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Autor:
Pal Girdhar, Khanh Linh Duong, Shamrao Chavan Sanjay, A. Vargas Darío, Thi Huan Trinh, Repale Anil, Wang Lei, Kurokawa Natsumi, Thi Ngoc Mai Nguyen, Suzuki Takeyuki, Alagaraj Praveena, Quoc Hoan Duong, Babasaheb Patil-Deshmukh Aditya, Puteri Tachrim Zetryana, Harmeyer Grace, Thi Thu Trang Tran, Kanchan Mithun, Arumugam Balakrishnan, Subhash Mohite Sagar, A.A. Al-otaibi Asmaa, Hashimoto Makoto, Mathe Steven, Subramaniam Arunambiga, Oida Kazuhiro, Thi Anh Tuyet Vu, Ohashi Fumina, Pathan Sultan, A. Alsufyani Taghreed, S. Cánepa Alicia, Legate Steven, Dau Xuan Duc, Eckert Timothy, Maniyeri Ranjith, J. Méndez Leticia, A. Saad Hosam
Publikováno v:
Recent Patents on Mechanical Engineering. 13:118-125
Background: Fluid flow in microchannels is restricted to low Reynolds number regimes and hence inducing chaotic mixing in such devices is a major challenge. Over the years, the Immersed Boundary Method (IBM) has proved its ability in handling complex