大笨蛋 发表于 2010-4-21 19:30 很厉害啊,大神 |
XIAOLEI 发表于 2011-9-5 09:57# H3 i8 s8 k- S( R+ {. } A verify什么功能呀。。没看懂8 p6 t; I+ M5 x, k |
有没有会计算输电线路实际长度的朋友4 g) ^& }; |& y8 |1 Q; @ |
line constants子程序怎么用啊?. R6 q6 b X$ ?7 I, W; H8 { 已知LCC中的基本数据,怎么计算线路参数(R L C)? 看了一整天,没什么头绪, I, G b9 c- ?: J$ A1 d 麻烦指点一下 |
为什么老说我潜水72小时以上 |
回复 3# himyamigos 9 h# j# ?$ w9 d2 H rule book内容是在是太多了 而且填卡的部分很模糊 n# l( t. s# [- j 不用填卡的话还有什么简便方法吗? |
回复 4# 大笨蛋 是不是从生成的lis文件中查找?' ]! j) N4 O) q3 `* S" B Alternative Transients Program (ATP), GNU Linux or DOS. All rights reserved by Can/Am user group of Portland, Oregon, USA. Date (dd-mth-yy) and time of day (hh.mm.ss) = 13-Apr-10 16:56:55 Name of disk plot file is lin750_4.pl41 }- B" A* B z& Q Consult the 860-page ATP Rule Book of the Can/Am EMTP User Group in Portland, Oregon, USA. Source code date is 21 February 2003.- S* T* O( S4 K8 ? Total size of LABCOM tables = 9868232 INTEGER words. VARDIM List Sizes follow : 6002 10K 192K 900 420K 12008 k+ b, B: Z4 k8 ~9 p. Y5 d+ S 15K 120K 2250 3800 720 1200 72800 510 90K 800 90 254 120K 100K 3K 15K 192K 120 30K 160K 600 210K 300 603 a" }* V* h. j. p2 L& [ --------------------------------------------------+--------------------------------------------------------------------------------& a: h5 q/ T$ S Descriptive interpretation of input data cards. | Input data card images are shown below, all 80 columns, character by character 0 1 2 3 4 5 6 7 84 ^( y8 l! q" D 012345678901234567890123456789012345678901234567890123456789012345678901234567890' R0 o& v) V% w1 X --------------------------------------------------+--------------------------------------------------------------------------------& k" Z, i9 }4 h7 z. |$ [9 F Comment card. KOMPAR > 0. |C data:LIN750_4.ATP- _4 @* t+ t$ L- U- v$ F Marker card preceding new EMTP data case. |BEGIN NEW DATA CASE$ w+ H( q: h* t, b3 l0 d6 _ Jose Marti`s line fitter. PDT0 = 0.00000000E+00 |JMARTI SETUP Erase all of 0 cards in the punch buffer. |$ERASE Pairs of A6 terminal node names for each phase. |BRANCH IN___AOUT__AIN___BOUT__BIN___COUT__C2 s2 o& v1 Y1 j& j) I: z5 A Compute overhead line constants. Limit = 120 |LINE CONSTANTS8 A3 s: f2 Q7 d1 J! z# X; k" w5 b8 i Request for metric (not English) units. |METRIC Line conductor card. 2.590E-01 6.900E-02 4 | 10.259 0.069 4 2.9 -19.5 25.1 10.1 60. 45. 4 Line conductor card. 2.590E-01 6.900E-02 4 | 20.259 0.069 4 2.9 0.0 25.1 10.1 60. 45. 4: n' a: ~3 \, @, ]+ w. G( U6 ~* [ Line conductor card. 2.590E-01 6.900E-02 4 | 30.259 0.069 4 2.9 19.5 25.1 10.1 60. 45. 4$ U/ s$ P; h+ J; D T3 C7 @! g0 I Line conductor card. 1.750E-01 4.400E-01 4 | 00.175 0.44 4 1.54 -15. 