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s
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[
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[
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Sin
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an
d
d
eter
wild
life
f
r
o
m
win
d
en
er
g
y
i
n
f
r
astru
ctu
r
e
is
ess
e
n
tial.
C
o
n
v
er
ts
th
e
k
in
etic
en
er
g
y
o
f
th
e
win
d
in
t
o
elec
tr
icity
(
s
ee
Fig
u
r
e
1
(
c)
)
.
Fu
r
th
er
m
o
r
e,
elec
tr
icity
p
r
o
d
u
ctio
n
r
esear
c
h
in
th
e
s
tatio
n
,
as
illu
s
tr
ated
in
Fig
u
r
e
1
,
f
o
c
u
s
es
o
n
m
o
n
ito
r
in
g
an
d
o
p
tim
izin
g
th
e
o
u
tp
u
t
o
f
win
d
-
p
o
we
r
ed
s
y
s
tem
s
th
r
o
u
g
h
o
n
-
s
ite
m
ea
s
u
r
em
en
t
in
s
tr
u
m
e
n
ts
an
d
d
ata
an
aly
s
is
to
en
s
u
r
e
r
eliab
le
an
d
ef
f
icien
t
o
p
er
atio
n
.
T
o
d
ay
,
th
is
im
p
ac
t
is
b
ec
o
m
i
n
g
g
l
o
b
al
in
n
atu
r
e,
a
f
f
ec
tin
g
all
s
tr
u
ctu
r
al
co
m
p
o
n
e
n
ts
o
f
o
u
r
p
la
n
et.
T
h
e
way
o
u
t
o
f
th
is
s
itu
atio
n
f
o
r
s
o
ciety
s
h
o
u
ld
b
e:
th
e
in
tr
o
d
u
cti
o
n
o
f
n
ew
tech
n
o
l
o
g
ies
(
f
o
r
clea
n
in
g
,
r
ec
y
clin
g
em
is
s
io
n
s
;
f
o
r
p
r
o
ce
s
s
in
g
an
d
s
to
r
in
g
r
ad
io
ac
tiv
e
waste)
[
5
]
,
[
6
]
,
th
e
s
p
r
ea
d
o
f
th
e
u
s
e
o
f
r
en
ewa
b
le
en
er
g
y
s
o
u
r
ce
s
.
T
h
e
m
ain
d
if
f
icu
lty
i
n
th
e
p
r
ac
tical
im
p
lem
en
tatio
n
o
f
th
e
id
e
a
o
f
th
e
r
elatio
n
s
h
ip
b
etwe
en
ec
o
lo
g
y
an
d
in
n
o
v
atio
n
in
Aze
r
b
aijan
is
th
e
n
ee
d
to
cr
ea
te
a
m
ec
h
a
n
is
m
to
s
tim
u
late
th
e
tr
an
s
itio
n
to
n
ew
r
eso
u
r
ce
-
s
av
in
g
an
d
en
v
ir
o
n
m
en
tally
f
r
ien
d
ly
tech
n
o
l
o
g
ies,
th
e
in
tr
o
d
u
ctio
n
o
f
wh
ich
wo
u
ld
b
r
in
g
tan
g
ib
le
ec
o
n
o
m
ic
an
d
en
v
ir
o
n
m
e
n
tal
b
en
e
f
its
.
Mo
v
em
en
t to
war
d
s
s
u
s
tain
ab
le
d
ev
elo
p
m
e
n
t a
t th
e
city
lev
el
is
ac
h
iev
ed
th
r
o
u
g
h
th
e
im
p
le
m
en
tatio
n
o
f
s
m
ar
t
city
p
r
o
jects.
T
h
e
m
ain
ar
ea
s
o
f
ac
h
iev
in
g
s
u
s
tain
ab
le
d
ev
elo
p
m
e
n
t
g
o
als
in
m
o
d
er
n
co
n
d
itio
n
s
ar
e
th
e
f
o
r
m
atio
n
o
f
a
g
r
ee
n
ec
o
n
o
m
y
[
7
]
.
T
h
is
is
aim
ed
at
t
h
e
s
o
cio
-
ec
o
n
o
m
ic
d
ev
elo
p
m
en
t
o
f
th
e
ter
r
ito
r
y
,
s
u
b
ject
to
t
h
e
p
r
eser
v
atio
n
o
f
n
atu
r
al
ca
p
ital
a
n
d
th
e
p
r
ev
e
n
tio
n
(
o
r
r
ed
u
ctio
n
)
o
f
r
is
k
s
f
r
o
m
a
n
th
r
o
p
o
g
e
n
ic
im
p
ac
t
o
n
th
e
en
v
ir
o
n
m
en
t.
A
s
m
ar
t
city
i
s
a
co
m
p
lex
s
y
s
te
m
o
f
ef
f
ec
tiv
ely
in
ter
ac
tin
g
m
ain
u
r
b
an
s
eg
m
en
ts
,
in
clu
d
in
g
in
f
r
astru
ctu
r
al,
e
co
n
o
m
ic,
an
d
e
n
v
ir
o
n
m
en
tal
o
n
es
[
8
]
.
T
h
is
is
a
s
er
io
u
s
co
n
tr
ib
u
tio
n
to
s
u
s
tain
ab
le
d
ev
elo
p
m
e
n
t,
m
in
im
izatio
n
o
f
en
v
ir
o
n
m
e
n
tal
p
o
llu
tio
n
,
was
te
r
ec
y
clin
g
,
r
eso
u
r
ce
co
n
s
er
v
atio
n
an
d
r
eso
u
r
ce
ef
f
icien
cy
,
m
o
d
e
r
n
izatio
n
o
f
p
r
o
d
u
ctio
n
,
in
tr
o
d
u
ctio
n
o
f
n
ew
tech
n
o
lo
g
ies
,
an
d
,
in
g
e
n
er
al,
in
cr
ea
s
in
g
th
e
co
m
p
etitiv
en
ess
o
f
p
r
o
d
u
ctio
n
[
9
]
,
[
1
0
]
.
E
v
en
th
o
u
g
h
b
io
m
ass
is
a
lim
itles
s
r
eso
u
r
ce
,
f
in
d
in
g
f
e
ed
s
to
ck
is
s
till
th
e
b
ig
g
est
o
b
s
tacle
to
p
r
o
d
u
cin
g
b
io
f
u
el.
C
r
o
p
s
a
n
d
n
o
n
f
o
o
d
-
b
ased
f
ee
d
s
to
c
k
c
o
m
p
ete
f
o
r
la
n
d
in
th
e
p
r
o
d
u
ctio
n
o
f
s
ec
o
n
d
-
g
en
er
atio
n
b
io
f
u
el.
I
n
em
er
g
i
n
g
n
atio
n
s
,
wh
er
e
cr
o
p
s
o
cc
u
p
y
th
e
m
ajo
r
ity
o
f
th
e
la
n
d
,
th
e
lan
d
is
s
u
e
wo
u
ld
b
e
co
n
s
id
er
ab
ly
m
o
r
e
ac
u
te
[
1
1
]
.
