34 , , 1800, ,53 722,24 180, ,37 0,00 36,02 76,36 36,11 36,02 114,54 0,00 72,04 152,72 18,06 180,09 381,79 144,45 72,04 381,79 36,11 180,09 381,79 325,01 72,04 381,79 144,45, 18,01 38,18 18,06 18,01 38,18 18,06-360,18 381,79 144,45 18,01 152,72 18,06 36,02 610,86 18,06 36,02 38,18 36,11 18,01 38,18 722,24 180,09 38,18 541, , , ,15 36,02 76,36 36,112 36,02 76,36 36,112 36,02 76,36 36,112 36,02 76,36 361, ,02 76,36 36,112 36,02 76,36 36,112 36,02 76,36 361,12 36,02 76,36 36,112-36,02 76,36 36,112 36,02 76,36 361,12 36,02 76,36 36,112 36,02 76,36 36, ,16 610,88 650, ,8 7635,8 3611, , % ,
35 0,5 0,5 0,5 0, ,5 0,5 0,5 0, , , 0,5 0,5 0, , , ,5 0,5 8 0,5 0,5 0,5 0,5 0,5 0, ,5 0,5 0,5 0,5 0,5 0,5-0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,
36 2.14-2, , 2170, ,06 831,04 868, ,03 0,00 21,7 51,7 20,78 21,7 206,81 83,1 21,7 51,7 20,78 21,7 103,4 1 43,41 103,4 41,55 65,11 930,63 498,62 43,41 103,4 41,55, 21,7 51,7 20,78 43,41 103,40 41,55-434, ,03 415,52 43,41 465,31 41,55 43, ,85 415,52 43,41 103,4 41,55 43,41 103,4 353,19 43,41 103,40 415, , , ,6 21,7 51,7 332,42 21,7 51,7 0,00 21,7 51,7 20,78 86,81 206,81 83,1 43,41 103,4 41,55 43,41 827,22 41, ,7 51,7 20,78 21,7 51,7 20,78-43,41 517,02 124,66 21,7 51,70 20,78 43,41 103,40 166,21 390, ,05 872, , ,3 4155, , % , , 4, , , ,5 0, ,5 4,5 4,5 8,5 2,5 7,5, ,5 5 0, ,
37 ,00 2,5 2,5 4,00 2,5 0,0 2,50 6,0 2,5 2,50 3,0 4, ,5 1,5 0, ,5 0,5 0,5 0,5 0,5 0, ,5 4, , , , 1150, ,8 1101,24 242,14 314,38 12,3 30,27 34,93 28,98 30,27 34,93 12,3 30,27 244,52 14,49 211,88 489,04 202,86 211,88 489,04 202,86 45,40 314,38 130,41 257,28 174,66 217,35, 30,27 69,86 28,98 30,27 69,86 28,98-90,80 209,59 86,94 15,13 349,31 14,49 12,3 139,73 12,3 15,13 69,86 28,98 30,27 69,86 28,98 30,27 69,86 86, , , ,48 30,27 174,66 72,45 121,07 174,66 0,00 75,67 419,18 72,45 75,67 209,59 130,41 30,27 69,86 28,98 30,27 69,86 28,98 45,40 104,79 14,49 12,3 12,3 12,3-15,13 34,93 14,49 15,13 34,93 14,49 60,54 698,63 231,84 15,13 314,38 28,98 30,27 69,86 28,98 575, ,64 695, ,8 6986,