39.7 24.7 0.0 0.0 0, c9 e- d, h8 H$ i# }" z ~% ~ Line conductor card. 1.750E-01 4.400E-01 4 | 00.175 0.44 4 1.54 15. 39.7 24.7 0.0 0.0 05 n' s# x: x) x1 v5 W Blank card terminating conductor cards. |BLANK CARD ENDING CONDUCTOR CARDS' v0 a+ k6 ^9 L) Q* c. Z- g Frequency card. 2.000E+01 1.000E+03 7.570E+01 | 20. 1.E3 75.7 1 Line conductor table after sorting and initial processing.& i6 I4 N' W) j Table Phase Skin effect Resistance Reactance data specification Diameter Horizontal Avg height6 X& r. n# H9 g- ~; X Row Number R-type R (ohm/km) X-type X(ohm/km) or GMR ( cm ) X (mtrs) Y (mtrs) Name 1 1 .25900 .06900 4 .000000 2.90000 -19.200 14.800 2 2 .25900 .06900 4 .000000 2.90000 0.300 14.800* e; p6 a0 _3 ]8 Q- v 3 3 .25900 .06900 4 .000000 2.90000 19.800 14.800, j7 ~$ U7 [- |7 c 4 1 .25900 .06900 4 .000000 2.90000 -19.800 14.800 5 1 .25900 .06900 4 .000000 2.90000 -19.800 15.400 6 1 .25900 .06900 4 .000000 2.90000 -19.200 15.400" d; e: M+ O, V( M0 L 7 2 .25900 .06900 4 .000000 2.90000 -0.300 14.8009 r; P+ g3 q g' g# \, n: f- p 8 2 .25900 .06900 4 .000000 2.90000 -0.300 15.400 9 2 .25900 .06900 4 .000000 2.90000 0.300 15.400 10 3 .25900 .06900 4 .000000 2.90000 19.200 14.800 11 3 .25900 .06900 4 .000000 2.90000 19.200 15.400 12 3 .25900 .06900 4 .000000 2.90000 19.800 15.400 t- q1 e. u) ] 13 0 .17500 .44000 4 .000000 1.54000 -15.000 29.700 14 0 .17500 .44000 4 .000000 1.54000 15.000 29.700) P. P* D9 e* |, g/ x& R8 ? : h+ q5 |0 _' P* y Matrices are for earth resistivity = 2.00000000E+01 ohm-meters and frequency 1.00000000E+03 Hz. Correction factor =5 v" h2 z. s3 C 1.00000000E-060 |9 }" \: a+ u3 n. i " B% h! M9 |" G7 m$ ` Modal parameters at frequency FREQ = 1.00000000E+03 Hz & A4 G Y6 m; z/ t M Eigenvector matrix [Ti] for current transformation: I-phase = [Ti]*I-mode. First the real part, row by row: 5.748140047158274E-01-7.071067811865638E-01-4.281225696572995E-01 5.823896633398591E-01 1.700454252111332E-14 7.958782134849792E-01" k$ C( T ?/ e- p! F3 l 5.748140047158198E-01 7.071067811865313E-01-4.281225696573222E-01+ I5 S$ c7 H: R" G Finally, the imaginary part, row by row:/ P3 x. _ V' @# u 0.000000000000000E+00 0.000000000000000E+00 0.000000000000000E+00 0.000000000000000E+00 0.000000000000000E+00 0.000000000000000E+00; n; O+ S/ s2 W! J 0.000000000000000E+00 0.000000000000000E+00 0.000000000000000E+00% y' `* p- |! Z) b Frequency card. 2.000E+01 5.000E+01 7.570E+01 | 20. 50. 75.7 1 : v5 T5 e+ y& j- y4 N3 ?/ j% U+ C Matrices are for earth resistivity = 2.00000000E+01 ohm-meters and frequency 5.00000000E+01 Hz. Correction factor = 1.00000000E-06& f, w8 Z9 _1 T/ N7 p9 e Frequency card. 2.000E+01 5.000E-03 7.570E+01 | 20. 