Research on Performance Optimization Scheme for Web Front-End and Its Practice

Author(s):  
Fenglong Yan ◽  
Zhao Xu ◽  
Yu Shan Zhong ◽  
Zhang HaiBei ◽  
Chang Yun Ge
2021 ◽  
pp. 073490412110503
Author(s):  
Kevin M Brent ◽  
James S T’ien

In using thin fire blankets to protect structures in wildfires, heat rejections by radiation (reflection and emission) are essential for good performance. By varying the radiative properties of the front and back surfaces of the blankets, this article offers an optimization study of several scenarios of incident heat flux including pure convection, pure radiation, and combinations of the two. Two types of blanket heat-blocking efficiencies are studied in the optimization scheme. An overall efficiency is defined as the amount of incident heat blocked to the total amount of incident heat in specified wildfire scenarios. An instantaneous heat-blocking efficiency is defined as the instantaneous heat flux blocked to the instantaneous incident total heat flux which provides good understanding of the physics of heat-blocking mechanisms of fire blanket under quasi-steady conditions. In addition to maximizing these heat-blocking efficiencies, there are other optimization objectives, including the minimization of the blanket backside temperature. A genetic algorithm is used for the multi-objective optimization schemes. For the transient heat incidence, the optimization for the entire time sequence is performed with the possibility of a change of blanket radiative properties during the fire sequence, accounting for changes to the fire-facing surface caused by the incident heat.


2021 ◽  
Vol 18 (8) ◽  
pp. 20210103-20210103
Author(s):  
Shiqiang Nie ◽  
Chi Zhang ◽  
Chen Zhang ◽  
Xuda Zheng ◽  
Weiguo Wu

2011 ◽  
Vol 345 ◽  
pp. 35-40
Author(s):  
Xiang Bao Yin ◽  
Xiao Ping Li ◽  
She Li

The gain model of the Yb-Er codoped optical waveguide amplifier as well as the gain equation has been established based on the analysis of energy level structure of Yb-Er codoped system and the related transition utilizing the rate and transmission equations, and then simulation of the gain characteristic has been carried out. Some most important parameters influencing the gain of the optical waveguide amplifier are discussed and the correlative conditions are optimized. Through numerical simulation, the parameter optimization scheme has been proposed, with which the pump wave length, power and the gain of the amplifier are optimized synchronously, and the maximum gain under the optimum length is obtained. Experimental results show good accordance with the numerical simulation.


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