B
ec
au
s
e
b
io
m
ass
f
ee
d
s
to
ck
is
wid
ely
d
is
tr
ib
u
ted
,
lo
g
is
tics
p
r
esen
t
an
o
th
er
d
if
f
icu
lty
f
o
r
th
e
m
a
n
u
f
ac
tu
r
i
n
g
o
f
b
io
f
u
el.
I
t
m
ay
r
eq
u
ir
e
a
lo
t
o
f
en
er
g
y
to
co
llect,
s
to
r
e,
an
d
tr
an
s
p
o
r
t
b
io
m
ass
f
r
o
m
f
ield
s
to
ce
n
tr
alize
d
p
r
o
ce
s
s
in
g
f
ac
ilit
ies
[
1
2
]
,
[
1
3
]
.
T
r
a
n
s
p
o
r
tatio
n
e
x
p
e
n
s
es
an
d
em
is
s
io
n
s
wo
u
ld
b
e
g
r
ea
tly
i
n
cr
ea
s
ed
b
y
th
e
u
n
eq
u
al
d
is
tr
ib
u
tio
n
o
f
b
io
m
ass
f
ee
d
s
to
ck
ac
r
o
s
s
v
ar
io
u
s
r
eg
io
n
s
an
d
n
atio
n
s
.
Seaso
n
al
ch
an
g
es
in
th
e
av
ailab
ilit
y
o
f
ag
r
icu
ltu
r
al
waste
co
u
ld
lead
to
u
n
e
v
en
en
er
g
y
o
u
tp
u
t
an
d
m
ak
e
it
ch
allen
g
in
g
to
s
u
s
tain
a
co
n
s
tan
t
s
u
p
p
ly
[
1
4
]
.
Op
er
at
io
n
al
c
o
m
p
lex
ity
:
Un
lik
e
s
o
lar
p
an
els,
wh
ich
r
u
n
r
elativ
ely
s
im
p
ly
,
b
io
e
n
er
g
y
s
y
s
tem
s
ar
e
m
o
r
e
c
o
m
p
licated
an
d
n
ee
d
m
ain
ten
an
ce
s
in
ce
th
eir
m
a
n
y
s
tag
es
o
f
co
llectin
g
,
p
r
o
ce
s
s
in
g
,
d
ig
esti
o
n
,
a
n
d
en
er
g
y
co
n
v
er
s
io
n
m
a
y
ca
u
s
e
m
ec
h
an
ical
is
s
u
es.
L
a
n
d
u
s
e
is
a
b
ig
is
s
u
e
[
1
5
]
,
[
1
6
]
.
C
o
n
v
e
r
tin
g
f
o
o
d
cr
o
p
s
lik
e
co
r
n
an
d
s
o
y
in
t
o
f
u
e
l
r
aises
co
n
ce
r
n
s
ab
o
u
t
f
o
o
d
s
ec
u
r
ity
.
E
x
p
an
d
i
n
g
b
io
f
u
el
f
ar
m
s
ca
n
also
d
estro
y
n
atu
r
al
h
ab
itats
,
as
s
ee
n
with
p
alm
o
il
p
lan
tatio
n
s
r
ep
laci
n
g
tr
o
p
ical
f
o
r
ests
.
So
m
e
alter
n
ativ
es,
lik
e
g
r
o
wi
n
g
d
iv
er
s
e
n
ativ
e
p
lan
t
s
p
ec
i
es
f
o
r
b
io
f
u
el,
co
u
ld
h
elp
r
es
to
r
e
d
eg
r
a
d
ed
lan
d
,
im
p
r
o
v
e
b
io
d
iv
er
s
ity
,
a
n
d
r
e
d
u
ce
er
o
s
io
n
.
I
n
co
m
p
ar
is
o
n
to
ce
r
tain
f
o
o
d
o
r
en
e
r
g
y
cr
o
p
s
,
ag
r
icu
ltu
r
al
b
y
p
r
o
d
u
cts o
f
f
er
a
n
u
m
b
er
o
f
b
en
ef
its
(
Fig
u
r
es
1
(
a
)
-
1(
c
)
)
.
Fre
e
o
r
in
e
x
p
en
s
iv
e
b
y
p
r
o
d
u
cts
h
elp
av
o
i
d
f
o
o
d
v
s
.
f
u
el
co
n
f
licts
[
1
7
]
-
[
1
9
]
.
B
y
u
s
in
g
th
em
,
waste
m
an
ag
e
m
en
t
g
o
als
ar
e
m
et,
r
ed
u
ci
n
g
th
e
en
v
ir
o
n
m
en
tal
d
am
ag
e
ca
u
s
ed
b
y
o
p
en
b
u
r
n
i
n
g
o
r
d
is
p
o
s
al.
So
il
n
itro
g
e
n
cy
clin
g
an
d
o
r
g
an
ic
m
atter
r
e
n
ewa
l
ca
n
b
o
t
h
b
e
en
h
an
ce
d
b
y
g
ettin
g
r
id
o
f
lef
to
v
er
s
.
B
io
m
ass
s
u
p
p
ly
n
etwo
r
k
s
an
d
co
n
v
er
s
io
n
te
ch
n
o
lo
g
y
ar
e
m
o
r
e
ec
o
n
o
m
ically
s
u
s
tain
ab
le
wh
e
n
ag
r
icu
ltu
r
al
waste
is
tu
r
n
ed
i
n
to
en
er
g
y
[
2
0
]
,
[
2
1
]
.
(
a)
(
b
)
(
c)
Fig
u
r
e
1
.
Ov
e
r
v
iew
o
f
en
er
g
y
r
esear
ch
in
th
e
Ab
s
h
e
r
o
n
Pen
i
n
s
u
la:
(
a)
win
d
e
n
er
g
y
tu
r
b
i
n
e
s
tatio
n
,
(
b
)
g
r
ee
n
en
er
g
y
s
to
r
a
g
e,
an
d
(
c)
elec
tr
icity
p
r
o
d
u
ctio
n
Evaluation Warning : The document was created with Spire.PDF for Python.
I
n
t J Ap
p
l Po
wer
E
n
g
I
SS
N:
2252
-
8
7
9
2
C
u
r
r
en
t sta
te
o
f p
r
o
d
u
ctio
n
o
f
а
lter
n
a
tive
e
n
erg
y
o
n
t
h
e
A
b
s
h
ero
n
P
en
in
s
u
la
(
R
a
mil S
a
d
ig
o
v
A
li
)
39
2.
T
H
E
P
RO
P
O
SE
D
M
E
T
H
O
D
Hy
d
r
o
ly
tic,
ac
id
-
f
o
r
m
in
g
,
an
d
m
eth
an
e
-
f
o
r
m
in
g
b
ac
ter
ia
p
a
r
ticip
ate
in
th
e
d
ec
o
m
p
o
s
itio
n
p
r
o
ce
s
s
.
T
h
ey
in
itiate
a
n
ae
r
o
b
ic
f
er
m
e
n
tatio
n
.