0.005 75.7 7 10 1; `' X" M( q+ K' O Blank card terminating frequency cards. |BLANK CARD ENDING FREQUENCY CARDS Blank card ending "LINE CONSTANTS" cases. |BLANK CARD ENDING LINE CONSTANT Request for default fitting (= 3 blank cards) |DEFAULT( Q7 b& {- J8 { 4 H0 K: I5 i" B1 h. p8 R8 b: ]* p! z ===== ===== Begin Zc fitting for mode IMODE = 1 ===== =====3 f" ?! W' m! } The number of poles NPOLES = 41 in this loop exceeds the specified limit NORMAX = 306 c* K8 ]3 x6 \! H 8 C% J& ]1 Y6 S L- {. r' v9 }, W @@@@@ @@@@@ Begin A1 fitting for mode IMODE = 1 @@@@@ @@@@@ 9 g- O1 w' z9 B l7 Y7 t) d ===== ===== Begin Zc fitting for mode IMODE = 2 ===== =====3 o# q* ~6 o, D The number of poles NPOLES = 34 in this loop exceeds the specified limit NORMAX = 303 ]- x* I4 Q! ^7 w) i 9 S3 @* c+ s( `3 Q8 B* A @@@@@ @@@@@ Begin A1 fitting for mode IMODE = 2 @@@@@ @@@@@% P% j* y) t& }8 h- L( W7 w. Q& Z : x, k* V* f2 K3 a3 ]+ J& S5 ~ ===== ===== Begin Zc fitting for mode IMODE = 3 ===== ===== The number of poles NPOLES = 31 in this loop exceeds the specified limit NORMAX = 300 D i2 D/ R5 X, d $ Y" D8 N& l! M; j @@@@@ @@@@@ Begin A1 fitting for mode IMODE = 3 @@@@@ @@@@@ Request for flushing of punch buffer. |$PUNCH : E- m. r L4 d3 X A listing of 80-column card images now being flushed from punch buffer follows. ===============================================================================" C# Z6 Y5 S( g' ? 1234567890123456789012345678901234567890123456789012345678901234567890123456789 ===============================================================================) y! t+ y% l( q! t3 l9 K C <++++++> Cards punched by support routine on 13-Apr-10 16:56:55 <++++++> C ***** UNTRANSPOSED JMARTI line segment ****** C JMARTI SETUP3 z/ G! x7 I8 J W# M& r C $ERASE# [* c/ c3 W* u u z$ |1 u C BRANCH IN___AOUT__AIN___BOUT__BIN___COUT__C. j5 U" X; p) V+ a" n2 U" n C LINE CONSTANTS C METRIC C 10.259 0.069 4 2.9 -19.5 25.1 10.1 60. 45. C 20.259 0.069 4 2.9 0.0 25.1 10.1 60. 45.; o/ s& C( ~& O2 @ C 30.259 0.069 4 2.9 19.5 25.1 10.1 60. 45.7 R/ [4 P3 l0 x6 f' ?# o C 00.175 0.44 4 1.54 -15. 39.7 24.7 0.0 0.0, I6 E2 w$ d; _& J- R# v C 00.175 0.44 4 1.54 15. 39.7 24.7 0.0 0.0# ~( f; u$ E4 D! `6 j% D' x9 K; L C BLANK CARD ENDING CONDUCTOR CARDS C 20. 1.E3 75.7 1. _& ]+ S7 F; q" F# w C 20. 50. 75.7 1% ?3 k4 Y. M# X9 H6 J3 h C 20. 0.005 75.7 7 10 1 C BLANK CARD ENDING FREQUENCY CARDS C BLANK CARD ENDING LINE CONSTANT! |, K2 m' m l, A% v C DEFAULT9 F8 B2 [1 D1 O9 I+ n, W -1IN___AOUT__A 2. 