高层建筑曲面上太阳辐射分布的瞬时模型计算

O. Krivenko, P. Kulikov, A. Zaprivoda, V. Zaprivoda
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引用次数: 3

摘要

研究的目的是模拟高层建筑壳体曲面上的太阳辐射区域,以便有效利用可再生太阳能。一项紧迫的任务是开发工具,以证实设计师在曲线高层建筑节能设计中关于太阳能热装置位置的决策。主要关注的是高层建筑,在现代大都市中积极发展,需要大量的能源资源。为了优化高层建筑中太阳能热装置的集成,需要考虑一系列设计参数,包括表面形状参数和空间位置参数。研究中考虑到曲面的一个特点是其空气动力学特性,这为其在现代高层建筑中选择提供了优势。同时,设置曲面参数确定太阳辐射区域以有效利用可再生太阳能的复杂性在于为优化决策提供可靠和方便的工具。本研究提出了一种基于太阳辐射输入在高层建筑壳体表面的离散几何模型的应用方法,该模型由弯曲几何表面的隔室描述。建模的结果是,在给定的时间和地理位置参数下,得到某一曲面上太阳辐射水平相同的直线族。作为仿真建模的一个例子,计算了太阳辐射在旋转椭球、半球、双曲抛物面等曲面上的瞬时分布模型。在提出的建筑物曲线表面上太阳辐射分布模型的基础上,研究了设计过程中产生的各种因素的影响:表面形状几何参数的变化、基准点方向的变化、自身阴影区域在表面上的形成。通过计算,在具有不同几何参数的半球(一个双曲抛物面)的表面上构建瞬时太阳辐射区,考虑相对于基准点的不同方向,并确定其自身阴影的区域。在本阶段的研究中,得到的结果是在高层建筑曲面上构建不同太阳辐射水平区域的算法。该算法的优点是能够分析在高层建筑上安装太阳能系统时,其表面设计参数变化的结果。所提出的方法将为自动化建模过程提供基础,将有助于扩大太阳能系统在高层建筑中的范围并提高其工作效率
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calculation of the Instant Model of Solar Radiation Distribution on Curved Surfaces in High-Rise Buildings
The aim of research is to simulate the zones of solar radiation on the curved surfaces of the shells of high-rise buildings for the effective use of renewable solar energy. An urgent task is the development of tools that can substantiate the decision-making by designers about the location of solar thermal devices in the energy-efficient design of curvilinear high-rise buildings. The main attention is paid to high-rise buildings, is actively growing in modern megalopolises and requires a significant energy resource. To optimize the integration of solar thermal devices in high-rise buildings, it is important to take into account a set of design parameters, including parameters of surface shape and location in space. A feature of curved surfaces, considered in the study, is their aerodynamic properties, which provide them with the advantage of choosing among modern high-rise buildings. At the same time, the complexity of setting the parameters of a curved surface to determine the zones of solar radiation for the effective use of regenerative solar energy lies in providing reliable and convenient tools for optimizing decision-making. The study proposes an application of the method based on a discrete geometric model of solar radiation input on the surface of the shells of high-rise buildings, described by compartments of curved geometric surfaces. As a result of modeling, let’s obtain a family of lines of the same level of solar radiation on a certain curved surface for the given parameters of time and geographic location. As an example of simulation modeling, the performed calculations of the instantaneous model of the distribution of solar radiation on the compartments of the curved surfaces of an ellipsoid of revolution, hemisphere, hyperbolic paraboloid. On the basis of the proposed model for the distribution of solar radiation over curvilinear surfaces of buildings, the influence of factors arising in the design process is investigated: changes in the geometric parameters of the surface shape, orientation to the cardinal points, the formation of zones of its own shadow on surfaces. Calculations were performed and instantaneous solar radiation zones were constructed on the surfaces of a hemisphere, a hyperbolic paraboloid with various geometric parameters, taking into account different orientations relative to the cardinal points, and determining the zones of its own shadow. At this stage of the study, the result is an algorithm for constructing zones of different levels of solar radiation on curved surfaces of high-rise buildings. The advantage of the algorithm is the ability to analyze the results of changes in the design parameters of the surface of a high-rise building when placing solar systems on them. The proposed approach will provide a basis for automating the modeling process, will help expand the scope of solar systems in high-rise construction and increase the efficiency of their work
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