...
首页> 外文期刊>International Journal of Thermal Sciences >Applicability of calculation methods for conduction transfer function of building constructions
【24h】

Applicability of calculation methods for conduction transfer function of building constructions

机译:建筑结构传导传递函数计算方法的适用性

获取原文
获取原文并翻译 | 示例
           

摘要

Conduction transfer function (CTF) is widely used to calculate conduction heat transfer in building cooling/heating loads and energy calculations. It can conveniently fit into any load and energy calculation techniques to perform conduction heat transfer calculations. There are three popular methods, direct root-finding (DRF) method, state-space (SS) method and frequency-domain regression (FDR) method to calculate CTF coefficients. The limitation of a methodology possibly results in imprecise or false CTF coefficients. This paper investigates the applicability of three methods as Fourier number and thermal structure factor are varied and in detail explains the sources that introduce error in the CTF solutions. The results show that the calculation error of SS and DRF methods becomes increasing as the reciprocal of the product of Fourier number and thermal structure factor becomes increasing. The maximal error even reaches almost 100%. However, the calculation error of FDR method always remains within 1% no matter how Fourier number and thermal structure factor are varied. Thus, FDR method is more robust and reliable than SS and DRF methods. And it is more practical to calculate CTF coefficients and may be a better choice to calculate the cooling/heating loads for building structures for the architect/designer.
机译:传导传递函数(CTF)被广泛用于计算建筑物冷/热负荷和能量计算中的传导热传递。它可以方便地适用于任何负载和能量计算技术,以执行传导热传递计算。有三种流行的方法,用于计算CTF系数的直接根查找(DRF)方法,状态空间(SS)方法和频域回归(FDR)方法。方法的局限性可能导致不精确或错误的CTF系数。本文研究了三种方法的适用性,因为傅立叶数和热结构因子有所不同,并详细说明了在CTF解决方案中引入误差的原因。结果表明,随着傅立叶数与热结构因子乘积的倒数的增加,SS和DRF方法的计算误差越来越大。最大误差甚至达到几乎100%。但是,无论傅立叶数和热结构系数如何变化,FDR方法的计算误差始终保持在1%以内。因此,FDR方法比SS和DRF方法更健壮和可靠。计算CTF系数更加实用,对于建筑师/设计师来说,计算建筑结构的冷/热负荷可能是一个更好的选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号