On a busy road, the emission of emission of motor vehicles is generally considered as linear source. Mostly Gaussian Mode of statistics is used to stimulate the diffusion rule of emission of motor vehicles and estimate the concentration distribution of pollutants in emission of motor vehicles. Since 1970’s, a serial of diffusion modes of emission of motor vehicles on roads have been developed in the countries such as America. Now the diffusion mode of linear source- CALINE4 can be used to predict the impact of emission of emission of motor vehicles on the ambient air quality of Nanjiang Binlu, the Phase-II Project of the Third Ring Road and Kuiqi Bridge.
CALINE 4 mode is to divide roads into a serial of linear sources and respectively count the concentration of pollutants exhausted by each linear source at predicted site, and then sum up the total concentration of pollutants in emission exhausted by motor vehicles at predicted sites on the whole road. CALINE 4 divides limited linear source into sections as per the length of y and source strength of each section is the source strength of linear source (A) times a Weight Factor, which is used to count the impact of six linear sources within 3y on predicted sites. If the line section exceeds this range, the impact is little, so the time for counting can be saved. Therefore, the concentration of pollutants produced at predicted sites of the whole road can be counted:
Thereinto: C--- Concentration of pollutants at Coordinate X, Y and Z of low wind direction, mg/m3;
u---Average wind speed,m/s;
H---Height of emission source of pollutants,m;
WTj—Weight Factor;
Qj---Linear source intensity of section j,mg/(m.s);
Z---Diffusion parameter in vertical direction,m;
Z—Height from predicted sites to ground,(m);
N---Total numbers of linear sources;
PDij—Normal distribution function,
Initial dilution zone in CALINE 4 is used to stimulate the impact of movement of motor vehicles on diffusion of emission of motor vehicles. The width of initial dilution zone is the width of road plus 3m of two sides which show the impact of movement of motor vehicles on horizontal diffusion of emission. In the dilution zone, atmosphere diffusion is mainly mechanical turbulence produced by movement of motor vehicles and thermal turbulence produced from residual heat of emission. The pollutants in emission exhausted by motor vehicles are mixed evenly in initial dilution zone. The height of initial dilution zone depends on the retention time (T) of pollutants in emission of motor vehicles in dilution zone.
(45)
(45)
Thereinto:
W refers to the width of dilution zone,u refers to the wind speed on ground, refers to the corner of wind direction and road. The height of initial dilution zone can be defined as:
2) Access of Diffusion Parameters
The diffusion parameters in common use (or through actual measuring) in Fuzhou can be used.
6.3.4 Forecast of Impact of Emission of Motor Vehicles on Both Sides of Roads
6.3.4.1 Main Contents of Forecast
Main contents of forecast:
(1) In the predominant wind direction (South-southeast), when the stability of NO2 and CO is at B, D and E respectively, the ground concentration increasing distribution;
(2) In the (north wind), when the stability of NO2 and CO is at B, D and E respectively, the ground concentration increasing distribution;
(3) The ground concentration increasing distribution in the predominant south-southeast wind and north wind and under the bad weather (wind speed 1m/s, E stability).
As the characteristics of roads and annual peak hours of flow of motor vehicles have been predicted respectively, the concentration increasing distribution status of air pollutants on both sides of roads.
6.3.4.3 The Results of Forecast
Since the air pollutants exhausted by motor vehicles are NOX, while the state quality standard is NO2, in order to analyze the impact of NO2 on ambient air, relevant research about emission of emission of motor vehicles and ambient air quality indicates that the proportion coefficient of NOX and NO2 is 0.63~0.5, when the proportion coefficient of suburb is the maximum, that of city is the minimum. As far as present, the roads of the Project lie at not only busy section but also suburb, while from the general development plan of Fuzhou, we know that the roads of the Project lie in city, therefore, in NOX analysis this time, coefficient 0.6 is adopted to convert NOX calculation results into NO2.
