Download Bakers Pride Universal Warmer UW-17 Specifications

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University
of
Washington
Climate
Action
Plan
chilled
water
consumed
over
time,
together
with
corresponding
estimates
of
greenhouse
gases
generated.
The
database
could
be
used
for
setting
building‐
by‐building
energy
use
goals
driving
behavioral
changes
and
targeting
buildings
in
need
of
additional,
technology‐based
approaches.
The
Bothell
campus
consists
of
relatively
new
construction
and
features
modern
metering
infrastructure,
making
it
a
candidate
for
early
implementation
of
an
electronic
dashboard
system,
perhaps
as
a
test
bed
for
the
much
larger
project
of
monitoring
the
Seattle
campus.
Proposed
Actions:
Create
baseline
energy
and
water
use
information
for
all
buildings
on
all
three
campuses.
Provide
additional
metering
with
online
capa‐
bilities
as
appropriate.
Monitor
building
performance
and
use
information
to
identify
energy
conservation
opportunities.
4.1.4 Strategy:
Central
Energy
Supply
Technology
Shift
While
Strategy
4.1.1
offers
some
modest
to
moderate
reductions
to
fuel
con‐
sumption
at
the
Seattle
campus
central
utility
plant,
much
larger
changes
in
GHG‐intensive
fuel
consumption
can
be
achieved
with
capital‐intensive
projects
that
would
function
as
part
of
a
long‐term
strategy.
In
some
of
the
strategies,
system
efficiency
considerations
might
suggest
that
the
UW
build
a
combined
heat
and
power
plant
large
enough
to
generate
all
of
the
campus’
electric
needs,
perhaps
making
the
UW
a
net
exporter
of
electricity,
heat
or
both.
Candidate
projects
include:
switch to renewable
fuels
•
Switching
to
renewable
energy.
An
example
of
this
would
be
replacing
the
natural
gas
fired
boilers
with
electric
boilers
contractually
coupled
to
a
new
source
of
renewable
electricity.
Alternatively,
the
natural
gas
could
be
re‐
placed
with
a
liquid
or
gaseous
fuel
produced
from
renewable
resources
(i.e.,
bio‐fuel),
though
this
solution
requires
a
cautious
evaluation
of
the
true
life‐
cycle
GHG
savings
of
the
bio‐fuel.
•
Carbon
capture
and
storage.
This
approach
involves
separating
CO2
from
the
central
utility
plant’s
exhaust
stream
and
injecting
it
in
a
geological
reservoir
for
permanent
storage
or
(less
likely)
converting
it
to
a
solid
form
such
as
cal‐
cium
carbonate.
capture and
store carbon
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