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 Engine and Emissions
DRAG REDUCTION PREDICTION OF AHMED MODEL WITH TRAVELING WAVE BASED ON BP NEURAL NETWORK
Xingjun Hu , Jinglong Zhang , Yufei Luo , Jingyu Wang , Pengzhan Ma , Wei Lan , Chunbo Dong
Int J Automot Technol. 2022;23(5):1419-1426.    DOI: https://doi.org/10.1007/s12239-022-0124-9
      
 Engine and Emissions
ANALYSIS OF AERODYNAMIC CHARACTERISTICS OF REAR WING MOUNTED ON FASTBACK TYPE VEHICLE
Pyungkee Kim , Wonseok Choi , d Kyu Hong Kim
Int J Automot Technol. 2023;23(5):1255-1268.    DOI: https://doi.org/10.1007/s12239-022-0110-2
      
 Engine and Emissions
VEHICLE AERODYNAMIC DRAG FOR TIRE SHAPE PARAMETERS USING NUMERICAL ANALYSIS
Jaehak Lee, Sungoh Park, Moonsang Kim, Yongnyun Kim, Byoungkeun Oh
Int J Automot Technol. 2022;23(2):335-344.    DOI: https://doi.org/10.1007/s12239-022-0031-0
      
 Electric, Fuel Cell, and Hybrid Vehicle, Engine and Emissions, Heat Transfer, Fluid and Thermal Engineering
WAKE FLOWS OF HIGHLY DETAILED HEAVY VEHICLES
Damien McArthur, David Burton, Timothy Crouch, Mark Thompson, John Sheridan
Int J Automot Technol. 2021;22(5):1227-1243.    DOI: https://doi.org/10.1007/s12239-021-0108-1
      
  Engine and Emissions, Fuels and Lubricants
INFLUENCE OF INTER-VEHICLE DISTANCE ON THE AERODYNAMICS OF A TWO-TRUCK PLATOON
Johannes Törnell, Simone Sebben, David Söderblom
Int J Automot Technol. 2021;22(3):747-759.    DOI: https://doi.org/10.1007/s12239-021-0068-5
      
 Engine and Emissions
A NUMERICAL ANALYSIS ON DUCTED AHMED MODEL AS A NEW APPROACH TO IMPROVE AERODYNAMIC PERFORMANCE OF ELECTRIC VEHICLE
Alemayehu Wakjira Huluka , Chul-Ho Kim
Int J Automot Technol. 2021;22(2):291-299.    DOI: https://doi.org/10.1007/s12239-021-0028-0
      
 Engine and Emissions, Fuels and Lubricants
NUMERICAL STUDY ON THE EFFECT OF BOAT TAIL SHAPE ON AERODYNAMIC DRAG OF SUV
Hyun A Choi, Sung Oh Park, Ho Gyun Moon, Moon Sang Kim, Jung Sik Cho
Int J Automot Technol. 2021;22(1):165-172.    DOI: https://doi.org/10.1007/s12239-021-0017-3
      
 Engine and Emissions, Fuels and Lubricants
CENTER FLOOR UNDERCOVER AIR GUIDE DEVELOPMENT TO IMPROVE AERODYNAMIC DRAG FOR A PASSENGER CAR
Se Rok Yang, Hyun A Choi, Ho Gyun Moon, Moon Sang Kim, Ju Yeol You
Int J Automot Technol. 2020;21(5):1217-1222.    DOI: https://doi.org/10.1007/s12239-020-0115-7
      
 Engine and Emissions, Fuels and Lubricants
EFFECT OF UNDERHOOD ARCHITECTURE ON AERODYNAMIC DRAG – SUGGESTION OF NEW CONCEPTS FOR FUEL CONSUMPTION REDUCTION
Jalal Faraj, Elias Harika, Mohamed Ramadan, Samer Ali, Fabien Harambat, Mahmoud Khaled
Int J Automot Technol. 2020;21(3):633-640.    DOI: https://doi.org/10.1007/s12239-020-0060-5
      
 Other Fields of Automotive Engineering (Steering System)
INVESTIGATING THE EFFECT OF WEIGHT REDUCTION OF ROD-END IN DRAG-LINK PRODUCT WITH FINITE ELEMENT ANALYSIS, FATIGUE TEST, AND A CASE STUDY
Erinç Uludamar, Mustafa Taş, Sami Gökberk Biçer, Cihan Yıldırım, Ebru Aykut Yıldırım, Kerimcan Çelebi
Int J Automot Technol. 2020;21(2):513-518.    DOI: https://doi.org/10.1007/s12239-020-0048-1
      