38 2.17, % ,, , , , ,69 669, ,96 695, , , ,97,,. 669, ,96 695, , , , , , , , % () , , ,64 876,31 391,46 800,26 406,86 632, ,73 657,23 60,22 123,12 62,59 120,45 246,23 125,19 120,45 246,23 125,19 30,11 61,56 31,30 () 813, ,08 845, , , ,
39 2.21, , , , , ,41 812, , , , , ,14 124, , ,28 249, , ,28 249,896 85, ,57 62,474 () 2299, , , , , «-» «-»,.,, 2005.,. P, (2.44) T -1, -2, -3,,, -1, -2,,.., = 1981.,. P К, (2.45) К, К = 1, %. 2 %
40 2.22, ,139,. 62,. 71,. 12,. 1, ,,. -1, -2, , -. TO-1. N 1 N 1. (2.46) N
41 -2. N 1 N 1, (2.47) N 2 N 2. (2.48) N , ,. 0,52 1,29 0, ,. 0,27 0,66 0,20-3 ( T b ) ( P T c ), (2.49) b ;, - ; P,,.; T,.; c ;,.;
42 , ,85 1,19 0, , , , ,01 1,2 1,2 1,2, , , ,88 0,88 0,88 TO R, (2.50) 1 1 TO-1,.; R 1 TO-1,. t 60 P t. (2.51) T N ', (2.52) T 1 TO-1,../1.;. P 1, TO-1,.; t, R T c 60 N, (2.53) 1 1 T,.; с TO
43 ,53 1,36 0, , ,../1. 16,91 14,38 22,43-1,. 255,65 217,7 338,45-1, , , , R ( ), (2.54) ,.; R 2-2,.; 2,. -2 t P t,, (2.55) t 2 T ' 2об N 2, (2.56).; t 2-2,../1 P 2, -2,.; t,. -2 R T c 60 N, (2.57) 2 2 T,.; c -2.
44 ,63 1,49 0, , ,. 0,52 1,29 0,39,../1. 40,95 39,02 51,94-2,. 1107, , ,38-2,. 1846,15 744, ,54, , , ,95 0,95 0, ( R ), (2.58) ,.; R 3-3,.; 3, ,9 60 t3 P t 3, (2.59) t T 3 3, N (2.60) 3.;. t 3-3,../1 P 3, -3,.; t, -3
45 R3 T c60 N3, (2.61) T,.; c ,43 1,01 0, , ,. 0,27 0,66 0,20,../1.; 54,05 51,75 69,00-3,. 1461, , ,. 3555, , , , , ,95 0,95 0, , -
46 2.9 TO-1, TO-2, -3, - F f K, (2.62) f 0,, 2 ; 0,.; K 0 1 2, - ( ) , , 2 46,905 37, ,275 6,1 6,1 6, F f f P Ц ( ), (2.63) f 1, 2 ; f 2, 2 ; P,,
47 F f K, (2.64) об об f об,, 2 ; K об G g,, (2.65) G, ; g ( 31), /; ,,, 2,.,
48 , 3,6 4,3 7,2, 0,4 0,4 0,4, 0,1 0,1 0,1, 0,3 0,3 0,3 G G G ( ), (2.66) G, ; G,. G 0, 005G, (2.67),. - G l A 100 g, (2.68) g, /100.; A C,.; ; l CC,. - g g 1, (2.69) g 1 100, /100.,,
49 , 2.32, 2.33, ,. 2823, , ,62, ,. 11,91 16,02 18,58, , -. 1,18 1,18 1,18 0,63 0,26 0,54 0,63 0,26 0, , / , 1016, , , ,89, 338,84 455,81 528, ,32, 84,71 113,95 132, ,83, 254,13 341,86 396, , , 3, 3,,,., 2-5,82 0,2 0,6 1, ,15-1,32 0,2 0,6 1,1 7 8,24-0,33 0,2 0,6 1,1 2 2,36-0,99 0,2 0,6 1,1 5 5,89 50,64 -,. () l A X L L 1 2, (2.70) X,.; l, ;,.;
