ATP报错,找不出错误在哪
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) = 17-Jan-1118:43:20 Name of disk plot file ischengzhong.pl4
Consult the 860-page ATP Rule Book of the Can/Am EMTP User Group in Portland,Oregon, USA.Source code date is 19 December 2003.
Total size of LABCOM tables = 9872109 INTEGER words.31 VARDIMList Sizes follow:600210K192K900420K120015K
120K2250380072012007280051090K80090254120K100K3K15K192K12030K160K600210K30019200
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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 8
012345678901234567890123456789012345678901234567890123456789012345678901234567890
--------------------------------------------------+--------------------------------------------------------------------------------
Comment card. NUMDCD = 1. |C data:CHENGZHONG.ATP
Marker card preceding new EMTP data case. |BEGIN NEW DATA CASE
Comment card. NUMDCD = 3. |C --------------------------------------------------------
Comment card. NUMDCD = 4. |C Generated by ATPDRAW一月, 星期一 17, 2011
Comment card. NUMDCD = 5. |C A Bonneville Power Administration program
Comment card. NUMDCD = 6. |C Programmed by H. K. H鴌dalen at SEfAS - NORWAY 1994-2003
Comment card. NUMDCD = 7. |C --------------------------------------------------------
Comment card. NUMDCD = 8. |C $DUMMY, XYZ000
Comment card. NUMDCD = 9. |CdT>< Tmax >< Xopt >< Copt >
Misc. data. 5.000E-09 5.000E-05 0.000E+00 | 5.E-9 5.E-5
Misc. data. 500 111100100 | 500 1 1 1 1 0 0 1 0
Comment card. NUMDCD = 12. |C 1 2 3 4 5 6 7 8
Comment card. NUMDCD = 13. |C 345678901234567890123456789012345678901234567890123456789012345678901234567890
Comment card. NUMDCD = 14. |C < n 1>< n 2><ref1><ref2>< R>< L>< C>
Comment card. NUMDCD = 15. |C < n 1>< n 2><ref1><ref2>< R>< A>< B><Leng><><>0
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Series R-L-C. 0.000E+009.000E-060.000E+00 |XX3518XX3508 .009 0
Series R-L-C. 3.200E+000.000E+000.000E+00 | XX3518 3.2 0
Series R-L-C. 0.000E+001.200E-060.000E+00 |XX2616XX3614 .0012 0
Series R-L-C. 0.000E+001.200E-060.000E+00 |XX2616XX3612 .0012 0
Series R-L-C. 0.000E+001.750E-060.000E+00 |czu18 XX2616 .00175 0
Series R-L-C. 0.000E+001.750E-060.000E+00 |XX3578XX2616 .00175 0
Series R-L-C. 0.000E+001.500E-060.000E+00 |XX3586czu18 .0015 0
Series R-L-C. 0.000E+001.500E-060.000E+00 |XX3586XX3578 .0015 0
Series R-L-C. 0.000E+006.000E-060.000E+00 |XX3596XX3586 .006 0
Series R-L-C. 1.500E+000.000E+000.000E+00 | XX3596 1.5 0
Series R-L-C. 0.000E+001.200E-060.000E+00 |XX2620XX3664 .0012 0
Series R-L-C. 0.000E+001.200E-060.000E+00 |XX2620XX3662 .0012 0
Series R-L-C. 0.000E+001.750E-060.000E+00 |czu19 XX2620 .00175 0
Series R-L-C. 0.000E+001.750E-060.000E+00 |XX3634XX2620 .00175 0
Series R-L-C. 0.000E+001.500E-060.000E+00 |XX3642czu19 .0015 0
Series R-L-C. 0.000E+001.500E-060.000E+00 |XX3642XX3634 .0015 0
Series R-L-C. 0.000E+007.500E-060.000E+00 |XX3652XX3642 .0075 0
Series R-L-C. 3.500E+000.000E+000.000E+00 | XX3652 3.5 0
Series R-L-C. 0.000E+001.000E-060.000E+00 |XX3678XX3704 .001 0
Series R-L-C. 0.000E+001.500E-060.000E+00 |czu20 XX3678 .0015 0
Series R-L-C. 0.000E+001.750E-060.000E+00 |XX3688czu20 .00175 0
Series R-L-C. 0.000E+001.710E-060.000E+00 |XX3688XX4892 .00171 0
Series R-L-C. 0.000E+001.710E-060.000E+00 |XX1049XX3688 .00171 0
Series R-L-C. 0.000E+007.500E-060.000E+00 |XX3696XX3688 .0075 0
Series R-L-C. 1.600E+000.000E+000.000E+00 | XX3696 1.6 0
Series R-L-C. 0.000E+002.750E-060.000E+00 |czu21 XX2632 .00275 0
Series R-L-C. 0.000E+002.750E-060.000E+00 |XX3732XX2632 .00275 0
Series R-L-C. 0.000E+002.500E-060.000E+00 |XX3736czu21 .0025 0
Series R-L-C. 0.000E+002.500E-060.000E+00 |XX3736XX3732 .0025 0
Series R-L-C. 0.000E+009.350E-060.000E+00 | XX3736 .00935 0
------------------------------------------------------------------------------------------------------------------------------------
ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/
ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/
------------------------------------------------------------------------------------------------------------------------------------
You lose, fella. The EMTP logic has detected an error condition, and is now going to terminate program execution.The following
message summarizes the circumstances leading to this situation.Where an otherwise-unidentified data card is referred to, or where
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
is generally the last one printed out prior to this termination message.But possibly this last-read card has not yet been
displayed, so a copy follows:
" 10. 0"
KILL code number Overlay number Nearby statement number
239 3 1894
KILL = 239. A single-phase (uncoupled) branch connects two terminal nodes that are the same.This makes no physical or
engineering sense since such a branch can not affect the rest of the network,and the rest of the network can not affect it.The
last-read data card defines the offending branch.Assuming fixed-format, the BUS1 name of columns 3-8 equals the BUS2 name to
columns 9-14.
