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悬赏1金币未解决
ATP新手,点plotxy后出现The selected file contains no bytes,如下,求大神解答
* ~: U$ t1 v, w- w, n2 nAlternative Transients Program (ATP), GNU Linux or DOS. All rights reserved by Can/Am user group of Portland, Oregon, USA.
2 A6 t1 b$ s. P Date (dd-mth-yy) and time of day (hh.mm.ss) = 02-May-19 21:15:23 Name of disk plot file is jjj1.pl4
2 G$ @! O; R) _/ C9 N+ X, Y( X/ XConsult the 860-page ATP Rule Book of the Can/Am EMTP User Group in Portland, Oregon, USA. Source code date is 19 September 2003.
2 b' _- ?) E% V# G4 ]1 i- KTotal size of LABCOM tables = 9872109 INTEGER words. 31 VARDIM List Sizes follow: 6002 10K 192K 900 420K 1200 15K
! m n, F+ R8 X# n, Q- Q 120K 2250 3800 720 1200 72800 510 90K 800 90 254 120K 100K 3K 15K 192K 120 30K 160K 600 210K 300 19 200
* a- }& v, U8 R- Q--------------------------------------------------+--------------------------------------------------------------------------------* p4 [' E+ f5 l5 Y: C
Descriptive interpretation of input data cards. | Input data card images are shown below, all 80 columns, character by character
* `( G6 V9 l5 {* E. g 0 1 2 3 4 5 6 7 8+ o2 `- h0 N8 L* ~9 L e' j
012345678901234567890123456789012345678901234567890123456789012345678901234567890
" o7 M) C! }! r4 P--------------------------------------------------+--------------------------------------------------------------------------------$ p, a$ t: M% q0 E$ u U
Comment card. KOMPAR > 0. |C data:JJJ1.ATP5 c3 H; b1 M$ a4 Q
Marker card preceding new EMTP data case. |BEGIN NEW DATA CASE
7 x8 Y2 A# s0 vComment card. KOMPAR > 0. |C --------------------------------------------------------
( K& f1 C8 ^% o$ F2 o% DComment card. KOMPAR > 0. |C Generated by ATPDRAW 五月, 星期四 2, 2019
# V6 O6 q. `7 F- \Comment card. KOMPAR > 0. |C A Bonneville Power Administration program' W" d% a+ j8 K" [: k
Comment card. KOMPAR > 0. |C by H. K. H鴌dalen at SEfAS/NTNU - NORWAY 1994-2015
$ l' V7 d4 _0 u1 o- t1 GComment card. KOMPAR > 0. |C --------------------------------------------------------! B7 R* Y& R2 r+ U
Comment card. KOMPAR > 0. |C dT >< Tmax >< Xopt >< Copt ><Epsiln>/ K) ]) H6 ~# b8 ~, v$ R- a/ w
Misc. data. 1.000E-09 1.000E-03 0.000E+00 | 1.E-9 .001
. h7 {6 r( P/ Y( k6 U* GMisc. data. 500 1 1 1 1 0 0 1 0 0 | 500 1 1 1 1 0 0 1 05 g7 \- O8 [ ?/ O
Comment card. KOMPAR > 0. |C 1 2 3 4 5 6 7 8
& v; @' f( q% U3 D0 E0 X) hComment card. KOMPAR > 0. |C 3456789012345678901234567890123456789012345678901234567890123456789012345678900 c# J- p. u; ^& S: J U: ?
Comment card. KOMPAR > 0. |C < n1 >< n2 ><ref1><ref2>< R >< L >< C >$ A$ ]7 E( q/ e3 K$ _% q' W
Comment card. KOMPAR > 0. |C < n1 >< n2 ><ref1><ref2>< R >< A >< B ><Leng><><>0# u9 r, {- g+ O9 f" b2 M" y* p6 b
Series R-L-C. 0.000E+00 0.000E+00 2.500E-04 | XX0001 250. 0) n+ I, E, q. z" c
4.000E+00 6.000E+01 3.000E+08 6.000E+01 1.667E-06|-1XX0001XX0003 4. 60. 3.E8 500. 1 0 0
4 J. P D7 ^+ m! E2 T0 TSeries R-L-C. 0.000E+00 1.000E-01 0.000E+00 | XX0002XX0001 100. 0
) M5 j2 Z- l0 \# A3 B 4.000E+00 6.000E+01 3.000E+08 6.000E+01 1.667E-06|-1XX0006XX0007 4. 60. 3.E8 500. 1 0 0
4 u5 v* x1 C6 [1 x 4.000E+00 6.000E+01 3.000E+08 6.000E+01 1.667E-06|-1XX0008XX0005 4. 60. 3.E8 500. 1 0 0
# H9 y& v2 W% R( X0 M' P4 l- j8 eSeries R-L-C. 2.000E+00 5.000E-07 0.000E+00 | XX0003XX0004 2. .0005 0
8 m" v9 @, |* E2 E; @ 4.000E+00 6.000E+01 3.000E+08 6.000E+01 1.667E-06|-1XX0005XX0009 4. 60. 3.E8 500. 1 0 0
* s! a; h" S0 G. C$ ], g) ^ ^ 4.000E+00 6.000E+01 3.000E+08 6.000E+01 1.667E-06|-1XX0008XX0006 4. 60. 3.E8 500. 1 0 0
0 }$ ]% G+ @9 h. ? 4.000E+00 6.000E+01 3.000E+08 6.000E+01 1.667E-06|-1XX0010XX0008 4. 60. 3.E8 500. 1 0 02 S+ @$ i( B5 ~' ^" ^! R
Series R-L-C. 0.000E+00 0.000E+00 2.500E-04 | XX0006 250. 0