50 L 1, ; L 2 -,. f l b, (2.71) l,. l, (2.71) 1,./1 ; b, ,,,. G 4 l A a G А , (2.73) a ( ), ( 2.37); G А, ;,.
51 (), ё, ,63 0,26 0,54, , , ,75, , , 3 2,5 3,75 2,5 2,5 2,5, 2 22,5 12,5 9,375, 2 44, ( 2.36)., f об G 4 g, (2.74) д G 4,, ; g д , % 1,5 1,5 1,5, % 1 1 1, % 0,15 0,15 0,15, % 0,15 0,15 0,15, , , 6350, , ,94 467, ,6 113,4
52 , , ,23 357,21 290,54 480,48 357,21 290,54 480,48, 2 : 10,58 8,61 14,24 0,93 2,85 0,23 3,66 2,98 4,93 1,43 1,16 1,92 1,43 1,16 1,92 1, ,, F f A K 0, (2.75) f 0,, 2 ; A ; K. A A (2.76) , , 2 46,905 37, ,275 К 3,2 3,2 3,2, , , ,28, : 4 2 ;
53 10-15 % - ; - 0, % -, 1, , , () 2 2, 0, , -. 0,03 2-0,01 2,
54 , ,00-9,18-31,5 38,5 20, ,
55 -1:, -1, -, , -, ё ё, - ( -1, - ).,. -2:, -, -2,, -, , - 2 ё, ,. -, - 1, - 2,. ё ё , -
56 , , , , , %, ,.. L 0,369 0, ,./1 2,8 2,87-2,5 1 0,1 0,1 0-1, 2 /1 F 35,5 52,8 48,73%, - 30, 365, :
57 1 2,8, 2,5 %. 1 0,2, ,5 2, 48%., %., SHMP-55R- SHMP-55E - 3+1, 5+2, , 7545, 7547,
58 2.2 - SHMP-55R- SHMP-55E SHMP-55R SHMP-55E , - 0,75, (L x B x H), , K-12..,,
59 2.3 - K-12 WE-RT , ё WE-RT - ATIS , -
60 2. - 3, ATIS ATIS , : ,
61 SHMP- 55R- SHMP-55E K-12 WE-RT ATIS , , ATIS 234,.,,,,,... -,. - -, : q i a К i (2.77) q ; α.
62 ( ). - q. - (, - ), -. : P i q (2.78) A ;. - (, ),. : P q (2.79) i, 2.46
63 , -, / /, 2.47,. - TANTRA ,, YALE R/ , ё. - YALE R/ , , ё ,. 70
64 q -.. q -, q -, / q - / q -, α 0,4 0,1 0,1 0,1 0,3 1 - TANTRA 214 0, ,00 2 1, ,00 8 1,00 12,0 0, , ,00 2 0, ,65 5 0,67 8,0 0, , ,00 2 0, ,90 4 YALE R/ ,58 7,0 0,611 YALE R/2 1, ,90 1,8 0, ,50 3 0,58 7,0 0, TANTRA
65 2.49,., -, -., /, / Nordberg , AIW FORCE : 1DR ,8 3850, - Rotake 21/
66 q -.. q -, q - -, / q -, q -, / 2.50, α 0,4 0,1 0,1 0,1 0,3 1 - Nordberg 214 1, , , ,4 13,5 1, ,0 0,89 AIW , , , ,5 12 0, ,0 0,62 FORCE : 1DR 0, , , ,0 5,8 0, ,0 0,57 Rotake 21/7 0, , , ,4 15 0, ,0 0, Nordberg
67 2.51,, -., 2,, T61230 AE&T , AE&T T61230A AE&T , T61230 (24 ). - T61250M AE&T , , - -, -,, ( ),. GARWIN GE , SP012P ,. 74
68 q -,. q -, q - q -, q -, α 0,4 0,1 0,1 0,1 0,3 1 T61230 AE&T 20, 2 - T61230A AE&T 0, , ,8 0,35 0, ,00 210,0 0,64 T61250M AE&T 1, , ,9 0,32 1,0 43 0,83 175,0 0,90 GARWIN GE-SP012P 0, , ,7 0,42 0,5 85 0,72 152,0 0,63 T61230 AE&T 20 0, , ,0 0,29 0,6 76 0,86 180,0 0, T61250M AE&T
69 , ,.,. - ATIS TANTRA Nordberg T61250M AE&T , -, Remeza 4/-200 LB SMF
70 , SHMP 55E NORDBERG NORDBERG 214 NORDBERG
71 , , , , Remeza 4/-200 LB ,5,
72 ,, - 4, , NORDBERG , -, NORDBERG 214 NORDBERG 214 NORDBERG 214 NORDBERG 214 NORDBERG 214, , , , - -, ,,
