JREE: Vol. XX, No. XX (2014) XX Title must be Times New Romanc

JREE: Vol. XX, No. XX (2014) XX
Research Article
Journal of Renewable Energy and Environment
Journal Homepage: www.jree.ir
Title must be Times New Romanc Bold 16
Authors name must be Times New Roman Bold 10
*
Corresponding Author Email
Authors affiliation must be Italic Times New Roman 10
Article History
Received:
Received in revised form:
Accepted:
Available online:
ABSTRACT
English Abstarct must be Times New Romanc 11
Key words: must be Times New Roman 11
.‫ باشد‬11 ‫ و سايز‬B Lotus
1. Introduction
Papers body must be Times New Romanc 11 in
tow columns and line space during whole paper
is 1 cm.
Also, normal paper size for jree is 6-8 journal
pages. If any paper exceeded more than 10
journal pages, we will take off from production;
never publish it! Unless another reduce the size
of the manuscript.
All sections like introduction, materials method,
results disscotion, conclution and references
must be bold and distinguish with number (1.
Introduction, 2. Materials Method, ...) in
Times New Roman font with 11 size. Also their
subsection must be Capitalize Each Words, bold
and distinguish with number like :
1. 1. Capital Each Word of Title Continue text
*
Corresponding author. Email:
‫چكيده فارسي بايد با فونت‬
1. 2. Capital Each Word of Title Continue text
1. 3. Capital Each Word of Title Continue text
All Equation have a spicial number and
references in body same as Equation (1)
Gi  2lnU i cos(2 U j )
(1)
It is better that write equations with Math Type
software or with Equation of office 2003.
During text body write Table 1 or Figure 1 and
in figure caption write Figure 1. and TABLE
1.
Please send all pictures in .PNG format or .TIFF
also figures with reselousion more than 300 dpi
and less than 600 dpi and without borders, with
capital first letter of axis titeles and write its unit.
JREE: Vol. XX, No. XX (2014) XX
2
TABLE 1. Strouhal number for different geometric
cases
HD
VD=0
VD=1
3
0.198
0.083
5
0.184
0.1
-3
3
x 10
a = 7711.92 km
i = 90 deg
2.5
Frozen orbit
(0.000967,90)
Eccentricity
2
1.5
1
0.5
0
0
50
100
150
200
250
Argument of Perigee (deg)
300
350
Fig. 1. Deposition efficiency on a single square in
channel
LRR Model
Grgric et al. S1b Exp. (2004)
Grgric et al. S1a Exp. (2004)
k-w Model
100
8
Fig. 3. Relation between Time and Distillate output of
solar still having 6 cm thickness
(3rd March, 2012)
Also, your paper's figs must be without background
fill color, no border fig and no border legend, no
vertical line, no horizontal line and better quality for
publishing.
6
DF (%)
References must site during paper with acending
order as [1], [2], [3] , .
Please see published papers by jree and site the
related articles in your article.
4
2
0
0.1
1
Dp (Mm)
1
Fig. 2. Comparison of the present numerical results with
the experimental data for deposition fraction of micro
particles in flow rate of 60 lit/min.
..
And in the end of paper :
1. Authors last name authores first name.
abrrivations, titel of paper, Name of Journal. Year,
00(0), , 00-00.
1. Amiri M. C., Kiani A.,
Jafari T.
Separation of ultra-fine sulphur particles
from NTA dispersion by Aphron
flotation. Int J Eng, 2008, 24(3), 148-153.
2. Tian Y., Zhao C.Y. A review of solar
collectors and thermal energy storage in
solar thermal applications. Appl Energ,
April 2013, 104, 538-553.
JREE: Vol. XX, No. XX (2014) XX
3
3. Wang L., Husar A., Zhou T., Liu H. A
parametric study of PEM fuel cell
performances. Int J Hydrog Energ, 2003,
28(11), 1263-1272.
4. Gleeson L. Inside looking out. Claiming a
place: proceedings form the third national
conference of the Children's Book Council
of Australia, D.W. Thorpe, Port Melbourne.
1996, 22-34.
5. Wheeler M. F., Dawson C. N. An operatorsplitting method for advection-diffusionreaction problems. In: J.A. Whitman
(editor). Academic Press, New York, 1987,
463-483.
If your paper have nomenclature write it in table like below:
NOMENCLATURE
BR
v
S   p / g
Cc
Cunningham correction factor
u
ck
Discrete lattice velocity in direction
(k)
v
Vertical components of velocity (m/s)
cs
Speed of sound in Lattice scale
Ui, Uj
Random numbers between 0 and 1
Particle diameter (µm)
Greek Symbols
fk
Equilibrium distribution function

Density (kg/m3)
g
Gravity( m/s2)

Lattice relaxation time
 p cc (d p )2
p 
18
Particle relaxation time (s)
d
p
eq
t


Particle Specific density
Horizontal components of velocity
(m/s)
Lattice time step
Kinematic viscosity (m2/s)
Gas mean free path (µm)
Subscripts
p
Particle
g
Gas