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2<HEAD>
3   <META HTTP-EQUIV="Content-Type" CONTENT="text/html; charset=iso-8859-1">
4   <META NAME="Author" CONTENT="Adam C. Powell, IV">
5   <META NAME="GENERATOR" CONTENT="Mozilla/4.02 [en] (X11; I; IRIX 6.2 IP22) [Netscape]">
6   <TITLE>EBsurf Results</TITLE>
7</HEAD>
8<BODY TEXT="#000000" BGCOLOR="#87CEFA" LINK="#0000EE" VLINK="#551A8B" ALINK="#FF0000">
9
10<CENTER>
11<H1>
12EBsurf Results</H1></CENTER>
13Thank you for your patience.&nbsp; The EBsurf program has calculated results
14based on the parameters you gave it.&nbsp; Share and enjoy!&nbsp;
15<HR WIDTH="100%">
16<CENTER><TABLE BORDER=2 CELLSPACING=2 CELLPADDING=2 BGCOLOR="#FFD700" NOSAVE >
17<CAPTION>
18<CENTER><B><FONT SIZE=+2><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html">Input
19parameters</A></FONT></B></CENTER>
20</CAPTION>
21
22<TR>
23<TD><B><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#oparams">Operating
24Parameters</A></B></TD>
25
26<TD ALIGN=RIGHT></TD>
27
28<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#tsurf">Surface
29temperature</A> (<SUP>o</SUP>C):</TD>
30
31<TD>1</TD>
32</TR>
33
34<TR>
35<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#power">Electron
36beam power</A> (kW):</TD>
37
38<TD>1</TD>
39
40<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#tsurf">Layer
41bottom temperature</A> (<SUP>o</SUP>C):</TD>
42
43<TD>1</TD>
44</TR>
45
46<TR>
47<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#voltage">Beam
48voltage</A> (kV):</TD>
49
50<TD>1</TD>
51
52<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#patlen">Pattern
53length</A> (cm):</TD>
54
55<TD>1</TD>
56</TR>
57
58<TR>
59<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#voltage">Penetration
60range</A> (um):</TD>
61
62<TD>1</TD>
63
64<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#patlen">Pattern
65width</A> (cm):</TD>
66
67<TD>1</TD>
68</TR>
69
70<TR>
71<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#freq">Pattern
72frequency</A> (1/s):</TD>
73
74<TD>1</TD>
75
76<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#vbeam">Beam
77scan velocity</A> (cm/s):</TD>
78
79<TD>1</TD>
80</TR>
81
82<TR>
83<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#pattype">Pattern
84type</A>:</TD>
85
86<TD>1</TD>
87
88<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#spsize">Beam
89spot length</A> (cm):</TD>
90
91<TD>1</TD>
92</TR>
93
94<TR>
95<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#wave">X-waveform</A>:</TD>
96
97<TD>1</TD>
98
99<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#spsize">Beam
100spot width</A> (cm):</TD>
101
102<TD>1</TD>
103</TR>
104
105<TR>
106<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#wave">Y-waveform</A>:</TD>
107
108<TD>1</TD>
109
110<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#dwelltime">Beam
111dwell time</A> (s):</TD>
112
113<TD>1</TD>
114</TR>
115
116<TR>
117<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#freq">Beam
118X scan frequency</A> (1/s):</TD>
119
120<TD>1</TD>
121
122<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#location">Location
123<I>x</I></A> (cm):</TD>
124
125<TD>1</TD>
126</TR>
127
128<TR>
129<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#freq">Beam
130Y&nbsp;scan frequency</A> (1/s):</TD>
131
132<TD>1</TD>
133
134<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#location">Location
135<I>y</I></A> (cm):</TD>
136
137<TD>1</TD>
138</TR>
139
140<TR>
141<TD><B><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#sparams">Simulation
142Parameters</A></B></TD>
143
144<TD></TD>
145
146<TD></TD>
147
148<TD></TD>
149</TR>
150
151<TR>
152<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#zsteps">Z
153steps</A>:</TD>
154
155<TD>1</TD>
156
157<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#bapheth">Bapheth</A>:</TD>
158
159<TD>1</TD>
160</TR>
161
162<TR>
163<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#zrat">Z