B
ac
ter
ia
co
n
s
u
m
e
th
e
b
io
m
ass
an
d
co
n
v
er
t
it
in
to
b
io
g
as.
B
io
f
u
els
ca
n
b
e
p
r
o
d
u
ce
d
f
r
o
m
lig
n
o
ce
ll
u
lo
s
e,
a
r
ich
ca
r
b
o
n
s
o
u
r
ce
,
u
s
in
g
b
ac
ter
ial
en
zy
m
es
lik
e
ce
llu
lases
an
d
h
em
icellu
lases
.
Sin
ce
m
o
s
t
b
ac
ter
ia
ar
e
u
n
a
b
le
to
b
r
e
ak
d
o
wn
lig
n
o
ce
llu
lo
s
e
n
at
u
r
ally
,
m
et
ab
o
lic
en
g
in
ee
r
in
g
is
u
s
ed
to
b
o
o
s
t
th
eir
ab
ilit
y
[
2
2
]
.
B
y
ad
ju
s
tin
g
v
a
r
iab
les
in
clu
d
in
g
p
H,
tem
p
er
atu
r
e,
s
u
b
s
tr
ate
lo
ad
in
g
,
an
d
en
zy
m
e
d
o
s
ag
e,
th
e
p
r
o
ce
s
s
c
an
b
e
im
p
r
o
v
ed
an
d
s
u
g
ar
y
ie
ld
s
in
cr
ea
s
ed
.
Usi
n
g
en
zy
m
es
o
r
ac
id
,
h
y
d
r
o
ly
s
is
co
n
v
er
ts
lig
n
o
ce
llu
l
o
s
ic
b
io
m
ass
in
to
m
o
n
o
m
er
s
.
E
n
z
y
m
es
ar
e
u
s
ed
in
en
zy
m
atic
h
y
d
r
o
l
y
s
is
to
b
r
ea
k
d
o
wn
lig
n
o
ce
llu
lo
s
e.
E
n
d
o
g
lu
ca
n
ase,
ex
o
g
lu
ca
n
ase,
an
d
β
-
g
l
u
co
s
id
ase
ar
e
th
e
th
r
ee
m
ain
e
n
zy
m
es
th
at
b
r
ea
k
d
o
wn
ce
llu
lo
s
e
an
d
r
elea
s
e
g
lu
c
o
s
e
f
r
o
m
co
m
p
lex
m
o
lecu
les.
C
ellu
la
s
es,
wh
ich
in
clu
d
e
β
-
g
lu
co
s
id
ase,
en
d
o
g
l
u
ca
n
ase,
an
d
ex
o
g
lu
ca
n
ase,
co
n
v
e
r
t
ce
llu
lo
s
e
to
g
lu
co
s
e
to
b
e
r
ea
d
y
to
f
er
m
e
n
t.
Hem
icellu
lases
co
n
v
er
t h
em
icellu
lo
s
e
in
to
m
a
n
n
o
s
e,
g
lu
c
o
s
e,
an
d
x
y
l
o
s
e,
am
o
n
g
o
th
er
s
u
g
ar
s
.
A
m
ajo
r
c
h
allen
g
e
in
f
l
u
en
cin
g
th
e
g
en
e
r
al
ec
o
n
o
m
ics
o
f
m
a
k
in
g
eth
a
n
o
l
is
th
e
co
s
t
o
f
m
a
n
u
f
ac
tu
r
in
g
th
e
ce
llu
lase
en
zy
m
e
.
Ob
tain
in
g
b
io
g
as
f
r
o
m
waste
tak
es
an
av
er
ag
e
o
f
4
0
-
6
0
d
a
y
s
,
as
estab
lis
h
ed
in
Fig
u
r
e
2
(
a)
.
T
h
is
is
a
co
m
p
letely
waste
-
f
r
ee
p
r
o
ce
s
s
,
wh
ich
is
a
b
ig
ad
v
a
n
tag
e
o
f
th
is
m
eth
o
d
o
f
p
r
o
ce
s
s
in
g
.
W
h
en
f
er
m
e
n
tatio
n
is
c
o
m
p
lete,
a
d
r
y
a
n
d
liq
u
id
p
r
o
d
u
ct
r
em
ain
s
as
es
tab
lis
h
ed
in
Fig
u
r
e
2
(
b
)
.
I
t
d
o
es
n
o
t
s
m
ell
an
d
co
n
tain
s
a
lar
g
e
am
o
u
n
t
o
f
m
in
er
als th
at
ar
e
ea
s
ily
ab
s
o
r
b
ed
b
y
p
lan
ts
[
2
3
]
,
[
2
4
]
.
(
a)
(
b
)
Fig
u
r
e
2
.
T
ec
h
n
ical
s
tag
es o
f
b
io
g
as p
r
o
d
u
ctio
n
: (
a)
s
ch
em
a
tic
r
ep
r
esen
tatio
n
o
f
th
e
an
ae
r
o
b
ic
d
ec
o
m
p
o
s
itio
n
p
r
o
ce
s
s
an
d
(
b
)
4
tech
n
o
l
o
g
ica
l stag
es o
f
o
b
tain
in
g
an
d
s
to
r
i
n
g
b
io
g
as
Evaluation Warning : The document was created with Spire.PDF for Python.
I
SS
N
:
2
2
5
2
-
8
7
9
2
I
n
t J Ap
p
l Po
wer
E
n
g
,
Vo
l.
1
5
,
No
.
1
,
Ma
r
ch
20
2
6
:
37
-
4
5
40
3.
RE
SU
L
T
S AN
D
D
I
SCU
SS
I
O
N
3
.
1
.
B
io
g
a
s
ener
g
y
in Abs
he
ro
n
P
enins
u
la
B
io
m
ass
ca
n
b
e
u
s
ed
as
f
u
el
d
ir
ec
tly
o
r
p
r
o
ce
s
s
ed
in
to
liq
u
id
o
r
g
aseo
u
s
f
o
r
m
s
f
o
r
elec
tr
icity
,
h
ea
t,
o
r
f
u
el
p
r
o
d
u
ctio
n
.
T
h
e
r
e
ar
e
two
m
ain
way
s
to
co
n
v
er
t
b
io
m
ass
in
to
b
io
f
u
els:
b
io
ch
em
ical
an
d
th
er
m
o
ch
em
ical
c
o
n
v
e
r
s
io
n
.
B
io
ch
em
ical
m
eth
o
d
s
in
cl
u
d
e
an
ae
r
o
b
ic
d
i
g
esti
o
n
,
s
ac
ch
ar
if
icatio
n
,
a
n
d
h
y
d
r
o
ly
s
is
.
Usi
n
g
ag
r
icu
ltu
r
al
cr
o
p
s
f
o
r
b
io
f
u
el
p
r
o
d
u
ctio
n
ca
n
im
p
ac
t
th
e
d
ev
elo
p
m
e
n
t
o
f
th
e
ag
r
icu
ltu
r
a
l
s
ec
to
r
,
cr
ea
te
jo
b
s
in
r
u
r
al
a
r
ea
s
,
an
d
co
n
tr
ib
u
te
p
o
s
itiv
ely
to
th
e
ec
o
n
o
m
y
.