7 o$ ?$ n7 u% v6 y$ p; L4 a1 |Series R-L-C. 0.000E+00 0.000E+00 2.000E-03 | XX0007 2.E3 0
( o, u, G) ]( J+ L4 QSeries R-L-C. 0.000E+00 1.000E-01 0.000E+00 | XX0007XX0011 100. 09 j1 x, ^% [8 h7 y0 {. z# S
Blank card ending branches. IBR, NTOT = 12 12 |BLANK BRANCH
7 S( M. Y2 k( Z; n8 m4 m* lComment card. KOMPAR > 0. |C < n 1>< n 2>< Tclose ><Top/Tde >< Ie ><Vf/CLOP >< type >& m2 V1 D z7 T2 ]( N
Switch. 0.00E+00 0.00E+00 0.00E+00 0.00E+00 |76XX0004XX0005 STATISTICS 0
: O/ z5 d/ W$ N: Z3 f0 U1 T/ {( }
% @ ~$ e+ `; V3 e. z; u------------------------------------------------------------------------------------------------------------------------------------
1 ^# q7 C5 Y# C2 C; f% }ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ ]7 L4 S5 |2 A; [4 |# [# D
ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/
) X: d% P$ ~! H+ K' z# v------------------------------------------------------------------------------------------------------------------------------------6 j) ~0 \" y: D, f- q' E9 L
You lose, fella. The EMTP logic has detected an error condition, and is now going to terminate program execution. The following6 e4 L. |5 R) V/ k+ K
message summarizes the circumstances leading to this situation. Where an otherwise-unidentified data card is referred to, or where. p# g9 O( r/ ~9 H9 z$ H
the "last" card is mentioned, it is the most recently read card of the input data that is meant. The 80-column image of this card/ x! S: t, v7 Q9 L! Z" L
is generally the last one printed out prior to this termination message. But possibly this last-read card has not yet been; Y9 i8 m+ i: U8 b
displayed, so a copy follows:
u8 r! P# @+ K# \4 | "76XX0004XX0005 STATISTICS 0". ]1 w! z. ?* t+ m) a6 \6 n
KILL code number Overlay number Nearby statement number; a" `6 q$ k- t& G
141 4 3356- P: j5 s3 x+ {; u% }0 \
KILL = 141. STATISTICS or SYSTEMATIC (the two 10-letter request words) can legally be keyed in columns 55-64 of a switch card.( e1 K7 ?0 K2 i+ B9 x
This would be as part of a data case that has integer miscellaneous data parameter NENERG nonzero (a value of 0 was read from7 f5 N% v% r$ T4 a& S* T* g/ ^
the user`s data). However, for positive NENERG, only "STATISTICS" is allowed; for negative NENERG, only "SYSTEMATIC" is
8 t! t; W' m- Q' Z+ Pallowed; and for zero NENERG, neither request word may be used.; h; O# H4 K: x+ V" o2 T/ W& J
------------------------------------------------------------------------------------------------------------------------------------ f& @. d: |9 J7 A, |
ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/" K C0 w4 ^' O
ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ D( f& J, K7 c- s) a6 |1 L
------------------------------------------------------------------------------------------------------------------------------------/ n% Z0 _& a" {, E/ q4 {4 d5 {: y4 c
9 t2 I2 T" K6 K- BActual List Sizes for the preceding solution follow. 02-May-19 21:15:238 E( l7 h: I9 [3 K {
Size 1-10: -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 0 07 e+ ^/ t: r2 S3 ]
Size 11-20: -9999 -9999 -9999 -9999 -9999 -9999 -9999 -9999 23 0
1 g" l3 Z+ z, C. I Size 21-30: 1 -9999 -9999 -9999 -9999 1 -9999 -9999 -9999 0. {8 D! f1 `0 I, ^# ?
Seconds for overlays 1-5 : 0.000 0.000 0.000 -- (CP: Wait; Real)/ C; U8 n% D. G' T! d' I
Seconds for overlays 6-11 : 0.000 0.000 0.000+ L; V- p4 _+ O4 R: U$ l
Seconds for overlays 12-15 : 0.000 0.000 0.0001 R& e+ @5 F o$ F9 o! ?2 p
Seconds for time-step loop : 0.000 0.000 0.000
! N, @ X$ \! _! YSeconds after DELTAT-loop : 0.016 0.000 0.016# y3 x7 n% ^6 z) {# s" ^! ~8 P' N
---------------------------
+ G/ C2 o) b1 _# h/ P. e. ? Totals : 0.016 0.000 0.016 |
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