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

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NOMENCLATURE<br />

Latin Symbols<br />

Symbol Unit Description<br />

A<br />

[<br />

m<br />

2 ] Area<br />

ASR [Ωm] Area Specific Resistance<br />

[<br />

Ċ<br />

kW<br />

]<br />

Heat capacity flow rate<br />

K<br />

COP<br />

[<br />

[−]<br />

] Coefficient Of Performance<br />

C kJ<br />

p<br />

heat Capacity, constant pressure<br />

kgK<br />

F R [−] Fraction <strong>of</strong> gas Reformed in prereformer<br />

FW [−] Fraction <strong>of</strong> gas in Water gas shift reaction<br />

PF [−] Mass flow ratio <strong>of</strong> the weak solution <strong>and</strong> the refrigerant<br />

h<br />

[<br />

kJ<br />

kg<br />

]<br />

mass specific enthalpy<br />

Ḣ [kW] enthalpy flow rate<br />

I [A] current<br />

i d<br />

[<br />

A<br />

m 2 ]<br />

current density<br />

K W GS [−] reaction constant for Water Gas Shift<br />

LG r atio [<br />

[−]<br />

] Liquid-Gas ratio<br />

kg<br />

ṁ<br />

s<br />

mass flow rate<br />

n [−] number<br />

[<br />

ṅ<br />

kmol<br />

]<br />

mole flow rate<br />

s<br />

OC r atio [−] Oxygen-Carbon ratio<br />

p [kPa] pressure<br />

˙Q [kW] heat flow rate<br />

qu<br />

[<br />

[−]<br />

] quality <strong>of</strong> steam in the two phase region<br />

s<br />

kJ<br />

kgK<br />

mass specific entropy<br />

T [ ◦ C] Temperature<br />

U f [<br />

[−]<br />

] <strong>fuel</strong> Utilization factor<br />

v<br />

m 3<br />

mass specific volume<br />

kg<br />

V<br />

[<br />

[V]<br />

] electric potential (voltage)<br />

˙V<br />

m 3<br />

s<br />

volume flow rate<br />

w [−] concentration <strong>of</strong> LiBr in water solution<br />

Ẇ [kW] power<br />

W Q r atio [−] power-heat flow rate ratio<br />

x [−] mass fraction<br />

y [−] mole fraction<br />

xxiv

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