 Body and Safety, Chassis, Manufacturing, Materials and Recycling
ON THE CONSTITUTIVE MODELS FOR ULTRA-HIGH STRAIN RATE DEFORMATION OF METALS
Hossein Sedaghat, Weixing Xu, Liangchi Zhang, Weidong Liu
Int J Automot Technol. 2019;20(S):31-37.    DOI: https://doi.org/10.1007/s12239-019-0125-5
         Cited By 2
 Heat Transfer, Fluid and Thermal Engineering
DRAG REDUCTION OF A PASSENGER CAR USING FLOW CONTROL TECHNIQUES
Akshoy Ranjan Paul, Anuj Jain, Firoz Alam
Int J Automot Technol. 2019;20(2):397-410.    DOI: https://doi.org/10.1007/s12239-019-0039-2
         Cited By 2
 Body and Safety, Chassis, Manufacturing, Materials and Recycling
ON THE CONSTITUTIVE MODELS FOR ULTRA-HIGH STRAIN RATE DEFORMATION OF METALS
Hossein Sedaghat, Weixing Xu, Liangchi Zhang, Weidong Liu
Int J Automot Technol. 2019;20(0):31-37.    DOI: https://doi.org/10.1007/s12239-019-0125-5
         Cited By 2
 Heat Transfer, Fluid and Thermal Engineering
COMPARATIVE INVESTIGATION ON THE AERODYNAMIC EFFECTS OF COMBINED USE OF UNDERBODY DRAG REDUCTION DEVICES APPLIED TO REAL SEDAN
Junho Cho, Tae-Kyung Kim, Kyu-Hong Kim, Kwanjung Yee
Int J Automot Technol. 2017;18(6):959-971.    DOI: https://doi.org/10.1007/s12239-017-0094-5
         Cited By 6
 Heat Transfer, Fluid and Thermal Engineering
AERODYNAMIC COASTDOWN ANALYSIS OF A PASSENGER CAR FOR VARIOUS CONFIGURATIONS
A. ALTINISIK
Int J Automot Technol. 2017;18(2):245-254.    DOI: https://doi.org/10.1007/s12239-017-0024-6
         Cited By 8
 Heat Transfer, Fluid and Thermal Engineering
GRILLE DESIGN FOR PASSENGER CAR TO IMPROVE AERODYNAMIC AND COOLING PERFORMANCE USING CFD TECHNIQUE
J. M. KIM, K. M. KIM, S. J. HA, M. S. KIM
Int J Automot Technol. 2016;17(6):967-976.    DOI: https://doi.org/10.1007/s12239-016-0094-x
         Cited By 7
 Automobile Chassis & Vehicle Dynamic
AERODYNAMIC DESIGN OPTIMIZATION OF REAR BODY SHAPES OF A SEDAN FOR DRAG REDUCTION
K. S. SONG, S. O. KANG, S. O. JUN, H. I. PARK, J. D. KEE, K. H. KIM, D. H. LEE
Int J Automot Technol. 2012;13(6):905-914.    DOI: https://doi.org/10.1007/s12239-012-0091-7
         Cited By 31
 Automobile Chassis & Vehicle Dynamic
ACTIVELY TRANSLATING A REAR DIFFUSER DEVICE FOR THE AERODYNAMIC DRAG REDUCTION OF A PASSENGER CAR
S. O. KANG, S. O. JUN, H. I. PARK, K. S. SONG, J. D. KEE, Kyu-Hong Kim, D. H. LEE
Int J Automot Technol. 2012;13(4):583-592.    DOI: https://doi.org/10.1007/s12239-012-0056-x
         Cited By 39
 Heat Transfer, Fluid and Thermal Engineering
DRAG REDUCTION OF A PICKUP TRUCK BY A REAR DOWNWARD FLAP
J. HA, S. JEONG, S. OBAYASHI
Int J Automot Technol. 2011;12(3):369-374.    DOI: https://doi.org/10.1007/s12239-011-0043-7
         Cited By 20
 Automobile Body and Safety
AERODYNAMIC EFFECT OF ROOF-FAIRING SYSTEM ON A HEAVY-DUTY TRUCK
C. H. KIM, C. B. YOUN
Int J Automot Technol. 2005;6(3):221-227.
      
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