supported in part by the National Key Research and Development Program of China under Grant 2023YFB4707000,in part by the National Natural Science Foundation of China under Grant U24A20282,Grant U24A20281,Grant U23A20343,Grant U23B2038;in part by the Youth Innovation Promotion Association CAS under Grant Y2022053;in part by Beijing Natural Science Foundation under Grant 4222055。
The propulsion mechanisms of biomimetic underwater vehicles using bionic undulatory fins have been extensively studied for their potential to enhance efficiency and maneuverability in underwater environments.However,t...
A distinguished category of operational fluids,known as hybrid nanofluids,occupies a prominent role among various fluid types owing to its superior heat transfer properties.By employing a dovetail fin profile,this wor...
The current study generally aims to improve heat transfer in heat sinks by presenting a numerical analysis of natural convection of an enclosure with hot right and cool left walls,and thermally insulated top and botto...
supported by the National Key R&D Program of China(No.2022YFB3504701),the Open Project and Independent Research Project of State Key Laboratory of Advanced Spe-cial Steel,Shanghai Key Laboratory of Advanced Ferrometallurgy,Shanghai University(SKLASS 2023-01,SKLASS 2023-Z02);the Science and Technology Commission of Shanghai Municipality(No.20511107700).
Solid-state hydrogen storage tanks are key equipment for fuel cell vehicles and hydrogen storage.How-ever,the low heat transfer properties of hydrogen storage tanks result in the inability to meet the hy-drogen supply...
supported by the National Natural Science Foundation of China(No.51766012);the Inner Mongolia Science and Technology Major Project(No.2020ZD0017);the Science and Technology Research Project of Inner Mongolia Autonomous Region(No.2021GG0252);the Basic research business fund projects for Universities directly under the Inner Mongolia Autonomous Region(No.JY20220107)。
The heat transfer efficiency of a thermal energy storage unit(TESU)can be improved by the addition of novel longitudinal fins.A series of TESUs are analyzed using the finite volume method(FVM)to determine the effect o...
co-sponsored by the National Natural Science Foundation of China(No.52208103);Fundamental Research Funds for the Central Universities(No.JZ2024HGTB0229);Opening Fund of Anhui Province Key Laboratory of Intelligent Building&Building Energy Saving(No.IBES2024KF05,IBES2024ZR03);Anhui Province University Outstanding Scientific Research and Innovation Team(No.2022AH010021);Scientific Research and Cultivation Project of Anhui Jianzhu University(No.2021XMK04).
Thermally activated building envelopes(TABEs)are multifunctional component that combines structural and energy properties.Based on re-examining the heat charging processes,an arc-shaped metal-fin-enhanced TABE(Arc-fin...