An absorber is a major component in the absorption refrigeration systems, and its performance remarkably affects the overall system performance. A mathematical model for ammonia absorption from a bubble expanding at a submerged nozzle into a binary nanofluid was developed to analyze the effects of binary nanofluid on ammonia absorption in the forming process of a bubble. The combined effects of nanoparticles on heat transfer, mass transfer, and bubble size all were considered in the model. The concentration of nanoparticles, the radius of the nozzle, and the flow rate of ammonia vapor were considered as the key parameters. The numerical results showed that the enhancement of binary nanofluid for bubble absorption has the analogous tendency with the mass transfer enhancement of binary nanofluid. The diameter of the nozzle and the flow rate of ammonia vapor hardly affect the enhancement of the binary nanofluid for the absorption of bubble growing stage. The current investigation can result in a better understanding of the absorption process occurring in thermally driven absorption refrigeration systems.

References

1.
Kang
,
Y. T.
,
Akisawa
,
A.
, and
Kashiwagi
,
T.
,
2000
, “
Analytical Investigation of Two Different Absorption Modes: Falling Film and Bubble Types
,”
Int. J. Refrig.
,
23
(
6
), pp.
430
443
.10.1016/S0140-7007(99)00075-4
2.
Choi
,
U. S.
,
1995
, “
Enhancing Thermal Conductivity of Fluids With Nanoparticles
,”
Development and Application of Non-Newtonian Flows
,
D. A.
Singer
, and
H. P.
Wang
, eds.,
ASME
,
New York
.
3.
Kabelac
,
S.
, and
Kuhuke
,
J. F.
,
2006
, “
Heat Transfer Mechanism in Nanofluids-Experimental and Theory
,”
Proceedings of the 13th International Heat Transfer Conference
,
Sydney, Australia
, Aug. 13–18.
4.
Keblinski
,
P.
,
Eastman
,
J. A.
, and
Cahill
,
D. G.
,
2005
, “
Nanofluids for Thermal Transport
,”
Mater. Today
,
8
(
6
), pp.
36
44
.10.1016/S1369-7021(05)70936-6
5.
Das
,
S. K.
,
Choi
,
U. S.
, and
Patel
,
H. E.
,
2006
, “
Heat Transfer in Nanofluids-A Review
,”
Heat Transfer Eng.
,
27
(
10
), pp.
3
19
.10.1080/01457630600904593
6.
Choi
,
U. S.
,
2007
, “
Novel Thermal Transport Phenomena in Nanofluids
,”
The 18th International Symposium on Transport Phenomena
, Daejeon, Korea, Aug. 27–30, pp.
182
191
.
7.
Krishnamurthy
,
S.
,
Bhattacharya
,
P.
,
Phelan
,
P. E.
, and
Prasher
,
R. S.
,
2006
, “
Enhanced Mass Transport in Nanofluids
,”
Nano Lett.
,
6
(
3
), pp.
419
423
.10.1021/nl0522532
8.
Kim
,
J. K.
,
Jung
,
J. Y.
, and
Kang
,
Y. T.
,
2006
, “
The Effect of Nano-Particles on the Bubble Absorption Performance in a Binary Nanofluid
,”
Int. J. Refrig.
,
29
(
1
), pp.
22
29
.10.1016/j.ijrefrig.2005.08.006
9.
Kang
,
Y. T.
,
Kim
,
H. J.
, and
Lee
,
K. I.
,
2008
, “
Heat and Mass Transfer Enhancement of Binary Nanofluids for H2O\LiBr Falling Film Absorption Process
,”
Int. J. Refrig.
,
31
(
5
), pp.
22
29
.10.1016/j.ijrefrig.2007.10.008
10.
Lee
,
J. K.
,
Koo
,
J.
,
Hong
,
H.
, and
Kang
,
Y. T.
,
2010
, “
The Effects of Nanoparticles on Absorption Heat and Mass Transfer Performance in NH3/H2O Binary Nanofluids
,”
Int. J. Refrig.
,
33
(
2
), pp.
269
275
.10.1016/j.ijrefrig.2009.10.004
11.
Ma
,
X. H.
,
Su
,
F. M.
,
Chen
,
J. B.
, and
Zhang
,
Y.
,
2007
, “
Heat and Mass Transfer Enhancement of the Bubble Absorption for a Binary Nanofluid
,”
J. Mech. Sci. Technol.
,
21
(
11
), pp.
1338
1343
.10.1007/BF03177437
12.
Kim
,
J. K.
,
Akisawa
,
A.
,
Kashiwagi
,
T.
, and
Kang
,
Y. T.
,
2007
, “
Numerical Design of Ammonia Bubble Absorber Applying Binary Nanofluids and Surfactants
,”
Int. J. Refrig.
,
30
(
6
), pp.
1086
1096
.10.1016/j.ijrefrig.2006.12.011
13.
Lee
,
J. C.
,
Lee
,
K. B.
,
Chun
,
B. H.
,
Lee
,
C. H.
,
Ha
,
J. J.
, and
Kim
,
S. H.
,
2003
, “
A Study on Numerical Simulations and Experiments for Mass Transfer in Bubble Mode Absorber of Ammonia and Water
,”
Int. J. Refrig.
,
26
(
5
), pp.
551
558
.10.1016/S0140-7007(03)00002-1
14.
Dai
,
G. C.
, and
Chen
,
M. H.
,
1988
,
Hydrodynamics in Chemical Engineering
,
Chemical Industry Press
,
Beijing, China
.
15.
Higbie
,
R.
,
1935
,
The Rate of Absorption of a Pure Gas Into Still Liquid During Short Periods of Exposure
, Vol. 31,
American Institute of Chemical Engineers
, pp.
365
389
.
16.
Eckert
,
E. R. G.
, and
Drahe
,
R. M.
,
1987
,
Analysis of Heat and Mass Transfer
,
Hemisphere Publishing Corporation
, New York, p.
203
.
17.
Rizvi
,
S. S. H.
, and
Hdidemann
,
R. A.
,
1987
, “
Vapor-Liquid Equilibria in the Ammonia-Water System
,”
J. Chem. Eng. Data
,
32
(
2
), pp.
183
191
.10.1021/je00048a017
18.
Ma
,
X. H.
,
Su
,
F. M.
,
Chen
,
J. B.
,
Bai
,
T.
, and
Han
,
Z. X.
,
2009
, “
Enhancement of Bubble Absorption Process Using a CNTs-NH3 Binary Nanofluid
,”
Int. Commun. Heat Mass
,
36
(
7
), pp.
657
660
.10.1016/j.icheatmasstransfer.2009.02.016
19.
Su
,
F. M.
,
Ma
,
X. H.
, and
Lan
,
Z.
,
2011
, “
The Effect of Carbon Nanotubes on the Physical Properties of a Binary Nanofluids
,”
J. Taiwan Inst. Chem. Eng.
,
42
(
2
), pp.
252
257
.10.1016/j.jtice.2010.06.005
20.
Su
,
F. M.
,
Ma
,
X. H.
, and
Chen
,
J. B.
,
2009
, “
Effect of Nanoparticles on Forming Process of Bubbles in a Nanofluid
,”
Proceedings of the ASME 2nd Micro/Nanoscale Heat & Mass Transfer International Conference
, Shanghai, China, Dec. 18–21, pp.
425
430
.
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