Mo
s
tly
in
s
o
lid
s
tate,
p
r
o
d
u
ce
d
f
r
o
m
f
o
o
d
cr
o
p
s
s
u
ch
as
co
r
n
,
wh
ea
t,
s
o
y
b
ea
n
s
,
p
alm
o
il,
s
u
g
ar
ca
n
e,
a
n
d
o
th
er
s
,
f
ir
s
t
-
g
en
er
atio
n
b
io
f
u
els
ar
o
s
e
as
s
u
b
s
titu
tes
f
o
r
f
o
s
s
il
f
u
els
[
2
5
]
,
[
2
6
]
.
Alth
o
u
g
h
th
e
s
e
b
io
f
u
els
a
r
e
b
i
o
d
eg
r
ad
ab
le
an
d
ca
n
b
e
m
ix
ed
with
tr
ad
itio
n
al
f
u
els,
t
h
ey
ca
n
b
e
a
th
r
ea
t
t
o
f
o
o
d
cr
o
p
s
wi
th
ex
ten
s
iv
e
f
ar
m
i
n
g
an
d
a
l
o
t
o
f
in
p
u
ts
.
B
en
ef
its
in
clu
d
e
b
ein
g
b
io
d
e
g
r
ad
ab
le,
h
av
in
g
ea
s
y
ac
ce
s
s
to
f
ee
d
s
to
ck
,
an
d
b
ein
g
g
o
o
d
f
o
r
th
e
en
v
ir
o
n
m
en
t
an
d
s
o
ciety
.
T
h
r
o
u
g
h
ch
em
ical
o
r
f
er
m
en
tatio
n
p
r
o
ce
s
s
es,
th
e
b
io
m
ass
'
s
o
ils
,
s
u
g
ar
s
,
an
d
s
tar
ch
es
ar
e
co
n
v
er
ted
in
to
liq
u
id
f
u
els.
B
io
d
iesel
in
Ab
s
eh
r
o
n
is
m
ad
e
b
y
ch
e
m
ical
tr
an
s
ester
if
icatio
n
(
tr
ig
ly
c
er
id
e
p
lu
s
m
eth
a
n
o
l
cr
ea
tes
3
m
eth
y
l
ester
s
(
b
io
d
iesel)
an
d
g
l
y
ce
r
o
l)
.
B
io
eth
a
n
o
l
is
u
s
u
ally
m
ad
e
b
y
f
er
m
en
tatio
n
with
y
ea
s
t
s
tr
ain
s
.
L
an
d
p
lo
ts
b
el
o
n
g
in
g
t
o
th
e
ca
teg
o
r
y
o
f
a
g
r
icu
ltu
r
al
l
an
d
,
in
clu
d
in
g
3
.
3
7
6
h
ec
tar
es
o
f
s
tate
o
wn
er
s
h
ip
in
th
e
city
o
f
B
ak
u
,
M
u
s
h
f
ig
a
b
ad
s
ettlem
en
t
o
f
Gar
ad
ag
h
d
is
tr
ict,
1
9
.
8
8
6
h
ec
tar
es
o
f
s
tat
e
o
wn
er
s
h
ip
in
th
e
ad
m
in
is
tr
ativ
e
ter
r
ito
r
y
o
f
Ab
s
h
er
o
n
d
is
tr
ict
,
an
d
1
1
.
2
4
h
ec
tar
es
o
wn
e
d
b
y
Pir
ek
esh
k
u
l
-
Go
b
u
s
tan
m
u
n
icip
ality
o
f
Ab
s
h
er
o
n
d
is
tr
ict
[
2
6
]
s
h
all
b
e
estab
lis
h
ed
as
a
ter
r
ito
r
y
o
f
r
en
ewa
b
le
en
e
r
g
y
s
o
u
r
ce
s
f
o
r
th
e
p
u
r
p
o
s
e
o
f
co
n
s
tr
u
ctin
g
a
wi
n
d
p
o
wer
p
la
n
t
with
an
in
s
talled
ca
p
ac
ity
o
f
2
4
0
MW.
An
alter
n
ativ
e
m
ain
ap
p
r
o
ac
h
to
f
o
r
ec
asti
n
g
is
b
ased
o
n
p
u
r
ely
s
tatis
tical
m
o
d
el
in
g
.
T
h
e
s
ite
-
s
p
ec
if
ic
a
n
d
p
o
wer
cu
r
v
e
m
o
d
elin
g
s
tep
s
ar
e
r
ep
lace
d
b
y
a
u
n
iq
u
e
s
tep
th
at
d
ir
ec
tly
co
n
v
er
ts
i
n
p
u
t
v
ar
iab
les
in
to
p
o
wer
.
Statis
tical
m
o
d
els
ca
n
also
b
e
u
s
ed
to
f
o
r
ec
ast win
d
s
p
ee
d
.
Ho
wev
er
,
th
is
in
ter
m
ed
i
ate
s
tep
is
o
f
ten
n
eg
lecte
d
,
an
d
a
u
n
iq
u
e
m
o
d
el
is
d
ev
elo
p
e
d
th
at
d
ir
ec
tly
tar
g
e
ts
p
o
wer
f
o
r
ec
asti
n
g
.
T
h
e
a
d
ap
tiv
ity
o
f
m
o
d
el
p
ar
am
ete
r
s
o
v
er
tim
e
is
an
im
p
o
r
tan
t
p
r
o
p
er
t
y
th
at
win
d
en
er
g
y
f
o
r
ec
asti
n
g
m
o
d
els
m
u
s
t
tak
e
in
to
ac
co
u
n
t
wh
en
ap
p
licatio
n
co
n
d
itio
n
s
ch
an
g
e,
s
u
ch
as
ch
a
n
g
es
in
th
e
e
n
v
ir
o
n
m
en
t
o
r
ev
e
n
t
h
e
n
u
m
b
er
o
f
win
d
f
a
r
m
s
in
th
e
ar
ea
u
n
d
e
r
co
n
s
id
er
atio
n
.
3
.
2
.
Wi
nd
ener
g
y
in Abs
her
o
n
P
enins
u
la
T
h
e
an
aly
s
is
o
f
th
e
p
r
esen
ted
r
esu
lts
s
h
o
ws
th
at
th
e
win
d
b
l
o
ws
o
n
av
er
ag
e
9
5
%
o
f
th
e
tim
e
in
th
e
Ab
s
h
er
o
n
r
e
g
io
n
.
At
th
e
s
am
e
tim
e,
th
e
s
p
ec
if
ic
g
en
e
r
atio
n
o
f
elec
tr
icity
is
ap
p
r
o
x
im
at
ely
1
3
2
k
W
h
/m
2
p
er
y
ea
r
,
a
n
d
o
n
ly
in
t
h
e
n
o
r
th
o
f
th
e
r
eg
io
n
-
3
5
8
k
W
h
/m
2
.