164step ratio</A>:</TD>
165
166<TD>1</TD>
167
168<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#width">Surface
169layer depth</A> (cm):</TD>
170
171<TD>1</TD>
172</TR>
173
174<TR>
175<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#aleph">Aleph</A>:</TD>
176
177<TD>1</TD>
178
179<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#theta">Theta</A>:</TD>
180
181<TD>1</TD>
182</TR>
183
184<TR>
185<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#bsplit">Timesteps
186in beam dwell</A>:</TD>
187
188<TD>1</TD>
189
190<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#cyc">Simulation
191cycles</A>:</TD>
192
193<TD>1</TD>
194</TR>
195
196<TR>
197<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#tsteps">Total
198timesteps</A>:</TD>
199
200<TD>1</TD>
201
202<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#ctol">Cycle
203temperature tolerance</A> (<SUP>o</SUP>C):</TD>
204
205<TD>1</TD>
206</TR>
207
208<TR>
209<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#trat">Timestep
210ratio</A>:</TD>
211
212<TD>1</TD>
213
214<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#itol">Iteration
215temperature tolerance</A> (<SUP>o</SUP>C):</TD>
216
217<TD>1</TD>
218</TR>
219
220<TR>
221<TD><B><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#mprops">Material
222Properties</A></B></TD>
223
224<TD></TD>
225
226<TD></TD>
227
228<TD></TD>
229</TR>
230
231<TR>
232<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#alpha">Thermal
233diffusivity</A> (cm<SUP>2</SUP>/s):</TD>
234
235<TD>1</TD>
236
237<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#molmas">Molar
238mass</A> (g/mol):</TD>
239
240<TD>1</TD>
241</TR>
242
243<TR NOSAVE>
244<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#thermk">Thermal
245conductivity</A> (W/m-K):</TD>
246
247<TD>1</TD>
248
249<TD NOSAVE><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#Hvat0K">Heat
250of vaporization <I>H<SUB>v</SUB></I></A> (kJ/mol):</TD>
251
252<TD>1</TD>
253</TR>
254
255<TR>
256<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#epsilon">Radiative
257emissivity</A>:</TD>
258
259<TD>1</TD>
260
261<TD><I><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#HvS">H<SUB>v</SUB></A></I><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#HvS">
262exponential constant</A> (1/K):</TD>
263
264<TD>1</TD>
265</TR>
266
267<TR>
268<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#Tenv">Environment
269temperature</A> (<SUP>o</SUP>C):</TD>
270
271<TD>1</TD>
272
273<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#CCconsts">Clausius-Clapeyron
274<I>A</I></A> (K):</TD>
275
276<TD>1</TD>
277</TR>
278
279<TR>
280<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#rho">Density</A>
281(g/cm<SUP>3</SUP>):</TD>
282
283<TD>1</TD>
284
285<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#CCconsts">Clausius-Clapeyron
286<I>B</I></A>:</TD>
287
288<TD>1</TD>
289</TR>
290
291<TR>
292<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#rho">Fluid
293viscosity</A> (g/cm-s):</TD>
294
295<TD>1</TD>
296
297<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#CCconsts">Clausius-Clapeyron
298<I>C</I></A>:</TD>
299
300<TD>1</TD>
301</TR>
302
303<TR>
304<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#rho">Surface
305tension coeff.</A> (N/m-K):</TD>
306
307<TD>1</TD>
308
309<TD><A HREF="http://lyre.mit.edu/~powell/Software/ebparams.html#CCconsts">Clausius-Clapeyron
310<I>D</I></A> (.001/K):</TD>
311
312<TD>1</TD>
313</TR>
314</TABLE></CENTER>
315
316<HR WIDTH="100%">
317<CENTER><TABLE BORDER=2 CELLSPACING=2 CELLPADDING=2 BGCOLOR="#FFFF00" NOSAVE >
318<CAPTION><B><FONT SIZE=+2><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#anals">Analytical
319calculations</A></FONT></B></CAPTION>
320
321<TR NOSAVE>
322<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#Trise">Estimated
323temperature rise</A> (<SUP>o</SUP>C):</TD>
324
325<TD>1</TD>
