1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
|
from OMChem.Flowsheet import Flowsheet
from OMChem.MatStm import MatStm
from OMChem.Mixer import Mixer
from OMChem.Heater import Heater
from component_selector import *
from collections import defaultdict
from PyQt5.QtCore import *
from PyQt5.QtWidgets import *
from PyQt5.QtGui import *
from PyQt5.uic import loadUiType
from PyQt5.QtCore import Qt
from PyQt5.QtWidgets import QGraphicsProxyWidget, QGraphicsObject, QGraphicsEllipseItem ,QGraphicsPixmapItem,QApplication, QGraphicsView, QGraphicsScene, QHBoxLayout, QWidget, QLabel
from PyQt5.QtGui import QBrush ,QTransform ,QMouseEvent
import PyQt5.QtCore as QtCore
import PyQt5.QtWidgets as QtWidgets
from dockWidget import dockWidget
import datetime
import itertools
import json
import pickle
import os
import sys
class Container():
def __init__(self,msgbrowser):
self.unitOp = []
self.thermoPackage = None
self.compounds = None
self.flowsheet = None
self.conn = defaultdict(list)
self.op=defaultdict(list)
self.ip=defaultdict(list)
self.msg = msgbrowser
self.msg.setText("")
self.opl=[]
self.result=[]
def currentTime(self):
now = datetime.datetime.now()
time = str(now.hour) + ":" + str(now.minute) + ":" +str(now.second)
return time
def updateConn(self,key,value):
self.conn[key].append(value)
self.msg.append("<span style=\"color:blue\">["+str(self.currentTime())+"]<b> "+key.name+" </b> output is connected to input of<b> "+value.name +" </b></span>")
def connection(self):
try:
self.op.clear()
self.ip.clear()
self.opl.clear()
stm = ['MatStm','EngStm']
for i in self.conn:
if i.type not in stm:
self.op[i]=self.conn[i]
for j in range(len(self.conn[i])):
if self.conn[i][j].type not in stm:
self.ip[self.conn[i][j]].append(i)
for i in self.op:
i.connect(InputStms=self.ip[i],OutputStms=self.op[i])
self.opl.append([self.op[i] for i in self.op])
self.opl=flatlist(flatlist(self.opl))
except Exception as e:
print(e)
def addUnitOp(self,obj,scene,graphics):
box = None
self.obj = obj
self.scene = scene
self.graphics = graphics
box = self.graphics.createNodeItem(self.obj)
self.scene.addItem(box)
box.setPos(2500-30, 2500-30)
if(obj in self.unitOp):
pass
else:
self.unitOp.append(obj)
self.msg.append("<span style=\"color:blue\">["+str(self.currentTime())+"]<b> "+obj.name+" </b>is instantiated .""</span>")
def fetchObject(self,name):
for i in self.unitOp:
if(i.name==name):
return i
def addCompounds(self,comp):
self.compounds = comp
def add_thermoPackage(self,thermo):
self.thermoPackage = thermo
def msgBrowser(self):
std = self.flowsheet.stdout.decode("utf-8")
if(std):
stdout = str(std)
stdout = stdout.replace("\n","<br/>")
self.msg.append("<span style=\"color:green\">"+stdout+"</span>")
stde = self.flowsheet.stderr.decode("utf-8")
if(stde):
stdout = str(stde)
stdout = stdout.replace("\n","<br/>")
self.msg.append("<span style=\"color:red\">"+stdout+"</span>")
def simulate(self,mode):
print("SIMULATE")
print(mode)
self.compounds = compound_selected
#self.connection()
self.flowsheet = Flowsheet()
self.flowsheet.add_comp_list(self.compounds)
print("######## connection master#########\n",self.conn)
for i in self.unitOp :
print("here",i)
self.flowsheet.add_UnitOpn(i)
if mode=='SM':
self.msg.append("<span>["+str(self.currentTime())+"] Simulating in <b>Sequential</b> mode ... </span>")
self.flowsheet.simulateSM(self.ip,self.op)
self.msgBrowser()
self.result=self.flowsheet.resdata
print("under SEQ mode simulation")
elif mode=='EQN':
self.msg.append("<span>["+str(self.currentTime())+"] Simulating in <b>equation</b> mode ... </span>")
self.flowsheet.simulateEQN()
self.msgBrowser()
self.result=self.flowsheet.resdata
print("under Eqn mode simulation")
def flatlist(lst):
flat_list=[]
for sublist in lst:
for item in sublist:
flat_list.append(item)
return flat_list
|