T
h
e
o
b
tain
ed
r
esu
lts
allo
w
u
s
to
esti
m
ate
th
e
ec
o
n
o
m
ic
in
d
icato
r
s
f
o
r
th
e
p
r
o
d
u
ctio
n
o
f
elec
tr
icity
o
n
win
d
tu
r
b
in
es
in
th
e
Ab
s
h
er
o
n
r
e
g
io
n
.
T
h
e
len
g
t
h
o
f
ea
ch
s
p
o
k
e
f
r
o
m
th
e
ce
n
ter
i
n
d
icate
s
th
e
p
e
r
ce
n
tag
e
o
f
tim
e
th
e
win
d
b
lo
ws
f
r
o
m
th
at
d
ir
e
ctio
n
.
T
h
e
d
ia
g
r
am
s
clea
r
ly
d
is
p
lay
th
e
p
r
ev
ailin
g
win
d
d
ir
ec
tio
n
s
an
d
s
p
ee
d
s
f
o
r
ea
ch
o
f
t
h
e
f
o
u
r
lo
ca
tio
n
s
.
C
h
ar
ts
ar
e
a
g
r
a
p
h
ical
m
et
h
o
d
o
f
d
is
p
lay
in
g
m
u
ltiv
ar
iate
d
at
a
as
a
two
-
d
im
en
s
io
n
al
ch
ar
t
co
n
s
is
tin
g
o
f
th
r
ee
o
r
m
o
r
e
q
u
an
titativ
e
v
ar
iab
les
p
lo
tted
o
n
a
x
es
s
tar
tin
g
f
r
o
m
t
h
e
s
am
e
p
o
in
t.
T
h
e
s
p
o
k
es
ar
e
d
iv
id
ed
in
to
co
lo
r
-
c
o
d
ed
b
an
d
s
,
wh
ich
co
r
r
esp
o
n
d
to
s
p
ec
if
ic
win
d
s
p
ee
d
r
an
g
es
as
s
h
o
wn
in
th
e
l
eg
en
d
.
T
h
e
leg
en
d
in
d
icate
s
th
e
f
o
llo
win
g
s
p
ee
d
r
an
g
es
in
m
eter
s
p
er
s
ec
o
n
d
(
m
/s
)
.
T
h
e
len
g
th
o
f
ea
ch
s
p
o
k
e
in
d
icate
s
h
o
w
o
f
ten
th
e
win
d
b
lew
f
r
o
m
th
at
d
ir
ec
tio
n
.
L
o
n
g
er
s
p
o
k
es
r
ep
r
esen
t
a
h
ig
h
er
f
r
e
q
u
en
c
y
.
T
h
e
co
n
ce
n
tr
ic
cir
cles
p
r
o
v
id
e
a
s
ca
le,
m
o
s
t
o
f
ten
r
e
p
r
esen
tin
g
a
p
e
r
ce
n
tag
e
o
f
th
e
to
tal
tim
e
(
s
ee
Fig
u
r
e
s
3
(
a)
-
3
(
d
)
)
.
E
ac
h
d
iag
r
am
s
h
o
ws
th
e
f
r
eq
u
e
n
cy
o
f
d
if
f
e
r
en
t
win
d
s
p
ee
d
s
f
r
o
m
d
if
f
er
en
t
d
ir
ec
tio
n
s
.
C
o
lo
r
ed
lin
es
co
r
r
esp
o
n
d
to
d
if
f
e
r
en
t
r
an
g
es o
f
win
d
s
p
ee
d
s
.
T
ab
le
1
p
r
esen
ts
d
ata
o
n
el
ec
tr
icity
p
r
o
d
u
ctio
n
(
E
P),
s
p
ec
if
ic
p
o
wer
(
SP
)
,
a
n
d
t
o
tal
elec
tr
icity
g
en
er
atio
n
(
T
E
G)
f
r
o
m
a
win
d
tu
r
b
in
e
at
d
if
f
er
en
t
win
d
s
p
ee
d
s
.
T
h
e
tab
le
s
h
o
ws
a
b
r
ea
k
d
o
wn
o
f
h
o
w
win
d
s
h
ar
e
an
d
elec
tr
icity
p
r
o
d
u
ctio
n
ch
an
g
e
with
in
cr
ea
s
in
g
wi
n
d
s
p
ee
d
.
E
lectr
icity
p
r
o
d
u
cti
o
n
(
E
P)
s
h
o
ws
th
e
am
o
u
n
t
o
f
elec
tr
icity
p
r
o
d
u
ce
d
p
er
y
ea
r
(
k
W
h
)
f
o
r
d
if
f
e
r
en
t
win
d
s
p
ee
d
r
an
g
es.
Sp
ec
i
f
ic
p
o
wer
(
SP
)
p
r
o
v
id
es
th
e
s
p
ec
if
ic
p
o
wer
in
watts
p
er
s
q
u
ar
e
m
eter
f
o
r
ea
ch
win
d
s
p
ee
d
r
an
g
e.
T
o
tal
elec
tr
icity
g
en
er
atio
n
(
T
E
G)
is
lis
ted
at
th
e
b
o
tto
m
o
f
th
e
tab
l
e,
r
ep
r
esen
tin
g
th
e
s
u
m
o
f
all
E
P
v
alu
es
f
o
r
ea
ch
s
ce
n
ar
io
.
T
h
e
win
d
s
p
ee
d
d
ata
ar
e
ca
teg
o
r
ized
in
to
s
p
ec
if
ic
r
a
n
g
es,
f
r
o
m
0
–
1
m
/s
u
p
t
o
g
r
ea
t
er
th
an
1
0
m
/s
.
I
n
th
e
s
m
ar
t
city
p
r
o
ject,
ele
ctr
icity
g
en
er
ated
f
r
o
m
win
d
tu
r
b
in
es
is
u
s
ed
f
o
r
v
ar
io
u
s
p
u
r
p
o
s
es.
E
lectr
icity
co
n
s
u
m
p
tio
n
b
y
ec
o
n
o
m
ic
s
ec
to
r
is
s
h
o
wn
in
Fi
g
u
r
e
4
a
b
o
u
t
7
0
%
o
f
elec
tr
ici
ty
is
co
n
s
u
m
ed
b
y
in
d
u
s
tr
ial
en
ter
p
r
is
es.
T
h
e
la
r
g
est
s
h
ar
e
o
f
elec
tr
icity
co
n
s
u
m
p
tio
n
in
th
e
s
tr
u
ctu
r
e
o
f
th
e
m
an
u
f
ac
tu
r
i
n
g
in
d
u
s
tr
y
is
o
cc
u
p
ie
d
b
y
m
eta
llu
r
g
ical
en
ter
p
r
is
es
-
4
7
.
2
%,
as
well
as
ch
em
ical
in
d
u
s
tr
y
en
ter
p
r
is
es
(
ab
o
u
t
5
%).
