1 |
Biocolloid transport and deposition in porous media: A review Bai HJ, Chen JH, Hu YM, Wang G, Liu W, Lamy E Korean Journal of Chemical Engineering, 39(1), 38, 2022 |
2 |
Experimental assessment of grinding bead velocity distributions and stressing conditions in stirred media mills Bottcher AC, Schilde C, Kwade A Advanced Powder Technology, 32(2), 413, 2021 |
3 |
Experimental investigation of proppant particles transport in a tortuous fracture Qu H, Tang SM, Liu ZH, Mclennan J, Wang R Powder Technology, 382, 95, 2021 |
4 |
Pressure Drop in a Coil-Shaped Rotating Spiral Gas. Solid Contacting Device Shimizu T, Adachi R, Li LY, Hatta A, Kojima T KAGAKU KOGAKU RONBUNSHU, 46(1), 1, 2020 |
5 |
Numerical study on flow dynamics characteristics of supercritical water transporting particles under transcritical temperature conditions driven by pressure difference Cheng ZN, Jin H, Chen J, Ren ZH, Ou ZS, Ren CS, Guo LJ Powder Technology, 363, 676, 2020 |
6 |
Particle dynamics in a multi-staged fluidized bed: Particle transport behavior on micro-scale by discrete particle modelling Diez E, Kieckhefen P, Meyer K, Buck A, Tsotsas E, Heinrich S Advanced Powder Technology, 30(10), 2014, 2019 |
7 |
In vitro vascularized liver and tumor tissue microenvironments on a chip for dynamic determination of nanoparticle transport and toxicity Ozkan A, Ghousifam N, Hoopes PJ, Yankeelov TE, Rylander MN Biotechnology and Bioengineering, 116(5), 1201, 2019 |
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A new model for simulating particle transport in a low-viscosity fluid for fluid-driven fracturing Hu XD, Wu K, Song XZ, Yu W, Tang JZ, Li GS, Shen ZH AIChE Journal, 64(9), 3542, 2018 |
9 |
Vascularized microfluidic platforms to mimic the tumor microenvironment Michna R, Gadde M, Ozkan A, DeWitt M, Rylander M Biotechnology and Bioengineering, 115(11), 2793, 2018 |
10 |
Collision Characteristics for Predicting Particle Attrition and Pipe Wear in Conveying Systems Uzi A, Levy A Chemical Engineering & Technology, 41(8), 1511, 2018 |