Muhammad Idrees Afridi
Also known as: M.I. Afridi, Idrees Afridi
Shenzhen University, Abasyn University, COMSATS University Islamabad
About
I have completed my PhD in Applied Mathematics from COMSATS University Islamabad, Pakistan, in 2020. I am a fluid dynamist and working on the boundary layer flows of Newtonian and non-Newtonian fluids, heat and mass transfer analysis, but now concentrating on the mathematical modeling of biofluids (Peristaltic flows), blood flow in stenosis arteries flow over a curved surface, Nanofluids and applications of mathematical methods to the problems arising in the modeling of non-linear physical sciences. I published various research articles in ISI-indexed journals having a good impact factor. Most of the research papers have received tremendous citations in recent years.
Employment
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Shenzhen University Postdoctroal Researcher
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Abasyn University Assistant Professor
Education
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COMSATS University Islamabad Mathematics
Projects & Funding
Projects & funding information is unavailable.
Publications (131)
- Computational insights of novel perovskites ScDH3 (D = Y, Lu, Pr, and Nd) for solid state hydrogen storage applications Save
- Dynamical behaviours of the multi-solitons and rogue waves in the Aizhan-Gudekli-Nurshuak-Zhanbota model with the N-fold Darboux transformation in nonlinear sciences Save
- Enhancing the thermal performance of microchannel cold plates via controlled bubble injection for next-generation high-power electronic chips Save
- Entropy production in the flow of Bingham-Papanastasiou fluid having temperature and shear rate-dependent viscosity Save
- Examine the optical solitons to the fractional paraxial wave model Save
- Experimental examination of thermohydraulic characteristics of a new vibrating rubber tube turbulator with multiple air bubble outlets inserted inside a double-pipe heat exchanger Save
- Neural network approach towards magneto-radiative third-grade fluid with homogeneous and heterogeneous reaction Save
- Performance enhancement of parabolic trough collectors via a novel multi-blade ninja star turbulator: Thermal and economic-environmental insights Save
- Thermal and Mass Transport Dynamics in Casson Nanofluid: An Examination of Gyrotactic Microorganisms Within a Porous Medium Save
- Thermo-Hydraulic Enhancement of Microchannel Cold Plates via In-Channel Angled Jet Impingement for Next-Generation CPU Cooling Save