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受白蚁丘腔室结构启发的高层建筑通风性能模拟与优化研究

Simulation and Optimization Study on the Ventilation Performance of High-Rise Buildings Inspired by the White Termite Mound Chamber Structure.

作者信息

Wei Yangyang, Lin Zhiying, Wang Yihan, Wang Xinxia

机构信息

Institute of Cultural Resources and Industries, Nanchang University, Nanchang 330031, China.

Architecture and Design College, Nanchang University, Nanchang 330031, China.

出版信息

Biomimetics (Basel). 2023 Dec 14;8(8):607. doi: 10.3390/biomimetics8080607.

Abstract

High-rise buildings often use mechanical systems to assist ventilation to maintain the stability of their internal environments, and the energy consumption of mechanical ventilation poses a great challenge to urban environments and energy systems. The ventilation system of termite mounds with a combination of internal main and attached chambers is one of the classic examples of nature's bionic approach to maintaining a stable internal ventilation environment for large-volume structures. In this study, based on the inspiration of the internal ventilation chamber structure of bionic termite mounds, we constructed seven high-rise building chamber ventilation models based on the chamber structure of termite mounds with main chambers, main chambers plus single-attached chambers (three types), and main chambers plus double-attached chambers (three types) under natural ventilation conditions, aiming at obtaining the optimal low-energy and high-efficiency chamber ventilation model for bionic termite mounds in high-rise buildings. (1) The wind speed and wind pressure of the high-rise building with the addition of the bionic termite mound chamber structure is higher than that of the traditional chamber-free high-rise building in the sample floors, the maximal difference of the wind speed between the two models is 0.05 m/s, and the maximal difference of the wind speed of the single building is 0.14 m/s, with the maximal difference of the wind speed of the single building being 0.14 m/s; and the natural ventilation environment can be satisfied by a high-rise building with a chamber. (2) After increasing the single-attached chamber structure of the bionic termite mound, the difference in wind speed of different floors is 0.15 m/s, which is 0.10 m/s higher than that of the high-rise building model with the main chamber only. (3) Under the bionic termite mound chamber high-rise building double-attached chamber model, the maximum difference in wind speed of each floor sampling point can reach 0.19 m/s, while the wind pressure cloud map shows a stable wind environment system. (4) Two attached chambers are added at A and B of the high-rise building to form the a4 model of the chamber of the high-rise building with a double-chamber bionic termite mound. According to the results, it can be seen that the model of the nine floor sampling points of the maximum wind speed difference has six places for the highest value, and the single building wind speed difference for the minimum value of 0.10 m/s. The study aims to optimize the connectivity and ventilation performance of high-rise buildings under natural ventilation conditions and to promote the green and sustainable design of high-rise buildings.

摘要

高层建筑常采用机械系统辅助通风以维持内部环境稳定,而机械通风的能耗给城市环境和能源系统带来巨大挑战。具有内部主腔和附属腔相结合的白蚁丘通风系统,是自然界通过仿生方式为大型结构维持稳定内部通风环境的经典范例之一。在本研究中,基于仿生白蚁丘内部通风腔结构的启发,我们在自然通风条件下,根据带有主腔、主腔加单附属腔(三种类型)以及主腔加双附属腔(三种类型)的白蚁丘腔室结构,构建了七个高层建筑腔室通风模型,旨在获得高层建筑中仿生白蚁丘的最优低能耗、高效率腔室通风模型。(1)添加仿生白蚁丘腔室结构的高层建筑,在采样楼层的风速和风压高于传统无腔室高层建筑,两种模型风速最大差值为0.05米/秒,单栋建筑风速最大差值为0.14米/秒;有腔室的高层建筑可满足自然通风环境。(2)增加仿生白蚁丘的单附属腔结构后,不同楼层风速差值为0.15米/秒,比仅带有主腔的高层建筑模型高0.10米/秒。(3)在仿生白蚁丘腔室高层建筑双附属腔模型下,各楼层采样点风速最大差值可达0.19米/秒,而风压云图显示为稳定的风环境系统。(④)在高层建筑的A、B处添加两个附属腔,形成带有双腔仿生白蚁丘的高层建筑腔室a4模型。根据结果可知,该模型九个楼层采样点风速最大差值中,有六个地方为最高值,单栋建筑风速差值最小值为0.10米/秒。该研究旨在优化自然通风条件下高层建筑的连通性和通风性能,促进高层建筑的绿色可持续设计。

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