T
h
e
s
ig
n
i
f
ican
t
s
h
ar
e
o
f
in
d
u
s
tr
y
i
n
to
tal
elec
tr
icity
c
o
n
s
u
m
p
tio
n
is
d
u
e
t
o
th
e
p
r
ed
o
m
in
an
ce
o
f
h
ea
v
y
in
d
u
s
tr
y
s
ec
to
r
s
,
h
ig
h
d
e
p
r
e
ciatio
n
o
f
ass
ets
(
f
ix
ed
ass
ets),
an
d
th
e
u
s
e
o
f
o
u
td
ate
d
tech
n
o
l
o
g
ies,
as
estab
lis
h
ed
in
Fig
u
r
es
4
(
a)
-
4
(
d
)
.
E
lectr
icity
co
n
s
u
m
p
tio
n
in
h
o
u
s
in
g
an
d
p
u
b
lic
u
tili
ties
cu
r
r
en
tly
a
m
o
u
n
ts
to
m
o
r
e
th
a
n
2
3
%
o
f
all
elec
tr
ici
ty
in
th
e
co
u
n
tr
y
,
an
d
th
e
lar
g
est
co
n
s
u
m
er
s
o
f
elec
tr
icity
in
h
o
u
s
in
g
an
d
p
u
b
lic
u
tili
ties
ar
e
r
esid
en
tial b
u
ild
in
g
s
.
Evaluation Warning : The document was created with Spire.PDF for Python.
I
n
t J Ap
p
l Po
wer
E
n
g
I
SS
N:
2252
-
8
7
9
2
C
u
r
r
en
t sta
te
o
f p
r
o
d
u
ctio
n
o
f
а
lter
n
a
tive
e
n
erg
y
o
n
t
h
e
A
b
s
h
ero
n
P
en
in
s
u
la
(
R
a
mil S
a
d
ig
o
v
A
li
)
41
Fig
u
r
e
3
.
W
in
d
d
iag
r
am
s
at
co
n
tr
o
l p
o
i
n
ts
:
(
a)
0
-
1
an
d
2
-
4
m
/s
,
(
b
)
1
-
2
an
d
2
-
4
m
/s
,
(
c)
2
-
4
an
d
4
-
7
,
a
n
d
(
d
)
1
-
2
an
d
2
-
4
m
/s
h
ig
h
er
f
r
e
q
u
en
cy
T
ab
le
1
.
E
lectr
icity
p
r
o
d
u
ctio
n
,
p
o
wer
r
esear
c
h
r
esu
l
t
s
W
i
n
d
s
p
e
e
d
,
m/
s
S
P
,
W
/
m
2
W
i
n
d
sh
a
r
e
%
EP,
k
W
h
/
y
e
a
r
W
i
n
d
sh
a
r
e
%
EP,
k
W
h
/
y
e
a
r
W
i
n
d
sh
a
r
e
%
EP,
k
W
h
/
y
e
a
r
W
i
n
d
sh
a
r
e
%
EP,
k
W
h
/
y
e
a
r
0
-
1
0
.
0
4
6
1
7
.
7
0
.
0
7
1
7
.
6
5
0
.
0
7
1
6
.
7
0
.
0
7
3
.
8
3
0
.
0
2
1
-
2
1
.
2
4
21
2
.
2
8
2
6
.
3
2
.
8
6
2
7
.
1
2
2
.
9
5
1
3
.
9
2
1
.
5
1
2
-
4
9
.
9
2
3
5
.
5
3
0
.
8
5
3
9
.
5
3
4
.
3
3
3
9
.
9
3
4
.
6
7
3
2
.
5
6
2
8
.
2
9
4
-
7
6
1
.
1
4
1
5
.
8
8
4
.
6
2
1
2
.
5
6
6
.
9
5
1
4
.
6
7
8
.
2
0
3
4
.
8
1
8
6
.
3
8
7
-
10
2
2
5
.
7
1
.
0
6
2
0
.
9
6
0
.
8
2
1
6
.
2
1
0
.
5
8
1
1
.
4
7
7
.
2
5
1
4
3
,
3
4
>
1
0
3
6
7
.
5
0
.
0
3
4
1
.
0
9
0
.
0
3
4
1
.
0
9
0
0
.
0
0
1
.
2
3
8
.
6
3
TEG
k
W
h
/
y
e
a
r
-
-
1
3
8
.
7
8
-
1
2
0
.
4
1
-
1
2
7
.
3
5
-
3
5
9
.
5
5
N
o
t
e
:
EP
i
s
e
l
e
c
t
r
i
c
i
t
y
p
r
o
d
u
c
t
i
o
n
,
S
P
i
s s
p
e
c
i
f
i
c
p
o
w
e
r
,
a
n
d
T
EG
i
s
t
o
t
a
l
e
l
e
c
t
r
i
c
i
t
y
g
e
n
e
r
a
t
i
o
n
(
s
o
u
r
c
e
b
y
a
u
t
h
o
r
s
i
n
2
0
2
4
)
(
a)
(
b
)
(
c)
(
d
)
Fig
u
r
e
4
.
Dep
e
n
d
en
ce
s
o
f
th
e
s
p
ec
if
ic
co
s
t o
f
elec
tr
icity
o
n
th
e
s
p
an
o
f
th
e
tu
r
b
in
e
b
la
d
es
-
v
alu
e
o
f
th
e
f
ix
ed
r
ate:
(
a)
1
2
0
m
-
1
0
0
%
,
(
b
)
1
4
0
m
-
1
2
0
%
,
(
c)
5
0
m
-
40%
,
a
n
d
(
d
)
1
2
0
m
-
1
1
0
%
Evaluation Warning : The document was created with Spire.PDF for Python.
I
SS
N
:
2
2
5
2
-
8
7
9
2
I
n
t J Ap
p
l Po
wer
E
n
g
,
Vo
l.
1
5
,
No
.
1
,
Ma
r
ch
20
2
6
:
37
-
4
5
42
T
h
e
m
ain
r
esu
lt
o
f
th
e
s
et
o
f
m
ea
s
u
r
es
f
o
r
en
v
ir
o
n
m
en
tal
r
eg
u
latio
n
in
a
s
m
ar
t
city
is
u
lt
im
ately
th
e
im
p
r
o
v
em
e
n
t
o
f
th
e
u
r
b
an
ec
o
lo
g
ical
en
v
ir
o
n
m
en
t
,
in
c
r
ea
s
in
g
th
e
ac
cu
r
ac
y
an
d
r
eliab
ilit
y
o
f
ass
ess
m
en
ts
o
f
th
e
s
tate
o
f
th
e
en
v
ir
o
n
m
e
n
tal
s
itu
atio
n
th
r
o
u
g
h
th
e
u
s
e
o
f
d
ig
ital
tech
n
o
lo
g
ies
,
r
ed
u
cin
g
d
am
ag
e
f
r
o
m
n
eg
ativ
e
im
p
ac
ts
o
n
t
h
e
en
v
ir
o
n
m
en
t
,
an
d
ad
ap
tin
g
th
e
city
to
clim
ate
ch
a
n
g
e.