(1) For Forecast Results of Ambient air of Nanjiang Binlu, See Table 6.3-8~6.3-19
Table 6.3-8 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Aofengzhou Bridge to Qianhengnan Road in 2010 mg/m3
Distance(Southern side of road)
|
North wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.044
|
0.047
|
0.133
|
0.140
|
0.088
|
0.263
|
10
|
0.039
|
0.043
|
0.117
|
0.129
|
0.086
|
0.256
|
25
|
0.029
|
0.035
|
0.086
|
0.104
|
0.079
|
0.237
|
50
|
0.020
|
0.026
|
0.059
|
0.078
|
0.071
|
0.211
|
100
|
0.012
|
0.017
|
0.036
|
0.052
|
0.058
|
0.172
|
150
|
0.008
|
0.013
|
0.026
|
0.038
|
0.049
|
0.146
|
200
|
0.007
|
0.010
|
0.020
|
0.031
|
0.042
|
0.126
|
300
|
0.005
|
0.007
|
0.014
|
0.022
|
0.033
|
0.099
|
Table 6.3-9 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Aofengzhou Bridge to Qianhengnan Road in 2015 mg/m3
Distance(Southern side of road)
|
North wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.064
|
0.067
|
0.190
|
0.201
|
0.126
|
0.377
|
10
|
0.056
|
0.062
|
0.168
|
0.185
|
0.122
|
0.367
|
25
|
0.041
|
0.050
|
0.122
|
0.149
|
0.113
|
0.340
|
50
|
0.028
|
0.037
|
0.084
|
0.112
|
0.101
|
0.302
|
100
|
0.017
|
0.025
|
0.051
|
0.074
|
0.082
|
0.247
|
150
|
0.013
|
0.019
|
0.037
|
0.055
|
0.070
|
0.209
|
200
|
0.010
|
0.014
|
0.029
|
0.044
|
0.060
|
0.180
|
300
|
0.007
|
0.010
|
0.020
|
0.031
|
0.047
|
0.142
|
Table 6.3-10 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Aofengzhou Bridge to Qianhengnan Road in 2020 mg/m3
Distance(Southern side of road)
|
North wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.067
|
0.071
|
0.200
|
0.211
|
0.133
|
0.398
|
10
|
0.059
|
0.065
|
0.177
|
0.195
|
0.129
|
0.387
|
25
|
0.043
|
0.052
|
0.129
|
0.157
|
0.119
|
0.358
|
50
|
0.029
|
0.039
|
0.088
|
0.118
|
0.106
|
0.318
|
100
|
0.018
|
0.026
|
0.054
|
0.078
|
0.087
|
0.260
|
150
|
0.013
|
0.019
|
0.039
|
0.058
|
0.073
|
0.220
|
200
|
0.010
|
0.016
|
0.030
|
0.046
|
0.064
|
0.190
|
300
|
0.007
|
0.011
|
0.021
|
0.033
|
0.050
|
0.150
|
Table 6.3-11 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Aofengzhou Bridge to Sanxianzhou Bridge in 2010 mg/m3
Distance(Southern side of road)
|
North wind
|
Bad weather condition
|
NO2
|
CO
|
NOx
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.071
|
0.074
|
0.212
|
0.224
|
0.148
|
0.444
|
10
|
0.062
|
0.068
|
0.185
|
0.205
|
0.144
|
0.431
|
25
|
0.045
|
0.055
|
0.134
|
0.164
|
0.132
|
0.395
|
50
|
0.031
|
0.041
|
0.091
|
0.121
|
0.115
|
0.346
|
100
|
0.019
|
0.026
|
0.055
|
0.079
|
0.092
|
0.276
|
150
|
0.013
|
0.020
|
0.039
|
0.059
|
0.077
|
0.230
|
200
|
0.010
|
0.016
|
0.031
|
0.047
|
0.066
|
0.197
|
300
|
0.007
|
0.011
|
0.021
|