73 NORDBERG 214 NORDBERG , -., , NORDBERG 214 NORDBERG 214 NORDBERG ,, - 100%, (2.80).; -ё,. - ё, % 15%
74 3-3.1, -,,,. -. K C, (3.1) ); C ( 3.1); ; ;, =0 ( ,.,. - ATIS TANTRA Nordberg T61250M AE&T % 0,08. (3.2) 81
75 5% 0,05. (3.3) K C, (3.4) , , , : -,,,,.... : - ;,,,,. ( З ) 82
76 З - З = ч К, (3.5) ч 3-, ч = 150,..; К, К =60%;, =11042,.. ( 2.10). - з = З з /100, (3.6) з =30%. з, З = З /(N12), (3.7) N, N=2. ( 2.14) , , , э = W э эк, (3.8) W э, ; эк 1 -, эк =6,2. 83
77 W э = N Z C Z Z o m K o, (3.9) N, N =10 [17,. 25];, =2070. ( 2.13); Z o, Z o =0,6; K o, Z C,, Z C =0,96; Z m, Z m =0,9. K o =0,3; 5% = 0,05, (3.10), = 1430N, (3.11) «,» = 2200N, (3.12),. ё - 84
78 . 10% , 27600, , 3 240,. 7920, ,5, -, , , , , , , ,., , %,., , % , , , , , , , ,
79 3.3 ё :,,. =100 (1 2 /C 1 ), (3.12) = 874., 2 = 854,. ( 3.6) -,. Э э = ( 1 2 ) T, (3.13), = ,. Э = Э э К, (3.14) 0,15. К,.;, = К =, (3.15) Э э ё
80 3.6, % 2,3, , , 1,5 - - : , , , , ,5, , ,. - 1,
81 88
82 ,,, / L M N n m L i i i i 3 10, (4.11) i N i i- ; n, i-, n 1; i i 4.1.4, / 4 i i i i 10, (4.13) M N q n L H q i 100, /100 ; n i 100, /100 ; H, H 0,13 ; , / 89
83 L M N n m L i i i i 3 10, (4.3) i n i i- ; m i i-, ; L i. i N i, n i, m i, L Hi,. / L i,. / m i, M, / , , , , , , , 3 3 q n 0,9 10, (4.4) q, q 800 ; n (),, 3 W ( C1 C2) 10 (100 B) 6, (4.5) C 1, /; C 2, /; 90
84 - - - B, B 85 %;, 1, , / G C C 3 ( 1 2) 10. (4.6), / B G G / (1 B), (4.7) c c B, B 0, W, 3, / q, n ω, ,240 0, , / M m / (1 k), (4.8) m,, m 0,028 /; k, k 0,05. M 6 0,028 / (1 0,05) 29,
85 4.2 ё , , -. :,, N x, - N 2,,, SO 2 L 1 ( ) L 2 ( ), L L L 1 1 1, (4.9) 2 L 2 L L 2 2, (4.10) 2 L 1, L1 0,007 ; L 1, L1 0,149 ; L 2, L2 0,007 ; L 2, L2 0,
86 0,007 0,149 L1 L2 0, i- k-, M m t m L m t, (4.11) 1ik ik Lik 1 ххik хх1 m ik i- k-, /; t, t 5.; m Lik i-, k /, /; m ххik i- k-, /; t хх1, t 1 1. хх i- k-, m L m t, (4.12) 2ik Lik 2 xxik xx2 t хх2, t 2 1. хх 4.5. () N k, (4.13) Nk 93
87 N k k-, -.; N k. 0, CO CH N SO 2 T X T X T X T X T X m ik, /. 1,65 2 0,8 0,86 0,62 0,74 0,023 0,03 0,112 0,121 M ik 1,485 1,8 0,72 0,774 0,62 0,74 0,0184 0,024 0,1064 0,11495 m lik,/ 6 7,2 0,8 1 3,9 3,9 0,3 0,45 0,69 0,86 m xxik, /. 1,03 1,03 0,57 0,57 0,56 0,56 0,023 0,023 0,112 0,112 M 1ik, 8,10 41,59 3,83 17,85 3,34 15,66 0,14 0,66 0,61 2,60 M 2ik, 1,50 1,59 0,63 0,65 0,86 0,86 0,05 0,06 0,17 0,18 / i-, k i j ik ik k p k , (4.14) M M M N D D, D = Mij, / Nk CO CH Nox SO ,0350 0,1576 0,0163 0,0675 0, ( ) (- ), 94
88 . i- M K 6 2m S m t n, (4.15) Ti Liк T iк к 10 K 1 m Lik i- k-, /. /.; m ik i- k-, S T, S T = 0,001,. n к, k- ( 2.6); t, t = 1, ,, NO x,, SO 2 CO CH N SO 2 ST, 0,001 t, 1,5 mik, / 1,65 0,8 0,62 0,023 0,112 mlik,/ 6 0,8 3,9 0,3 0,69 nk 1589 MTi 0, , , , , ,.,,, NO,, SO 2 i-o - 95
