1 |
Experimental study on heat transfer enhancement of nanofluid flow through helical tubes Ardekani AM, Kalantar V, Heyhat MM Advanced Powder Technology, 30(9), 1815, 2019 |
2 |
Evaluation of micromixing in helically coiled microreactors using artificial intelligence approaches Izadi M, Rahimi M, Beigzadeh R Chemical Engineering Journal, 356, 570, 2019 |
3 |
Experimental and numerical study on the heat transfer and flow characteristics in shell side of helically coiled tube heat exchanger based on multi-objective optimization Wang GH, Wang DB, Deng J, Lyu YM, Pei Y, Xiang S International Journal of Heat and Mass Transfer, 137, 349, 2019 |
4 |
Numerical investigation of thermal-hydraulic parameter distribution characteristics during dryout evolution in the helically coiled once-through steam generator Yu X, Sun BZ, Li YJ, Shi JX, Zhang GL, Wu WZ, Zhao ZR International Journal of Heat and Mass Transfer, 139, 373, 2019 |
5 |
Intermittent gas-liquid two-phase flow in helically coiled tubes Zhu GY, Yang XT, Jiang SY, Zhu HY International Journal of Multiphase Flow, 116, 113, 2019 |
6 |
Heat transfer deterioration in helically coiled heat exchangers in trans-critical CO2 Rankine cycles Liu XX, Xu XX, Liu C, Bai WJ, Dang CB Energy, 147, 1, 2018 |
7 |
Heat transfer analysis of multi-row helically coiled tube heat exchangers for surface water-source heat pump Zhou CH, Ni L, Yao Y Energy, 163, 1032, 2018 |
8 |
The buoyancy force and flow acceleration effects of supercritical CO2 on the turbulent heat transfer characteristics in heated vertical helically coiled tube Zhang SJ, Xu XX, Liu C, Zhang YD, Dang CB International Journal of Heat and Mass Transfer, 125, 274, 2018 |
9 |
Crystal Population Growth in a Continuous Helically Coiled Flow Tube Crystallizer Wiedmeyer V, Voigt A, Sundmacher K Chemical Engineering & Technology, 40(9), 1584, 2017 |
10 |
Flow regime identification for upward two-phase flow in helically coiled tubes Zhu HY, Li ZX, Yang XT, Zhu GY, Tu JY, Jiang SY Chemical Engineering Journal, 308, 606, 2017 |