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Dengjia Wang

Researcher at Xi'an University of Architecture and Technology

Publications -  137
Citations -  2416

Dengjia Wang is an academic researcher from Xi'an University of Architecture and Technology. The author has contributed to research in topics: Thermal comfort & Thermal energy storage. The author has an hindex of 20, co-authored 101 publications receiving 1131 citations.

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Simulation and optimization of the key parameters of combined floor and Kang heating terminal based on differentiated thermal demands

TL;DR: In this article, an analysis model of heat dissipation performance of the combined floor and Kang heating terminal with alternating operation is established, and the accuracy of the model is verified by the experimental data.
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Effects of plateau thermal environment stressors on thermal acclimation of sojourners from different climates

TL;DR: In this paper , the intensities of thermal and humid stresses were classified according to changes in outdoor temperature and humidity caused by migration in the Qinghai-Tibet Plateau.
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Experimental study on the thermal performance of an enhanced-convection radiative heating wall system

TL;DR: Wang et al. as discussed by the authors proposed a novel enhanced-convection radiant heating wall system, which uses enhanced convection technology while retaining the advantages of traditional low-temperature radiation heating.
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Optimization design research of insulation thickness of exterior wall based on the orientation difference of solar radiation intensity

TL;DR: In this paper , a new anisotropic insulation design method which fully considers the orientation difference of solar irradiation is proposed for the purpose of reducing indoor radiant thermal discomfort, based on the principle of equal heat flux intensity of the envelope, a simplified calculation method of the insulation thickness in each orientation is established.
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Optimization of layout and diameter for distributed solar heating network with multi-source and multi-sink

TL;DR: Wang et al. as mentioned in this paper developed an optimization model for the network layout and the pipe diameter by minimizing the total annualized costs (TAC ), which was solved using an improved integer coding genetic algorithm.