Local Air Quality Modeling, AIM/Air
The 9 The 9th
th AIM International Workshop
AIM International Workshop 12 12-
- 14, March 2004, at NIES
Local Air Quality Modeling, AIM/Air th AIM International Workshop - - PowerPoint PPT Presentation
Local Air Quality Modeling, AIM/Air th AIM International Workshop The 9 th AIM International Workshop The 9 12- -14, March 2004, at NIES 14, March 2004, at NIES 12 Graduate School of Global Environmental Studies Graduate School of Global
th AIM International Workshop
⋅ − ⋅ =
2 2 3
2 exp ) 2 ( ) , , ( α γ π u Q z y x C
p
] 2 2 exp 2 1 1 2 2 exp 2 1 1 [
2 2 2 2 2 2 2 2 2 2
− ⋅ ⋅ + + − ⋅ ⋅ +
+ + + + − − − −
αη η α αη π η αη η α αη π η ux erfc x u ux ux erfc x u ux
+ − + − − − ⋅ =
2 2 2 2 2 2
2 ) ( exp 2 ) ( exp 2 exp 2 ) , , (
z z y z y p
He z He z y u Q z y x C σ σ σ σ πσ ・
( )
2 2 2 2 2
He z R − + =
−
γ α η
( )
2 2 2 2 2
He z R + + =
+
γ α η
∞
− =
W
dt t W erfc ) exp( 2 ) (
2
π
AS AS LPS LPS
u.air u.air u.air ECMWF local.air Meteorological data Local measurement readGRBX diff.air
Concentration
diffB viewCont
Viewer
(Connect to health impact assessment module) Diffusion calculation emitLPS.air emitAS.air Integration
emission data editAS editLPS Integration
emission data stabLPS.air stabAS.air Stability calculation for AS stabAS stabLPS Stability calculation for LPS AGIS.rst AIM/Local convAGIS A-GIS agis.air Emission projection epat.air Emission patterns editEpat
. 2 . 4 . 6 . 8 1 1 . 2 M
T u e W e d T h u F r i S a t S u n
gmap.air Target area editGmap
Grid data by raster format Change in A day, A week, A year, And Special term
. 2 . 4 . 6 . 8 1 1 . 2 M
T u e W e d T h u F r i S a t S u n
1) Load Map Data 3) Set Target Area 2)Load Emission pattern Database 5) (and click) Assign the Emission Pattern To This Cell. 4) (click) Select A Emission Pattern …..
1) Load Emission pattern database 2) Load LPS data 3) (click) Select A Emission Pattern ….. 4) (and click) Assign the Emission Pattern To This Cell.
2 in Beijing.
E M I S S I O N P R O J E C T I O N Cement Power Generation Public Commerce Transportation Iron & Steel Others
L P S A S
Non-Ferrous Metal Pollutant SO2 T A R G E T P O L L U T A N T
( A I M / L
a l )
M E T E O R O L O G Y D A T A Cloud cover Solar radiation Wind velocity Temperature Geo potential Surface Geo potential Interpolation of meteorology data Calculation of atmospheric stability Calculation of effective stack height D I F F U S I O N C A L C U L A T I O N Diffusion model for AS Diffusion model for LPS
( A I M / A i r )
(0.5°mesh, 6hrs interval) (1km mesh,1hrs interval) Emission patterns A-GIS H E A L T H R I S K A S S E S S M E N T Concentration-Response Function Population map
1 2 3 4 5 6 T h e T e m p l e
H e a O l y m p i c C e n t e r A g r i c u l t u r a l M u s e u m 観測点 C h e G
