2022
DOI: 10.1007/s00158-022-03315-9
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An integrated two-step strategy for an optimal design of liquid-cooled channel layout based on the MMC–density approach

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Cited by 6 publications
(3 citation statements)
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“…Under different Reno numbers, the two-inlet and two-outlet designs obtained different flow path topology results. Pan et al [94] innovated in liquid cooling channel design using the Moving Morphable Component (MMC) method, which first generates an intermediate layout, then refines it to smooth channel boundaries and preserve characteristic scales, improving liquid cooling efficiency (Figure 7a).…”
Section: Topology Optimization Of Fluid Cooling Channelmentioning
confidence: 99%
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“…Under different Reno numbers, the two-inlet and two-outlet designs obtained different flow path topology results. Pan et al [94] innovated in liquid cooling channel design using the Moving Morphable Component (MMC) method, which first generates an intermediate layout, then refines it to smooth channel boundaries and preserve characteristic scales, improving liquid cooling efficiency (Figure 7a).…”
Section: Topology Optimization Of Fluid Cooling Channelmentioning
confidence: 99%
“…Wang et al [97] combined energy conservation with enhanced heat dissipation in their topology optimization, significantly improving the overall performance of cooling structures. [98] This design methodology [94] Copyright 2022,Springer Nature. b) Topology optimization for the design of liquid-cooled microchannel heat Sinks.…”
Section: Topology Optimization Of Fluid Cooling Channelmentioning
confidence: 99%
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