financially supported by the National Science and Technology Major Project of China(Grant No.2017-Ⅱ-0006-0020);National Key Research and Development Project of China(Grant No.2016YFB0200901);National Natural Science Foundation of China(Grant No.51776154);Shaanxi Key Research and Development Project(Grant No.2018KWZ-01)。
Throughflow design has the advantages of less time consumption and large optimization space,and thus is the corner stone of advanced design system of multi-stage axial-flow compressors.The majority of relevant studies...
As an integral part of the internal air system of aero-engines,the axial throughflow of the cooling air can interact with the cavity flow between the rotating compressor disks,forming a threedimensional,unsteady,and u...
funded through the National Science and Technology Major Project(2017-Ⅲ-0009-0035);National Natural Science Foundation of China(Grant No.52276031)。
This paper presents a novel model for flow angles at off-design conditions.The model is based on energy conservation in turbomachinery.By the mean of average process,statistical properties of the wake profile are rela...
funded by the National Natural Science Foundation of China (Project 51876098);the National Natural Science Foundation of China (Project 51911540475);the National Science and Technology Major Project (2017-Ⅲ-0009-0035)。
This paper presents a novel approach of modeling the air-cooled turbine with CFD-based throughflow analysis. Starting from the basic equations of motion, governing equations and source terms for mass, momentum and ene...
This work is financially supported by the National Key Research and Development Project of China(Grant No.2016YFB0200901);National Natural Science Foundation of China(Grant No.51776154);National Science and Technology Major Project of China(Grant No.2017-II-0006-0020);Shaanxi Key Research and Development Project(Grant No.2018KWZ-01).
Existing aerodynamic design systems for multi-stage axial-flow compressor suffer from several limitations,such as experience dependent models and time costly simulations.Few attempts,however,have been devoted to the r...
the National Key Research and Development Program of China(2019YFA0607000);the National Natural Science Foundation of China(41706210)for Yu Zhang;the U.S.A National Science Foundation(PLR-1603000)for Chang-Sheng Chen;the Innovation Group Project of Southern Marine Science and Engineering Guangdong Laboratory(Zhuhai)(311021009)for Dan-Ya Xu;the National Natural Science Foundation of China(42076238)for Wei-Zeng Shao;Shanghai Pujiang Program(19PJ1404300)for Liang Chang.
The throughflow in the Canadian Arctic Archipelago(CAA)had a significant impact on the North Atlantic Ocean with the Arctic climate change.The findings of physical mechanisms driving the throughflow in the CAA differe...
supported by the National Program on Key Basic Research Project of China (No. 2015CB95 3902);the National Natural Science Foundation of China (Nos. 41276197 and 41706210);the National Key Research and Development Program of China (No. 2016 YFC1400903);support of various institutions with programs and grants to deploy mooring and achieve data
A high-resolution Arctic Ocean-Finite Volume Community Ocean Model(AO-FVCOM) and observational current data from 14 mooring stations in Bering Strait and surrounding regions between 1990 and 2015 were used to study th...
Supported by the China’s National Key Research and Development Project(No.2016YFA0601803);the National Natural Science Foundation of China(Nos.41490641,41521091,U1606402);the Qingdao National Laboratory for Marine Science and Technology(No.2017ASKJ01)
Paleo reconstructions and model simulations have suggested the Bering Strait plays a pivotal role in climate change. However, the contribution of the Bering Strait throughflow to oceanic meridional heat transport (OMH...
The National Program on Global Change and Air-Sea Interaction under contract Nos GASI-03-01-01-05,GASIIPOVAI-01-02,GASI-IPOVAI-02,GASI-IPOVAI-03,GASI-IPOVAI-01-05 and GASI-03-01-01-02;the National Natural Science Foundation of China(NSFC)under contract Nos 41421005,41720104008,41476025,41376038 and 41876025;the National Natural Science Foundation of China(NSFC)-Shandong Joint Fund for Marine Science Research Centers of China under contract Nos U1606402 and U1606405;the CAS Strategic Priority Project under contract No.XDA11010205;the Scientific and Technological Innovation Project of Qingdao National Laboratory for Marine Science and Technology under contract No.2016ASKJ04;the National Science and Technology Major Project under contract No.2016ZX05057015;the Open Fund of Shandong Provincial Key Laboratory of Marine Ecology and Environment & Disaster Prevention and Mitigation under contract No.201701
A 1.5-layer quasi-geostrophic reduced gravity model is used to study the hysteresis of a periodic or leaking western boundary current(WBC) flowing by a gap. When the periods of the WBC variations are much longer than ...