89 M к 6 2m S m t n, (4.16) it Liк T iк к 10 к1 m Lik i- k-, /; /.; m ik i- k-, S T, S T = 0,001, ; n к, k- - ( 2.5); t, t = 1, CO CH N SO 2 S T, 0,001 t, 1,5 m ik, / 1,34 0,59 0,51 0,019 0,1 m lik,/ 4,9 0,7 3,4 0,2 0,475 n k M Ti 0, , , , , ,, NO x, SO 2, - CO CH NOx SO2 0, , , , , ,0032 0,0014 0,0012 0, ,0002 0, , , , ,00070, / 0,2048 0,0887 0,0808 0,0035 0,
90 . -., - -,.,, -,. -,. -, -. - : - ATIS 234; Big Red TEL05005; TANTRA 214; Nordberg 214; T61250M AE&T., :. 97
91 ; c 1,
92 CONCLUSION Improvement of work of repair of vehicles aimed at the implementation of the basic indicator: improvement of performance of works on repair of cars at the enterprise. The main requirement is to ensure a high technical level and economic efficiency of the enterprise. Based on advanced technology, a sufficient level of mechanization of production processes ensured by the given productivity of labour and low self-cost of the works for compliance with required quality car repairs, high production. With the improving technology of repair of cars at the enterprise, necessary conditions also are justification of power, the use of standard designs of buildings and structures, the use of modern equipment. The result of the thesis have been made major races-the couple developed the necessary technical documentation. In the technological part was the calculation of the production program on repair and maintenance of vehicles, calculated the required number of workers and technological posts. Compiled summary tables and SDE Lana insights To improve the quality of works in the area of TR was proposed to introduce new equipment: Stand tilter ATIS 234; Electric hoist Big Red TEL05005; Kanavy lift TANTRA 214; Pneumohangars Nordberg 214; Press hydraulic floor T61250M AE&T. Performed the development of the necessary technical documentation, drafted the routing with the use of the proposed equipment.. In the economic part was the calculation of the economic effect of the proposed implementations and the payback period. Designed technical and economic indicators: the economic efficiency is proved events. The amount of capital investment amounted to RUB.; The payback period was 1.5 years. In the last Chapter, an assessment of the environmental impact calculated quantity of generated solid waste from production processes in the repair of cars. 99
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