g Z h u a n g Q i a n M e n D
g S i 1 6 3 2 4 5
Measurement points
GDP by secondary industry section in each district Population density in each 30 seconds mesh GDP by third industry section in each district Population density in each 30 seconds mesh. Population density
. . 2 . 4 . 6 6 1 2 1 8 2 4 時刻 加重
Weight Time
equipment every from Emission heater from Emission =39%(public sector) =89%(commercial sector)
J a n . F e b . M a r . A p r . M a y J u n . J u l . A u g . S e p . O c t . N
. D e c . . 5 1 . 5 1 . 5 2 . 9 . 7 8 . 7 6 . 5 2 . 5 1 . 9 . 9 . 5 1 . 1 6 9 . 6 6 . 1 1 . 9 . 7 1 . 1 7 8 . 1 2 5 M
t h E m i s s i
r a t e b y s e c t
. 9 . 1 3 . 2 4 3 . 1 2 1 . 5 1 C
m e r c e P u b l i c . 4 4 7
2
1 2 3 4 5 1 2 3 4 5 S O
2
日平均濃度推計値( μg / m
3
) S O
2
日平均濃度観測値 ( μg / m 3 )
1 2 3 4 5 6 1 2 3 4 5 6 S O
2
日平均濃度推計値( μg / m
3
) S O
2
日平均濃度観測値 ( μg / m
3
)
( e n v i r
m e n t a l a n n u a l r e p
t
1 9 9 8 )
Measurement value Measurement value Computational value
Computational value
2 4 6 8 1 1 / 1 3 / 1 5 / 1 7 / 1 9 / 1 1 1 / 1 日付 S O
2
日平均濃度( μg / m 3 )
セメ ント 発電 鉄鋼 非鉄金属 商業 運輸 民生 その他
2 n d g r a d e
a i r q u a l i t y 1 5 ( μg / m
3
)
Cement
Power Gen. Iron Steel Non Ferrous Come rce Trans port Public Others
4 8 1 2 6 1 2 1 8 2 4 3 3 6 日数 S O
2
日平均濃度( μg / m 3 )
全部門 発電 商業 民生 その他
9 1 d a y s 4 3 d a y s T h e 2
n dl
e v e l 1 5 μg / m
3
T h e 3
r dl
e v e l 2 5 μg / m
3 All sectors Power gen. Commerce Public Others
days
Day-averaged SO2 concentration
Jan. Feb. Mar. Apl. May Jun. Jul. Aug. Sep. Oct. Nov. Dec. 86.09 97.09 99.25 99.84 99.78 99.81 99.75 99.91 99.69 99.75 99.37 99.5 1 8.054 1.88 0.501 0.063 0.157 0.063 0.157 0.031 0.219 0.157 0.439 0.345 2 3.322 0.282 0.094 0 0.031 0 0.031 0.031 0.031 0.031 0.031 3 0.721 0.188 0 0.031 0 0.063 0 0.031 4 0.407 0.157 0 0.031 0.031 0.031 0.031 0.031 5 0.501 0.125 0 0.031 0 0.031 0 0.063 0.031 6 0.094 0.031 0.094 0.031 0 0.031 0 0.031 7 0.094 0.031 0.031 0 0.031 0.031 0.031 8 0.251 0.063 0 0.031 9 0.125 10 0.063 0.031 0 0.031 0 0.031 11 0.031 0 0.031 12 0.063 13 0.031 0.063 0.031 14 0 0.031 15 0.031 0.031 17 0.031 18 0.031 0.031 21 0.031 29 0.031
#
d a y s a b
e s t a n d a r d
Mo n t h
The maximum number of days which is above the 2nd standard is 104 days.
J a n . 5 8 7 . 1 4 F e b . 2 2 . 9 M a r . 3 . 5 7 A p r . . 7 2 M a y . 3 9 J u n . . 7 9 J u l . 2 . 2 8 A u g . . 3 1 S e p . 1 . 1 5 O c t . . 8 2 N
. 6 . 6 D e c . 1 . 7 9 1 . 7 7 M
t h T
a l T h e m a x i m u m i n c e l l s . 3 1 . 7 3 . 8 2 6 . 2 . 7 2 . 3 9 . 4 1 1 . 3 8 2 6 . 7 8 1 1 . 1 7 2 . 9
Unit: person’s death
Air quality modeling and simulation tool AIM/Air was
By using this tool concentration of air pollutant can be
Proposed algorithm for quick calculation and user
This tool was applied to project air quality of Beijing.