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integration of solid oxide fuel cells and ... - Ea Energianalyse

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Subscripts<br />

Subscripts<br />

Subscript<br />

2P<br />

air<br />

ABS<br />

amb<br />

ano<br />

av<br />

c<br />

cat<br />

cell<br />

chill<br />

chk<br />

el<br />

g<br />

h<br />

HW<br />

i<br />

inver t<br />

i s<br />

mp<br />

o<br />

over all<br />

r<br />

re f<br />

s<br />

sat<br />

SC<br />

SH<br />

ss<br />

st ack<br />

tr ans<br />

w<br />

ws<br />

Description<br />

two Phase<br />

atmospheric air<br />

Absorption cycle<br />

ambient<br />

anode<br />

average<br />

cold side <strong>of</strong> heat exchanger<br />

cathode<br />

cell, SOFC<br />

chilling fluid<br />

checking state: sub cooled OR two phase<br />

electric<br />

gas<br />

hot side <strong>of</strong> heat exchanger<br />

Hot Water<br />

in<br />

inverter (DC to AC)<br />

isentropic process<br />

mid point (in heat exchangers)<br />

out<br />

the entire system<br />

refrigerant<br />

reference<br />

solution <strong>of</strong> LiBr<br />

saturated<br />

Sub Cooled<br />

Super Heated<br />

strong solution <strong>of</strong> LiBr<br />

SOFC stack <strong>of</strong> n <strong>cells</strong><br />

transfer<br />

water<br />

weak solution <strong>of</strong> LiBr<br />

xxv

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