326
327<TD NOSAVE><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#maxflux">Maximum
328beam heat flux</A> (kW/cm<SUP>2</SUP>):</TD>
329
330<TD>1</TD>
331</TR>
332
333<TR>
334<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#peclet">Peclet
335number</A>:</TD>
336
337<TD>1</TD>
338
339<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#Ehit">Total
340beam hit energy</A> (kJ/cm<SUP>2</SUP>):</TD>
341
342<TD>1</TD>
343</TR>
344
345<TR>
346<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#penech">Penetration/first
347element</A>:</TD>
348
349<TD>1</TD>
350
351<TD></TD>
352
353<TD></TD>
354</TR>
355</TABLE></CENTER>
356
357<HR WIDTH="100%">
358<BR>youte
359<BR>
360<HR WIDTH="100%">
361<CENTER><TABLE BORDER=2 CELLSPACING=2 CELLPADDING=2 BGCOLOR="#ADFF2F" NOSAVE >
362<CAPTION>
363<CENTER><B><FONT SIZE=+2><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#results">Results</A></FONT></B></CENTER>
364</CAPTION>
365
366<TR>
367<TD>1</TD>
368
369<TD>Constant temperature</TD>
370
371<TD>Calculated average</TD>
372
373<TD>Increase</TD>
374</TR>
375
376<TR>
377<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#evrate">Evaporation
378rate</A> (g/m<SUP>2</SUP>-s):</TD>
379
380<TD>1</TD>
381
382<TD>1</TD>
383
384<TD>1</TD>
385</TR>
386
387<TR NOSAVE>
388<TD NOSAVE><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#heatloss">Total
389surface heat loss</A> (W/cm<SUP>2</SUP>):</TD>
390
391<TD>1</TD>
392
393<TD>1</TD>
394
395<TD>1</TD>
396</TR>
397
398<TR>
399<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#heatloss">Radiative
400heat loss</A> (W/cm<SUP>2</SUP>):</TD>
401
402<TD>1</TD>
403
404<TD>1</TD>
405
406<TD>1</TD>
407</TR>
408
409<TR>
410<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#heatloss">Evaporative
411heat loss</A> (W/cm<SUP>2</SUP>):</TD>
412
413<TD>1</TD>
414
415<TD>1</TD>
416
417<TD>1</TD>
418</TR>
419</TABLE></CENTER>
420&nbsp;
421<CENTER><TABLE BORDER=2 CELLSPACING=2 CELLPADDING=2 BGCOLOR="#66FF99" NOSAVE >
422<TR NOSAVE>
423<TD NOSAVE><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#centerflux">Theoretical
424centerline beam flux</A> (kW/cm<SUP>2</SUP>)</TD>
425
426<TD>1</TD>
427</TR>
428
429<TR>
430<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#centerflux">Actual
431centerline beam flux</A> (kW/cm<SUP>2</SUP>)</TD>
432
433<TD>1</TD>
434</TR>
435
436<TR>
437<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#avgflux">Calculated
438average beam heat flux</A> (W/cm<SUP>2</SUP>)</TD>
439
440<TD>1</TD>
441</TR>
442
443<TR NOSAVE>
444<TD NOSAVE><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#avgflux">Actual
445average beam heat flux</A> (W/cm<SUP>2</SUP>)</TD>
446
447<TD>1</TD>
448</TR>
449
450<TR>
451<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#tbot">Layer
452bottom temperature</A> (<SUP>o</SUP>C)</TD>
453
454<TD>1</TD>
455</TR>
456
457<TR>
458<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#heatcond">Heat
459conduction through layer bottom</A> (W/cm<SUP>2</SUP>)</TD>
460
461<TD>1</TD>
462</TR>
463
464<TR>
465<TD><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#heatcond">Approx.
466heat conduction through surface</A> (W/cm<SUP>2</SUP>)</TD>
467
468<TD>1</TD>
469</TR>
470</TABLE></CENTER>
471
472<HR WIDTH="100%">
473<CENTER><TABLE BORDER=2 CELLSPACING=2 CELLPADDING=2 BGCOLOR="#FFCCCC" NOSAVE >
474<CAPTION>
475<CENTER><B><FONT SIZE=+2><A HREF="http://lyre.mit.edu/~powell/Software/outputs.html#grafs">Graphs</A></FONT></B></CENTER>
476</CAPTION>
477
478<TR>
479<TD>1</TD>
480</TR>
481
482<TR>
483<TD>1</TD>
484</TR>
485
486<TR>
487<TD>1</TD>
488</TR>
489
490<TR>
491<TD>1</TD>
492</TR>
493
494<TR>
495<TD>1</TD>
496</TR>
497
498<TR>
499<TD>1</TD>
500</TR>
501
502<TR>
503<TD>1</TD>
504</TR>
505</TABLE></CENTER>
506
507<HR WIDTH="100%"><I><A HREF="http://lyre.mit.edu/~powell/">Adam Powell</A>&nbsp;</I>
508</BODY>
509</HTML>
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