Combined heating, cooling, and power is also known as Tri-generation. Tri-generation system can provide power, hot water, space heating and air -conditioning from single source of energy. The objective of this study is to propose a method to evaluate the characteristic and performance of a single stage lithium bromide-water (LiBr-H2O) absorption machine operated with waste thermal energy of internal combustion engine which is integral part of trigeneration system. Correlations for computer sensitivity analysis are developed in data fit software for (P-T-X), (H-T-X), saturated liquid (water), saturated vapor, saturation pressure and crystallization temperature curve of LiBr-H2O Solution. Number of equations were developed with data fit software and exported into excel work sheet for the evaluation of number of parameter concerned with the performance of vapor absorption machine such as co-efficient of performance, concentration of solution, mass flow rate, size of heat exchangers of the unit in relation to the generator, condenser, absorber and evaporator temperatures. Size of vapor absorption machine within its crystallization limits for cooling and heating by waste energy recovered from exhaust gas, and jacket water of internal combustion engine also presented in this study to save the time and cost for the facilities managers who are interested to utilize the waste thermal energy of their buildings or premises for heating and air conditioning applications.

1.
H.
Cho
.,
A.D.
Smith
and
P.
Mago
.
Appl Energ
,
136
,
168
185
(
2014
).
2.
G.A.
Florides
.,
S.A.
Kalogirous
.,
S.A.
Tassoi
and
L.C.
Wrobel
.
Energy Conversion and management
,
44
(
15
),
2483
2508
(
2003
).
3.
S.
Kaushik
and
S.
Singh
.
International Journal for Research in Applied Science and Engineering Technology (IJRASET)
,
2
,
2321
9653
(
2014
).
4.
W.W.
Pulkrabek
.
Engineering Fundamentals of the Internal combustion Engine
.
New Jersy
:
Pearson Education
,
10
(
1
),
313
314
(
1997
).
5.
D.
Medved
, “Trigeneration units. Intensive Programme” (
Renewable Energy Sources
,
2011
).
6.
J.P.
Praenea
.,
O.
Marc
.,
H.
Ennamiri
and
H.T.
Rakotondramiarana
. “
Sensitivity analysis to optimize a solar absorption cooling system
” (
ISES Solar World Congress, Energy Procedia
),
57
,
2636
2645
(
2013
).
7.
W.F.
Stoecker
and
J.W.
Jones
. “
Referigeration & Air Conditioning
” (
1982
).
8.
S.R.
Turns
. “
An I ntroduction to combustion: concept and applications
” (
1999
).
9.
D.
Micallef
and
C.
Micallef
.
Int. j. simul model
2
,
86
97
(
2010
).
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