0.00 -2 3 17 3.3876136028747050000E+02* Z' O* S4 W; ]! j 1.56748087606698020E+02 1.53350246690381570E+02 5.91752415177784810E+01 2.01342311994593360E+02 2.35228649588483170E+02 2.53692631526845670E+02 1.66995629609519800E+02 3.13013616521086590E+02 7.77592731836887200E+02 2.92709376085682020E+03 8.36186324719264120E+03 6.39337717296788010E+03 1.11850636212671030E+04 4.41394197432314540E+04 3.57997951874029590E+05$ t; o i8 e7 q, d0 t# Z; H 7.56151786639699950E+05 1.36950810507648970E+06( M1 S. L( ^; H% B* n 1.42216936124761770E-01 2.00869674971664410E-01 2.46548549642172290E-016 A4 x1 O9 }1 O5 q 4.83183838918269940E-01 8.90165197319727430E-01 1.60597725665316450E+00 2.89724575888037260E+00 5.22044042049842180E+00 1.93205621429485000E+01 6.43540045186946370E+01 1.19989060419415150E+02 2.38618178257245120E+02! ?: F J2 m" U- v: q, J 7.72151589982453290E+02 2.99346013405561330E+03 1.27367479883974610E+04 5.61967457160417400E+04 1.12259275941284690E+05 18 2.5648081591925806000E-04$ N5 \7 X, [% |# r4 B/ L% o+ o6 ? 4.39088902072225850E-02 2.51823882949434860E-01 2.09625388083036990E-01/ F7 I. a- W% a* ?% w) ^ 3.78494708253580230E-01 4.21222198449916040E-01 1.12875930767027930E+000 a6 T# z3 K4 x+ w5 }. y7 i 1.71876255372116240E+00 5.22622351239333400E+00 2.87507803450135600E+01 3.11711415283725670E+02 -4.25029687238800080E+02 4.11909331052564360E+03 2.03169322161820860E+04 9.92298833352391920E+03 9.73079142175107300E+07 -9.55146506480773540E+07 1.78452787243354890E+08 -1.80280334637975660E+08 1.71037480519741610E+01 8.83202394182148960E+01 9.05344339387639390E+01 1.45765976458050060E+02 1.67604264020870910E+02 4.33406916110919100E+02 6.63140374794807490E+02 1.92887674552758430E+03 1.33200718265846740E+03 5.71524437659357950E+03 1.42342855758340520E+04 1.25142080353191360E+043 Q2 @& h% O+ E+ q/ T 3.62317843255328920E+04 5.63019677971675190E+04 2.08969723652870020E+053 K: d4 N6 i- ~: Q1 Y5 h 2.09178693376523150E+05 1.79625128065165980E+05 1.79804753193231360E+055 k) H, n9 f% l$ g1 Z. N -2IN___BOUT__B 2. 0.00 -2 36 _% ]5 L# o L1 s 16 2.7356159603025270000E+02 3.69404660026332070E+02 -6.57736076515949720E+01 3.81922741682533400E+02 7.08453587370238780E+02 5.41167797769398360E+02 3.06226540265072910E+028 t2 O7 q" j) R& { 9.12429137114825860E+01 1.45546235045872410E+02 4.35671648435959070E+02 9.89457112977898990E+02 1.20421629942927280E+04 2.52441351892631970E+04 1.31721403134872210E+05 1.00702634087143390E+05 1.00067739988421900E+05 1.98945562771848960E+05 1.48932587810283570E-01 1.91111259756068880E-01 5.23244958961560200E-01) @# Z8 F* |* h) l& {2 R$ t: g 1.98685487501559810E+00 5.99260600202752600E+00 1.07800276387683840E+010 y' b/ G* F r+ |* n6 R0 Z 1.40587613181405300E+01 2.26773470722948250E+01 3.15477144275676150E+024 \9 b" j3 f; J$ M. V7 J% d' p 7.20661772011409880E+02 8.57135008822161760E+03 1.81290494844508870E+04 9.82444873325722870E+04 6.84224792084696670E+04 