Русский

Developing a concentration independent pressure sensing method for high-temperature combustion diagnosis

506
2024-03-08 14:11:01
Посмотреть перевод

Recently, a research group led by Professor Gao Xiaoming and Professor Liu Kun of the Chinese Academy of Sciences Hefei Institute of Physical Sciences developed a concentration independent pressure sensing method based on two-color laser absorption spectrum for high-temperature combustion diagnosis.

The research findings are published in Optics Letters.
Aircraft engines are developing towards high-temperature and high-pressure combustion to improve thermodynamic efficiency. Pressure is an important parameter for monitoring engine performance and diagnosing engine faults. However, traditional contact pressure sensors not only interfere with the combustion flow, but are also limited by the temperature tolerance of the sensor material.

In this study, researchers developed a non-contact pressure sensing method for high-temperature environments and demonstrated it at temperatures up to 1300 K. The focus of this study is on how to address the impact of molecular concentration on gas pressure measurement in high-temperature environments.

Scientists have found that the collision broadening of two absorption lines coupled can eliminate concentration variables. With this discovery, scientists can achieve concentration independent pressure measurements. Considering that the main product of combustion systems fueled by hydrocarbons is H2O, they validated this finding with two H-absorption lines, where H2O is located near 1343 nm and 1392 nm on a carefully designed heating absorption cell. The time resolution and uncertainty of pressure measurement are respectively 50 μ Realize at s and 3%.

Professor Liu Kun said, "Our findings provide valuable tools for pressure sensing in high-temperature environments and can promote the development of multi parameter diagnosis in laser based combustion science.".

Source: Laser Net

Связанные рекомендации
  • Nat. Commun.: Two color orthogonal polarized organic light-emitting diode

    In recent years, linearly polarized organic light-emitting diodes have greatly enriched the application scenarios of polarization optics and optoelectronics industries. The low-cost and large-area preparation of linearly polarized organic light-emitting diodes with high polarization, strong directional emission, narrow bandwidth, and multi-color adjustability is an important challenge in the curre...

    2024-02-29
    Посмотреть перевод
  • Linear Pluggable Optical Device Alliance Definition Linear Pluggable Optical Device Specification

    A group of network, semiconductor, and optical companies formed the LPO MSA to develop the network equipment and optical module specifications required to implement a wide ecosystem of interoperable LPO solutions.These specifications address the industry challenges of reducing power consumption, cost, and latency while improving the reliability of high-speed optical interconnections.Accelink, AMD...

    2024-03-26
    Посмотреть перевод
  • The femtosecond laser was used to manufacture a magnetically responsive "Janus Origami" robot, which realized the effective integration of various droplet manipulation functions

    Recently, the reporter learned from the University of Science and Technology of China that Professor Hu Yanlei's team and his collaborators in the micro-nano Engineering Laboratory of the School of Engineering Science and Technology of the School have prepared a magnetic-responsive double-God origami robot that can be used for cross-scale droplet manipulation using femtosecond laser micro-nano man...

    2023-09-12
    Посмотреть перевод
  • Lawrence Livermore National Laboratory develops PW grade thulium laser in the United States

    Recently, according to Tom's Hardware, Lawrence Livermore National Laboratory (LLNL) in the United States is developing a PW (1015 W) level large aperture thulium (BAT) laser. It is reported that this laser has the ability to increase the efficiency of extreme ultraviolet lithography (EUV) light sources by about 10 times, and may potentially replace the carbon dioxide laser used in current EUV too...

    02-13
    Посмотреть перевод
  • Making Infrared Light Visible: New Equipment Utilizes 2D Materials to Convert Infrared Light

    Infrared imaging and sensing technology can be used in various fields, from astronomy to chemistry. For example, when infrared light passes through a gas, sensing changes in light can help scientists identify specific properties of the gas. The use of visible light may not always achieve this sensing.However, existing infrared sensors are bulky and inefficient. In addition, due to the use of infra...

    2024-06-24
    Посмотреть перевод