------------------------------------------------------------------------------------------------------------------------------------
ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/
ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/ERROR/
------------------------------------------------------------------------------------------------------------------------------------
Memory storage figures for the preceding, now-completed data case.-------------------------------Present Program
A value of"-9999"indicates that no figure is available. 17-Jan-1118:43:21 figure limit(name)
Size List 1. Number of electric network nodes. -9999 6000(LBUS)
Size List 2. Number of electric network branches. -9999 10000(LBRNCH)
Size List 3. Number of data values in R, L, C tables. -9999 192000(LDATA)
Size List 4. Number of electric network sources. -9999 900(LEXCT)
Size List 5. Storage for and triangularized . No. times = 0 Factors = 0 -9999 420000(LYMAT)
Size List 6. Number of entries in switch table. No. flops = 0 -9999 1200(LSWTCH)
Size List 7. Number of distinct ALPHANUMERIC data names plus program SPY variables. -9999 15000(LSIZE7)
Size List 8. History points of distributed lines. -9999 120000(LPAST)
Size List 9. Number of nonlinear elements. -9999 2250(LNONL)
Size List 10.Points of nonlinear characteristics. -9999 3800(LCHAR)
Size List 11.Number of Type-59 S.M. outputs. -9999 720(LSMOUT)
Size List 12.Total number of EMTP output variables. -9999 1200(LSIZ12)
Size List 13.Working space for batch/SPY plotting. -9999 72800(LSIZ13)
Size List 14.S.M./U.M. connections to TACS. -9999 510(LBSTAC)
Size List 15.Character storage in bytes for MODELS. -9999 90000(LCTACS)
Size List 16.Total number of Type-59 S.M. masses. -9999 800(LIMASS)
Size List 17.Number of Type-59 Synchronous machines. -9999 90(LSYN)
Size List 18.Branch and switch power/energy outputs. -9999 254(MAXPE)
Size List 19.Total floating-point TACS table space. 23 120000(LTACST)
Size List 20.Non-copied recursive convolution data. -9999 100000(LFSEM)
Size List 21.Total modal/phase matrix storage. -9999 3000(LFD)
Size List 22.Total recursive convolution history. -9999 15000(LHIST)
Size List 23.Giant vectors for renumbering, phasors. -9999 192000(LSIZ23)
Size List 24.Peak phases of compensation for data. -9999 120(LCOMP)
Size List 25.Total table space for all U.M usage. -9999 30000(LSPCUM)
Size List 26.Square of max number of coupled phases. -9999 160000(LSIZ26)
Size List 28.MODELS.Total work space is divided into INTEGER and REAL.1st, REAL: -9999 210000(LRTACS)
Secondand last,statistics for INTEGER work space. 0 0(LITACS)
Size List 29.RAM disk used by "TAPSAV" table saving (limit is "LABCOM" size LTLABL). -9999 300(LSIZ29)
Size List 30.Taku Noda frequency-dependent circuits. -9999 19(LSIZ30)
Timing figures characterizing central processor (CP) solution speed.---------------------------- CP secWait secReal sec
Data input time (through blank card ending branches) .... 0.000 0.000 0.000
Node renumbering and phasor solution.... 0.000 0.000 0.000
After phasor solution, but before time-step loop.... 0.000 0.000 0.000
Integration of equations (time-step loop).... 0.000 0.000 0.000
Plotting or STATISTICS termination overlays .... 0.141 0.000 0.141
---------------------------
Totals 0.141 0.000 0.141
望告知是哪里有错误 KILL = 239. A single-phase (uncoupled) branch connects two terminal nodes that are the same.This makes no physical or
engineering sense since such a branch can not affect the rest of the network,and the rest of the network can not affect it.The
last-read data card defines the offending branch.Assuming fixed-format, the BUS1 name of columns 3-8 equals the BUS2 name to
columns 9-14.
你有一个单相耦合分支连接到了两个相同的终端节点上。 回复 2# vien
这句话我也能翻,不知道这里面有没有提到是在哪个位置错了,因为整个模型很大,很难找到这个错误的地方。 我遇到的都是KILL = 209或者KILL = 209,我也不知道原因。你这种情况我还没遇到过。 Series R-L-C. 0.000E+009.350E-060.000E+00 | XX3736 .00935 0
程序在这里终止的,看看XX3736这个节点 谢谢董版主还有上面的兄弟,问题已解决,六十多基杆塔我一个一个删除再运行,找到了问题杆塔。
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