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Featured researches published by Hyun Khil Shin.


Transactions of the Korean hydrogen and new energy society | 2014

Development of a 25kW-Class PEM Fuel Cell System for the Propulsion of a Leisure Boat

In-Su Han; Jeehoon Jeong; Back-Kyun Kho; Choeng Hoon Choi; Sungju Yu; Hyun Khil Shin

A 25kW-class polymer electrolyte membrane (PEM) fuel cell system has been developed for the propulsion of a leisure boat. The fuel cell system was designed to satisfy various performance requirements, such as resistance to shock, stability under rolling and pitching oscillations, and durability under salinity condition, for its marine applications. Then, the major components including a 30kW-class PEM fuel cell stack, a DC-DC converter, a seawater cooling system, secondary battery packs, and balance of plants were developed for the fuel cell system. The PEM fuel cell stack employs a unique design structure called an anodic cascade-type stack design in which the anodic cells are divided into several blocks to maximize the fuel utilization without hydrogen recirculation devices. The performance evaluation results showed that the stack generated a maximum power of 31.0kW while maintaining a higher fuel utilization of 99.5% and an electrical efficiency of 56.1%. Combining the 30-kW stack with other components, the 25kW-class fuel cell system boat was fabricated for a leisure. As a result of testing, the fuel cell system reached an electrical efficiency of 48.0% at the maximum power of 25.6kW with stable operability. In the near future, two PEM fuel cell systems will be installed in a 20-m long leisure boat to supply electrical power up to 50kW for propelling the boat and for powering the auxiliary equipments.


Transactions of the Korean hydrogen and new energy society | 2013

Optimal Sizing of the Manifolds in a PEM Fuel Cell Stack using Three-Dimensional CFD Simulations

Jeehoon Jeong; In-Su Han; Hyun Khil Shin

Polymer electrolyte membrane (PEM) fuel cell stacks are constructed by stacking several to hundreds of unit cells depending on their power outputs required. Fuel and oxidant are distributed to each cell of a stack through so-called manifolds during its operation. In designing a stack, if the manifold sizes are too small, the fuel and oxidant would be maldistributed among the cells. On the contrary, the volume of the stack would be too large if the manifolds are oversized. In this study, we present a three-dimensional computational fluid dynamics (CFD) model with a geometrically simplified flow-field to optimize the size of the manifolds of a stack. The flow-field of the stack was simplified as a straight channel filled with porous media to reduce the number of computational meshes required for CFD simulations. Using the CFD model, we determined the size of the oxidant manifold of a 30 kW-class PEM fuel cell stack that comprises 99 cells. The stack with the optimal manifold size showed a quite uniform distribution of the cell voltages across the entire cells.


International Journal of Hydrogen Energy | 2013

PEM fuel-cell stack design for improved fuel utilization

In-Su Han; Jeehoon Jeong; Hyun Khil Shin


Renewable Energy | 2013

Effect of serpentine flow-field designs on performance of PEMFC stacks for micro-CHP systems

In-Su Han; Jongkoo Lim; Jeehoon Jeong; Hyun Khil Shin


Journal of Electroceramics | 2006

The preparation and characterization of porous carbons for hydrogen storage

Wooyoung Kim; Pil Kim; Ji Bong Joo; Hyun Khil Shin; Kwang S. Jung; Jongheop Yi


한국신재생에너지학회 학술대회논문집 | 2014

Control Software Development for a 25kw-Class PEM Fuel-Cell System for the Propulsion of a Leisure Boat

Sungju Yu; Cheong Hoon Choi; In-Su Han; Jeehoon Jung; Back-Kyun Kho; Hyun Khil Shin


한국신재생에너지학회 학술대회논문집 | 2014

Development of a Bipolar-Plate Integrated Gasket for PEMFC of Cruise Ships

Back Kyun Kho; In-Su Han; Hyun Khil Shin


한국신재생에너지학회 학술대회논문집 | 2014

Performance Evaluation of Metal Bipolar Plate for PEMFC of Cruise Ships

Back Kyun Kho; In-Su Han; Jeehoon Jung; Hyun Khil Shin


한국신재생에너지학회 학술대회논문집 | 2014

Data-driven modeling of a membrane humidifier for polymer electrolyte membrane fuel cells

In-Su Han; Back-Kyun Kho; Hyun Khil Shin


한국신재생에너지학회 학술대회논문집 | 2014

Development of a 25kW-Class Hybrid PEM Fuel-Cell System Control HW for the Propulsion of a Leisure Boat

Choeng Hoon Choi; Sungju Yu; In-Su Han; Jeehoon Jeong; Back-Kyun Kho; Hyun Khil Shin

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Ji Bong Joo

Seoul National University

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Jongheop Yi

Seoul National University

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Pil Kim

Seoul National University

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