R
en
ewa
b
le
en
er
g
y
h
as
m
an
y
b
en
ef
its
an
d
s
ig
n
if
ican
t
im
p
a
cts
o
n
th
e
ec
o
n
o
m
y
,
en
v
i
r
o
n
m
en
t,
n
atio
n
al
s
ec
u
r
ity
,
a
n
d
h
u
m
an
h
ea
lt
h
.
W
in
d
en
er
g
y
is
co
n
s
id
er
e
d
th
e
lar
g
est
s
o
u
r
ce
o
f
r
en
ewa
b
le
elec
tr
icity
.
On
s
h
o
r
e
an
d
o
f
f
s
h
o
r
e
win
d
f
ar
m
s
p
r
o
d
u
ce
elec
tr
icity
b
y
tu
r
n
in
g
th
e
b
lad
es
o
f
win
d
tu
r
b
in
es.
T
h
e
tu
r
b
in
es
co
n
v
er
t
th
e
k
i
n
etic
en
er
g
y
o
f
th
e
r
o
tatin
g
b
lad
es
in
to
elec
tr
ical
en
er
g
y
b
y
tu
r
n
in
g
a
d
r
iv
e
s
h
af
t
an
d
g
e
ar
b
o
x
co
n
n
ec
ted
to
a
g
e
n
er
ato
r
.
T
h
e
elec
tr
icity
is
co
n
v
er
ted
to
a
h
ig
h
er
v
o
ltag
e
an
d
f
ed
i
n
to
th
e
n
atio
n
al
g
r
id
.
Ad
v
a
n
tag
es
o
f
win
d
en
er
g
y
f
o
r
Ab
s
h
er
o
n
:
r
en
ewa
b
le
en
er
g
y
s
o
u
r
ce
,
lo
w
o
p
er
atin
g
c
o
s
ts
,
lo
w
in
itial
co
s
t
f
o
r
en
e
r
g
y
p
r
o
d
u
ctio
n
,
an
d
en
v
i
r
o
n
m
e
n
tally
f
r
ien
d
ly
tech
n
o
l
o
g
y
.
Po
s
s
ib
ilit
y
o
f
p
lace
m
e
n
t
o
n
wastelan
d
s
an
d
p
o
llu
ted
ar
ea
s
,
an
d
r
ed
u
ctio
n
o
f
u
n
em
p
lo
y
m
en
t.
T
h
e
ab
s
en
ce
o
r
s
ig
n
if
ican
t
r
e
d
u
ctio
n
o
f
p
o
l
lu
tan
t
em
is
s
io
n
s
co
m
p
ar
ed
to
b
u
r
n
in
g
f
o
s
s
il
f
u
els
is
o
n
e
o
f
th
e
m
o
s
t
im
p
o
r
tan
t
a
d
v
an
tag
es
o
f
clea
n
en
er
g
y
.
T
h
e
em
is
s
io
n
s
o
f
all
k
in
d
s
o
f
g
r
e
en
h
o
u
s
e
g
ases
an
d
d
u
s
t
f
r
o
m
b
u
r
n
in
g
o
il
an
d
c
o
al
h
av
e
s
o
m
an
y
c
o
n
s
eq
u
e
n
ce
s
th
at
it
is
r
ea
lly
d
if
f
icu
lt
to
lis
t
th
em
all.
Dis
ad
v
an
tag
es:
i)
h
ig
h
c
o
s
t
o
f
co
n
s
tr
u
ctio
n
an
d
m
ain
te
n
an
c
e,
ii)
d
is
f
ig
u
r
es
th
e
la
n
d
s
ca
p
e,
to
r
e
p
lace
a
lar
g
e
co
n
v
en
tio
n
al
p
o
wer
s
tatio
n
will
r
eq
u
i
r
e
th
e
u
s
e
o
f
s
ev
er
al
win
d
m
ills
,
iii)
o
cc
u
p
ies
v
ast
ar
ea
s
lo
s
t
t
o
ag
r
icu
ltu
r
e,
iv
)
tu
r
b
in
e
n
o
is
e,
v
)
d
ep
en
d
en
ce
o
n
th
e
win
d
,
an
d
v
i)
t
h
ey
in
ter
f
e
r
e
with
th
e
r
ec
ep
tio
n
o
f
r
a
d
io
wav
es.
A
win
d
p
o
we
r
p
lan
t
p
r
o
d
u
ce
s
elec
tr
icity
f
r
o
m
win
d
en
er
g
y
u
s
in
g
a
win
d
tu
r
b
in
e
co
n
n
ec
ted
to
an
elec
tr
ic
g
en
er
ato
r
.
E
lectr
icity
f
r
o
m
win
d
is
en
v
ir
o
n
m
en
tally
f
r
ien
d
ly
b
ec
a
u
s
e
its
p
r
o
d
u
ctio
n
d
o
es
n
o
t
in
v
o
lv
e
th
e
b
u
r
n
in
g
o
f
an
y
f
u
el.
A
lar
g
e
co
n
v
en
tio
n
al
p
o
wer
p
lan
t
h
a
s
a
ca
p
ac
ity
o
f
ab
o
u
t
1
,
0
0
0
M
W
;
to
r
ep
lace
it
,
up
to
1
,
0
0
0
s
u
ch
win
d
tu
r
b
i
n
es
wo
u
ld
b
e
n
ee
d
ed
.
I
n
s
o
m
e
c
o
u
n
tr
ies,
win
d
p
o
wer
p
lan
ts
ar
e
b
ein
g
b
u
ilt
th
at
co
n
s
is
t
o
f
m
a
n
y
tu
r
b
in
es
lo
c
ated
clo
s
e
to
ea
ch
o
th
er
.
I
t
s
h
o
u
ld
b
e
r
ec
o
g
n
ized
,
h
o
we
v
e
r
,
th
at
s
m
all
s
in
g
le
tu
r
b
in
es
ar
e
an
ex
ce
llen
t
s
o
u
r
ce
o
f
en
e
r
g
y
in
p
lace
s
r
e
m
o
te
f
r
o
m
th
e
ce
n
ter
s
o
f
ci
v
ilizatio
n
,
wh
e
r
e
th
e
r
e
is
n
o
co
n
n
ec
tio
n
to
th
e
n
atio
n
al
p
o
wer
g
r
id
.
T
h
er
e
is
g
r
ea
t
p
o
t
en
tial
f
o
r
in
cr
ea
s
in
g
elec
tr
icity
p
r
o
d
u
ctio
n
f
r
o
m
r
en
ewa
b
le
en
e
r
g
y
s
o
u
r
ce
s
b
o
t
h
in
Aze
r
b
aijan
an
d
in
th
e
wo
r
ld
,
an
d
tar
g
ete
d
u
s
e
o
f
th
is
p
o
ten
tial
ca
n
p
lay
an
im
p
o
r
tan
t r
o
le
in
th
e
s
u
s
tain
ab
le
s
u
p
p
ly
o
f
elec
tr
icity
to
co
u
n
tr
ies.
4.