0.033
|
0.051
|
0.153
|
Table 6.3-12 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Aofengzhou Bridge to Sanxianzhou Bridge in 2015 mg/m3
Distance(Southern side of road)
|
North wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.086
|
0.091
|
0.257
|
0.271
|
0.181
|
0.539
|
10
|
0.075
|
0.083
|
0.225
|
0.249
|
0.175
|
0.522
|
25
|
0.055
|
0.067
|
0.162
|
0.199
|
0.160
|
0.478
|
50
|
0.037
|
0.049
|
0.110
|
0.147
|
0.140
|
0.419
|
100
|
0.022
|
0.032
|
0.067
|
0.096
|
0.112
|
0.335
|
150
|
0.016
|
0.024
|
0.048
|
0.071
|
0.094
|
0.279
|
200
|
0.013
|
0.019
|
0.037
|
0.057
|
0.080
|
0.239
|
300
|
0.008
|
0.013
|
0.026
|
0.040
|
0.062
|
0.185
|
Table 6.3-13 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Aofengzhou Bridge to Sanxianzhou Bridge in 2020 mg/m3
Distance(Southern side of road)
|
North wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.168
|
0.178
|
0.302
|
0.319
|
0.353
|
0.633
|
10
|
0.147
|
0.163
|
0.264
|
0.293
|
0.342
|
0.614
|
25
|
0.106
|
0.130
|
0.191
|
0.233
|
0.313
|
0.562
|
50
|
0.072
|
0.097
|
0.129
|
0.173
|
0.274
|
0.493
|
100
|
0.044
|
0.063
|
0.078
|
0.113
|
0.220
|
0.394
|
150
|
0.031
|
0.047
|
0.056
|
0.084
|
0.183
|
0.328
|
200
|
0.024
|
0.037
|
0.044
|
0.067
|
0.157
|
0.281
|
300
|
0.017
|
0.026
|
0.030
|
0.047
|
0.121
|
0.218
|
Table 6.3-14 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Qianhengnan Road to Aofengzhou Bridge in 2010 mg/m3
Distance(Northern side of road)
|
South-southeast wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.032
|
0.034
|
0.096
|
0.101
|
0.084
|
0.251
|
10
|
0.028
|
0.031
|
0.084
|
0.092
|
0.082
|
0.244
|
25
|
0.020
|
0.025
|
0.061
|
0.073
|
0.076
|
0.226
|
50
|
0.014
|
0.019
|
0.041
|
0.055
|
0.068
|
0.203
|
100
|
0.008
|
0.012
|
0.025
|
0.037
|
0.058
|
0.174
|
150
|
0.006
|
0.009
|
0.018
|
0.028
|
0.051
|
0.153
|
200
|
0.005
|
0.007
|
0.014
|
0.022
|
0.045
|
0.135
|
300
|
0.003
|
0.005
|
0.010
|
0.015
|
0.084
|
0.106
|
Table 6.3-15 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Qianhengnan Road to Aofengzhou Bridge in 2015 mg/m3
Distance(Northern side of road)
|
South-southeast wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.046
|
0.048
|
0.137
|
0.144
|
0.120
|
0.360
|
10
|
0.040
|
0.044
|
0.120
|
0.131
|
0.117
|
0.350
|
25
|
0.029
|
0.035
|
0.088
|
0.104
|
0.108
|
0.324
|
50
|
0.020
|
0.026
|
0.059
|
0.079
|
0.097
|
0.291
|
100
|
0.012
|
0.017
|
0.036
|
0.053
|
0.083
|
0.249
|
150
|
0.009
|
0.013
|
0.026
|
0.040
|
0.073
|
0.219
|
200
|
0.007
|
0.010
|
0.020
|
0.031
|
0.064
|
0.193
|
300
|
0.005
|
0.007
|
0.014
|
0.022
|
0.050
|
0.151
|
Table 6.3-16 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Qianhengnan Road to Aofengzhou Bridge in 2020 mg/m3
