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Inverse design of the thermal environment in an airplane cockpit using the adjoint method with the momentum method
Authors:Xingwang Zhao  Jingnan Sun  Sumei Liu  Zhengwei Long  Yonggao Yin  Qingyan Chen
Affiliation:1. School of Energy and Environment, Southeast University, Nanjing, China;2. Tianjin Key Laboratory of Indoor Air Environmental Quality Control, School of Environmental Science and Engineering, Tianjin University, Tianjin, China;3. School of Energy and Environment, Southeast University, Nanjing, China

Engineering Research Center of Building Equipment, Energy, and Environment, Ministry of Education, Nanjing, China;4. School of Mechanical Engineering, Purdue University, West Lafayette, IN, USA

Abstract:Currently, the thermal environment in airplane cockpits is unsatisfactory and pilots often complain about a strong draft sensation in the cockpit. It is caused by the unreasonable air supply diffusers design. One of the best approaches to design a better cockpit environment is the adjoint method. The method can simultaneously and efficiently identify the number, size, location, and shape of air supply inlets, and the air supply parameters. However, the real air diffuser needed to design often have grilles, especially in the airplane cockpit, and the current method can only design the inlet as an opening. This study combined the adjoint method with the momentum method to directly identify the optimal air supply diffusers with grilles to create optimal thermal environment in an airplane cockpit (1) under ideal conditions and (2) with realistic constraints. Under the ideal conditions, the resulting design provides an optimal thermal environment for the cockpit, but it might not be feasible in practice. The design with realistic constraints provides acceptable thermal comfort in the cockpit, but it is not optimal. Thus, there is an engineering trade-off between design feasibility and optimization. All in all, the adjoint method with the momentum method can be effectively used to identify real air supply diffusers.
Keywords:adjoint method  cockpit  environmental conditioning systems (ECS)  inverse design  momentum method  thermal environment
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