CO
NCLU
SI
O
N
T
h
e
aim
o
f
th
e
wo
r
k
is
to
s
y
s
tem
atize
s
tu
d
y
an
d
an
al
y
ze
in
f
o
r
m
atio
n
o
n
o
b
tain
in
g
b
i
o
g
as
f
r
o
m
p
lan
t
m
ater
ials
,
in
p
ar
ticu
lar
f
r
o
m
a
ctiv
ated
s
lu
d
g
e.
T
h
e
p
r
o
ce
s
s
o
f
o
b
tain
in
g
b
io
g
as
b
ased
o
n
th
e
d
ec
o
m
p
o
s
itio
n
o
f
an
o
r
g
a
n
ic
s
u
b
s
tr
ate.
T
h
e
p
r
o
ce
s
s
o
f
an
ae
r
o
b
ic
d
ec
o
m
p
o
s
itio
n
is
p
r
esen
ted
in
th
e
f
o
r
m
o
f
a
d
iag
r
am
.
I
t
is
im
p
o
r
tan
t
to
n
o
te
th
at
all
s
tag
es
o
f
b
io
g
as
f
o
r
m
atio
n
s
h
o
u
ld
b
e
m
ax
im
ally
ad
a
p
ted
to
ea
c
h
o
th
er
to
e
n
s
u
r
e
th
e
co
n
tin
u
ity
o
f
th
e
p
r
o
ce
s
s
.
C
o
o
k
in
g
th
r
ee
m
ea
ls
a
d
a
y
f
o
r
a
f
am
ily
o
f
f
o
u
r
will
r
eq
u
ir
e
3
.
7
m
3
o
f
b
io
g
as,
a
n
d
h
ea
tin
g
a
1
0
0
m
2
r
o
o
m
will
r
eq
u
ir
e
2
1
m
3
o
f
b
io
g
as
p
er
d
a
y
.
T
h
e
tu
r
b
in
e
r
o
to
r
d
iam
eter
u
s
ed
in
th
e
s
tu
d
y
was
esti
m
ated
as
1
1
5
m
an
d
th
e
h
u
b
h
eig
h
t
was
1
0
0
m
,
tak
in
g
in
to
ac
co
u
n
t
th
e
in
s
talled
win
d
tu
r
b
in
es
in
Aze
r
b
aijan
an
d
th
e
cu
r
r
e
n
t w
in
d
tu
r
b
in
e
tech
n
o
lo
g
y
.
I
n
o
r
d
e
r
n
o
t to
a
d
o
p
t a
b
r
an
d
-
s
p
ec
if
ic
an
d
m
o
d
el
-
s
p
ec
if
ic
ap
p
r
o
ac
h
,
n
o
tu
r
b
in
e
m
o
d
el
o
f
an
y
b
r
a
n
d
was
tak
en
as
a
r
ef
er
en
ce
.
T
h
e
a
p
p
r
o
ac
h
u
s
ed
i
n
th
is
s
tu
d
y
ca
n
b
e
ap
p
lied
tak
i
n
g
in
to
ac
c
o
u
n
t
d
if
f
er
en
t
h
u
b
h
eig
h
ts
an
d
p
r
e
-
d
ef
in
ed
tu
r
b
i
n
e
s
p
ec
if
icatio
n
s
.
T
h
e
p
r
o
b
lem
s
th
at
win
d
f
ar
m
o
wn
er
s
m
ay
en
co
u
n
ter
tech
n
ically
,
s
u
ch
as
in
co
r
r
ec
t
ca
lcu
latio
n
o
f
th
e
p
o
wer
f
ac
to
r
f
o
r
th
e
tu
r
b
in
e,
wh
ich
m
a
y
lead
to
m
ain
ten
an
ce
co
s
ts
in
th
e
f
u
tu
r
e.
T
h
er
ef
o
r
e
,
m
o
r
e
s
u
itab
le
r
esu
lts
ca
n
b
e
o
b
tain
ed
if
th
e
ap
p
r
o
ac
h
to
d
ete
r
m
in
i
n
g
th
e
win
d
en
er
g
y
p
o
ten
tia
l
in
th
is
s
tu
d
y
is
r
e
-
ap
p
lied
to
p
r
o
jects
to
b
e
im
p
lem
en
ted
in
s
m
aller
ar
ea
s
ac
co
r
d
in
g
to
a
s
p
ec
if
ic
tu
r
b
in
e
ty
p
e,
ta
k
in
g
in
t
o
ac
co
u
n
t
m
eteo
r
o
l
o
g
ical
co
n
d
itio
n
s
.
ACK
NO
WL
E
DG
M
E
N
T
S
T
h
e
au
th
o
r
s
ex
p
r
ess
g
r
atitu
d
e
f
o
r
th
e
s
u
p
p
o
r
t
o
f
th
e
s
cien
ti
f
ic
an
d
tech
n
o
l
o
g
ical
r
esear
c
h
p
r
o
ject
t
o
th
e
Min
is
tr
y
o
f
Scien
ce
a
n
d
E
d
u
ca
tio
n
o
f
Aze
r
b
aijan
R
ep
u
b
lic
,
B
ak
u
State
Un
iv
er
s
ity
,
an
d
th
e
C
en
ter
f
o
r
Or
g
an
izatio
n
o
f
L
ab
o
r
ato
r
y
W
o
r
k
in
Aze
r
b
aijan
State
Un
iv
er
s
ity
o
f
E
co
n
o
m
ics.
F
UNDING
I
NF
O
R
M
A
T
I
O
N
Au
th
o
r
s
s
tate
n
o
f
u
n
d
in
g
in
v
o
lv
ed
.
AUTHO
R
CO
NT
RI
B
UT
I
O
NS ST
A
T
E
M
E
N
T
T
h
is
jo
u
r
n
al
u
s
es
th
e
C
o
n
t
r
ib
u
to
r
R
o
les
T
a
x
o
n
o
m
y
(
C
R
ed
iT
)
to
r
ec
o
g
n
ize
in
d
iv
i
d
u
al
au
th
o
r
co
n
tr
ib
u
tio
n
s
,
r
ed
u
ce
au
th
o
r
s
h
ip
d
is
p
u
tes,
an
d
f
ac
ilit
ate
co
llab
o
r
atio
n
.
Evaluation Warning : The document was created with Spire.PDF for Python.
I
n
t J Ap
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l Po
wer
E
n
g
I
SS
N:
2252
-
8
7
9
2
C
u
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en
t sta
te
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f p
r
o
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u
ctio
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lter
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A
b
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ero
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P
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in
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(
R
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43
Na
m
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Aut
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at
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Mu
h
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C
:
C
o
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th
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DATA AV
AI
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L
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e
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p
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th
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r
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th
o
r
,
[
T
HA]
,
u
p
o
n
r
ea
s
o
n
ab
le
r
eq
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est.
RE
F
E
R
E
NC
E
S
[
1
]
C
.
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j
o
a
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.
C
.
W
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Evaluation Warning : The document was created with Spire.PDF for Python.