7.51320465443383440E+045 L0 J9 R$ n: A" e/ y3 F7 b! w2 p 1.48835602821329780E+05 8 2.5331274985951097000E-04 9.77519359442743510E+00 9.06749971882869370E+01 3.89917698321721050E+02, v# Z( @* O; {$ J 2.14763901924745410E+03 3.21139859861504280E+03 7.78666160670429240E+039 t3 M/ Q9 o# c2 b1 B -4.35590044273043600E+04 1.46424632739437020E+05 1.34347544158826870E+03 1.11481723747429880E+04 2.13548802821824830E+04 3.88406059295760640E+04 4.48673492254774170E+04 6.34696015771263410E+048 [6 M3 j- `; T( {' z- R 5.71514355618160570E+05 1.84730022532517380E+05- h( w. @9 n1 g4 M! q* ` -3IN___COUT__C 2. 0.00 -2 33 Y6 @: C5 s! o3 n7 w1 D+ m 12 2.4217757892053910000E+02& V, g- n" ^* M& E: H/ w 3.11081567238861170E+02 -2.67647353791795130E+01 3.71876217221247710E+02: a: R& z+ M$ W* r4 x1 T4 n& H7 q1 @. R 7.07422509445779840E+02 7.84485674697519240E+02 5.15644097900284780E+01) ]; o9 I U5 ?& E' Z6 E 8.62357151535732380E+01 1.33677642835807010E+02 1.31608612652184290E+02 1.14893287428216410E+02 9.93716544256342760E+01 5.59773592553784180E+04 1.34344252475530860E-01 1.81414794097451400E-01 5.11374925899225950E-011 Z1 E- y$ k8 b% t- j* \3 s 2.04824350656590370E+00 7.03072667690498320E+00 1.02204034540275260E+01 z1 c8 O# h5 q! x2 H) S' [6 C9 l- p2 V 1.40807516766374870E+01 2.26422726843327060E+01 3.61527808309766810E+01! l; j$ Q; k* a" A$ _7 ^9 w 5.66127229741269180E+01 9.24983189391125220E+01 4.52655232370584050E+04+ W, n% K7 D4 j1 j4 S! \( D/ y 6 2.5172653258524589000E-04 9.16195806109742070E+00 3.77612637640999710E+02 6.49218461519983410E+02$ r) P% g" _4 G. D0 l1 X6 f 2.16338680527304540E+03 -2.80386507590504550E+04 4.81761010930565240E+05 1.48053740522388740E+03 4.65974978309593280E+04 5.01953038655574710E+04 7.89025069563385330E+04 2.89584576325553890E+06 5.04629561166254750E+05 0.57481400 -0.70710678 -0.42812257 0.00000000 0.00000000 0.00000000 0.58238966 0.00000000 0.79587821 0.00000000 0.00000000 0.00000000" q8 w6 {0 |/ r* [2 [0 F: M 0.57481400 0.70710678 -0.42812257- U; `1 Q$ |* J9 z8 d3 W A) u8 P 0.00000000 0.00000000 0.00000000' u/ p, a; N$ E9 H ^2 ] =========< End of LUNIT7 punched cards as flushed by $PUNCH request >=======9 T( m4 m$ |4 k Blank card ending "JMARTI SETUP" data. |BLANK CARD ENDING JMARTI SETUP Total case timing (CP, I/O, tot), sec: 0.219 0.000 0.219$ m6 M' L; Y: C4 ?# X! S1 j R L C参数是那些啊?麻烦您一下 |
我在设置初始数据例如导线内外径,在杆塔上的悬挂高度等以后,点击verify,选择power frequency caculation以后计算结果怎么是0啊,或者报错提示内容为:failed to generrate new data files for this comparsion (E:\ATP\ATP\xverifyf.dat)please check that path exists 我的路径不对吗?还是什么原因请三楼指点一下! |
回复 4# 大笨蛋 " m$ ?" J0 D- p R4 l" _- \ 麻烦您指点一下 |
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