
Projects
Hessian scientists of various disciplines are using High Performance Computers for their research.
Hessian scientists of various disciplines are using High Performance Computers for their research.
Displaying 1 - 30 of 41
Over the last decades, turbomachinery has been subject of continuous improvement and fundamental research within the ...
Project VERENA aims to open new recycling paths for biogenic and municipal residues through different gasification ...
The industrial production of high-density polyethylene (HDPE) through the catalytic polymerization of ethene is an ...
Iron powder can help in a clean and sustainable generation of heat and power and holds the potential to replace ...
Aeroacoustics is a critical research field that studies sound generated by turbulent flows interacting with solid ...
A decisive property of centrifugal compressors for turbochargers is the map width, which defines the area of the ...
The fluid temperatures in the high-pressure turbine of a commercial jet engine or industrial gas turbine by far exceed ...
We survey the landscape of MAB and Mbene superconductors out of our previous high-throughput predictions using first ...
The flow conditions at the combustor turbine interface (CTI) have a significant role in the development process of ...
Aeroacoustics studies the creation and spread of sound from unsteady flow with solid structures. Computational ...
Autonomous materials discovery with desired properties is one of the ultimate goals for modern materials science, and ...
Soot is an unwanted particulate pollutant with detrimental impact on the human health and climate change. Its emission ...
Project CLARA aims to develop Chemical Looping Gasification (CLG) technology from lab scale to industrial scale. CLG can ...
Project VERENA aims to open new recycling paths for biogenic and municipal residues through different gasification ...
At industrial scale low-density polyethylene (LDPE) is produced at pressures up to 3000 bar in autoclave or tubular ...
The flow conditions at the combustor turbine interface (CTI) have a significant role in the development process of ...
To reduce the C02 footprint of the current energy and transport sector, hydrogen has become one of the most promising ...
Refractory metal silicide systems like Mo-Si-Ti are expected to be ideal substrates in composite materials for high ...
Since the beginning of the past century people are interested in the mechanisms which produce the sound caused by a drop ...
In recent years studying the field of aeroacoustics has been received special attention from researches for its ...
The aim of this work is the development and validation of a numerical model of the coal gasification in a fluidized bed ...
Antiferroelectric (AFE) materials have recently been of a great interest, due to their unique applications in the energy ...
In industrial low-density polyethylene (LDPE) production, mixtures of organic peroxide initiators are used to start the ...
Empirical performance modeling is a proven instrument to analyze the scaling behavior of HPC applications. Using a set ...
Aerodynamic sound contributes significantly to the noise emission of high-speed applications such as trains, aircraft ...
Among the major sources of energy supply, pulverized coal combustion (PCC) will remain one most dominant contributors in ...
In numerous new fields of technology (including lightweight construction, medical technology) it is desirable to ...
Nowadays, the design and optimization of fluidized beds are primarily based on experimental investigations which are ...
The high pressure turbine design is strongly affected by the flow in the upstream combustor. Very high temperatures ...
In order to obtain high efficiencies in modern jet engines, turbine inlet temperatures substantially exceed thermal ...