Ai-Driven Cooling Technologies for High-Performance Data Centers: State-of-The-Art Review and Future Directions
Dlzar Al Kez,
No information about this author
Aoife Foley,
No information about this author
Fadhli Wong B. M. Hasan Wong
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et al.
Published: Jan. 1, 2025
Language: Английский
Reinforcement learning for data center energy efficiency optimization: A systematic literature review and research roadmap
Applied Energy,
Journal Year:
2025,
Volume and Issue:
389, P. 125734 - 125734
Published: March 26, 2025
Language: Английский
Establishment and validation of a novel composite index for energy efficiency evaluation of data center chilled water systems based on AHP and Entropy Weight Method
Chengliang Xu,
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Chen Xu,
No information about this author
Lei Zhan
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et al.
Energy and Buildings,
Journal Year:
2025,
Volume and Issue:
unknown, P. 115677 - 115677
Published: April 1, 2025
Language: Английский
Considering Carbon–Hydrogen Coupled Integrated Energy Systems: A Pathway to Sustainable Energy Transition in China Under Uncertainty
A. Lu,
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Jianguo Zhou,
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Minglei Qin
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et al.
Sustainability,
Journal Year:
2024,
Volume and Issue:
16(21), P. 9256 - 9256
Published: Oct. 24, 2024
The
low-carbon
construction
of
integrated
energy
systems
is
a
crucial
path
to
achieving
dual
carbon
goals,
with
the
power-generation
side
having
greatest
potential
for
emissions
reduction
and
most
direct
means
reduction,
which
current
research
focus.
However,
existing
studies
lack
precise
modeling
capture
devices
cascaded
utilization
hydrogen
energy.
Therefore,
this
paper
establishes
power
plant
model
based
on
comprehensive,
flexible
operational
mode
coupled
two-stage
P2G
(Power-to-Gas)
device,
exploring
“energy
time-shift”
characteristics
system.
IGDT
(Information
Gap
Decision
Theory)
used
discuss
impact
uncertainties
generation
results
show
that
by
promoting
consumption
clean
utilizing
high
efficiency
while
reducing
reliance
fossil
fuels,
proposed
system
not
only
meets
demands
but
also
achieves
more
efficient
emission
laying
solid
foundation
sustainable
future.
By
considering
uncertainties,
ensures
resilience
adaptability
under
fluctuating
renewable
supply
conditions,
making
significant
contribution
field
transition.
Language: Английский
SISTEMAS DE REFRIGERAÇÃO EM COMPUTADORES: DESAFIOS E PERSPECTIVAS PARA O FUTURO
Bruna Daiane Mota dos Santos,
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E. Nascimento
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Revista Contemporânea,
Journal Year:
2024,
Volume and Issue:
4(11), P. e6764 - e6764
Published: Nov. 29, 2024
O
artigo
analisa
os
desafios
e
as
perspectivas
futuras
dos
sistemas
de
refrigeração
em
computadores,
destacando
a
relevância
fundamental
da
dissipação
térmica
para
preservar
eficiência,
o
desempenho
longevidade
componentes
eletrônicos.
Com
avanço
contínuo
das
capacidades
processamento
crescente
densidade
circuitos
integrados,
métodos
tradicionais
refrigeração,
como
ar,
têm
se
mostrado
cada
vez
mais
insuficientes
atender
às
demandas
térmicas
impostas
pelos
modernos
alto
desempenho.
Esse
cenário
motiva
desenvolvimento
soluções
sofisticadas,
incluindo
líquida,
por
imersão,
termoelétrica
(Peltier)
evaporativos.
estudo
compara
vantagens
limitações
uma
dessas
tecnologias,
abordando
aspectos
eficiência
térmica,
custos
implementação
manutenção,
sustentabilidade
níveis
ruído.
Destacam-se
especialmente
aplicações
ambientes
alta
demanda
computacional,
data
centers
instalações
servidores.
Conclui-se
que
futuro
computadores
dependerá
inovações
combinem
ambiental
viabilidade
econômica,
atendendo
crescentes
responsabilidade
ecológica.