Distance(Northern side of road)
|
South-southeast wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.048
|
0.050
|
0.145
|
0.152
|
0.133
|
0.398
|
10
|
0.042
|
0.046
|
0.126
|
0.139
|
0.129
|
0.387
|
25
|
0.031
|
0.037
|
0.092
|
0.110
|
0.119
|
0.358
|
50
|
0.020
|
0.028
|
0.062
|
0.083
|
0.106
|
0.318
|
100
|
0.013
|
0.019
|
0.038
|
0.055
|
0.087
|
0.260
|
150
|
0.009
|
0.014
|
0.027
|
0.042
|
0.073
|
0.220
|
200
|
0.007
|
0.011
|
0.021
|
0.033
|
0.064
|
0.190
|
300
|
0.005
|
0.008
|
0.014
|
0.023
|
0.050
|
0.150
|
Table 6.3-17 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Aofengzhou Bridge to Sanxianzhou Bridge in 2010 mg/m3
Distance(Northern side of road)
|
South-southeast wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.050
|
0.053
|
0.152
|
0.159
|
0.142
|
0.425
|
10
|
0.044
|
0.048
|
0.132
|
0.145
|
0.137
|
0.412
|
25
|
0.032
|
0.038
|
0.097
|
0.115
|
0.126
|
0.377
|
50
|
0.021
|
0.029
|
0.063
|
0.086
|
0.113
|
0.338
|
100
|
0.013
|
0.019
|
0.039
|
0.057
|
0.095
|
0.286
|
150
|
0.009
|
0.014
|
0.028
|
0.042
|
0.082
|
0.246
|
200
|
0.007
|
0.011
|
0.021
|
0.033
|
0.070
|
0.211
|
300
|
0.005
|
0.008
|
0.014
|
0.023
|
0.053
|
0.161
|
Table 6.3-18 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Aofengzhou Bridge to Sanxianzhou Bridge in 2015 mg/m3
Distance(Northern side of road)
|
South-southeast wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.061
|
0.064
|
0.184
|
0.192
|
0.173
|
0.516
|
10
|
0.054
|
0.059
|
0.161
|
0.175
|
0.167
|
0.500
|
25
|
0.039
|
0.047
|
0.117
|
0.139
|
0.153
|
0.458
|
50
|
0.025
|
0.035
|
0.076
|
0.104
|
0.137
|
0.410
|
100
|
0.016
|
0.023
|
0.047
|
0.069
|
0.116
|
0.347
|
150
|
0.011
|
0.017
|
0.034
|
0.051
|
0.100
|
0.298
|
200
|
0.008
|
0.013
|
0.026
|
0.040
|
0.086
|
0.255
|
300
|
0.006
|
0.009
|
0.017
|
0.028
|
0.065
|
0.195
|
Table 6.3-19 Concentration Distribution of Pollutants in Emission of Motor Vehicles on the section from Aofengzhou Bridge to Sanxianzhou Bridge in 2020 mg/m3
Distance(Northern side of road)
|
South-southeast wind
|
Bad weather condition
|
NO2
|
CO
|
NO2
|
CO
|
B
|
D
|
B
|
D
|
E
|
E
|
5
|
0.120
|
0.126
|
0.216
|
0.226
|
0.338
|
0.606
|
10
|
0.105
|
0.115
|
0.189
|
0.206
|
0.327
|
0.587
|
25
|
0.077
|
0.091
|
0.138
|
0.164
|
0.300
|
0.538
|
50
|
0.050
|
0.068
|
0.089
|
0.123
|
0.268
|
0.482
|
100
|
0.031
|
0.046
|
0.056
|
0.082
|
0.227
|
0.408
|
150
|
0.022
|
0.034
|
0.039
|
0.060
|
0.195
|
0.350
|
200
|
0.017
|
0.026
|
0.030
|
0.047
|
0.167
|
0.300
|
300
|
0.011
|
0.018
|
0.021
|
0.033
|
0.128
|
0.229
|
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