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A Thesis Submitted in Partial Fulfillment of the the Climate Adaptation Strategy BIPV of Wuhan

Author: ZhaoSenHui
Tutor: LiuZuo
School: Huazhong University of Science and Technology
Course: Architectural Design and Theory
Keywords: Climate adaptation BIPV PV wall PV roofs PV shading
CLC: TU18
Type: Master's thesis
Year: 2010
Downloads: 96
Quote: 1
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Abstract


The 21st century, the Earth’s environment, energy use is a key element of sustainable development. For a long time, and closely related to the construction of people’s lives has always been the biggest "energy body", but applied to the construction of solar photovoltaic power generation, the construction has finally started as the "energy supply body" to the supply of work and life’s energy needs. In order to give full play to the construction of the ecological nature of photovoltaic power generation is proposed BIPV design. BIPV design by climatic factors, will lead to PV system power generation efficiency and building indoor physical environment changes. In different regions, different climatic conditions on the BIPV design produce different effects. In this paper, object of study in Wuhan BIPV design of climate adaptation strategies, the main discussion is divided into four parts:Explained the first part of the first PV panel tilt angle, azimuth, array spacing and the relationship between the PV power generation efficiency. Then explore the solar radiation, temperature, wind and rain and snow and so the impact on the BIPV design. And a preliminary analysis of the climate in different partitions for BIPV design of the climatic factors should be considered. On this basis, the analysis of the impact of Wuhan BIPV design the most critical climatic factors. In Wuhan area’s unique climate characteristics, solar radiation in this region, temperature etc. and the attitude angle of PV systems, PV panels installation location, installation of the mutual relations were studied. Analysis of the Wuhan regional electricity load curve and the annual PV electricity load curve corresponding relationship. This is the second part. Chapter IV Strategic Research papers belonging to the third part is mainly to explore the design of BIPV in the Wuhan area, PV panel angle (tilt angle, azimuth angle) is the best range; PV array of the most appropriate spacing. And through several forms of PV wall, PV power generation performance of the roof and building performance compared to determine the most suitable climatic conditions in Wuhan form. PV sun visor is important to discuss the contents of this paper is a synthesis of shading, lighting, power generation, the three requirements, the sun visor in Wuhan PV installation location and installation dimensions, angles Strategy Study. Part IV is divided into application design part of the Department of Museum in the construction of the roof BIPV project design, discussed the PV roof, PV wall, PV shading application specific programs. And the completion of the project was conducted after the data measured.

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