EVALUATION OF ENERGY-COST-EFFICIENT DESIGN ALTERNATIVES FOR RESIDENTIAL BUILDINGS IN KARNATAKA’S TROPICAL WET AND DRY CLIMATIC ZONES

Q1 Engineering
Darshini Shekhar, Jagdish Godihal
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Abstract

Introduction: The existing building construction techniques in India account for increased operating energy consumption. Due to this, there is a need to apply sustainable construction methods by including passive design techniques. In accordance with the local climatic condition, a good passive design not only maintains a comfortable environment in the house, but also consumes less energy all the while performing the same basic functions as the traditional structures. Purpose of the study: The present research focuses on residential villas by analyzing parameters such as illuminance, energy, and cost consumption using Revit (Insight 360) software with two different cases. Methods: Considering Case1 as an existing villa of conventional design and Case2 presenting a proposed villa, a remodeling of the existing villa with an increased window wall ratio (WWR), different fenestration designs, and a new building plan. The authors followed the Indian Green Building Council (IGBC) guidelines relating to illuminance and generated an analytical energy model using Insight 360 to compare the energy consumption and cost efficiency of the cases. Results: The effectiveness of various fenestration types related to direct heat gain, window orientation that would provide more natural light, total operating energy consumption and costs of two different cases of villas are investigated in this paper.
卡纳塔克邦热带干湿气候带住宅建筑节能设计方案评估
简介:印度现有的建筑施工技术增加了运营能耗。因此,有必要通过被动设计技术来应用可持续的建筑方法。根据当地的气候条件,一个好的被动式设计不仅保持了一个舒适的环境,而且在执行与传统结构相同的基本功能的同时消耗更少的能源。研究目的:本研究以住宅别墅为研究对象,采用Revit (Insight 360)软件分析两个不同案例的照度、能耗、成本消耗等参数。方法:将Case1视为传统设计的现有别墅,而Case2则是一个建议的别墅,对现有别墅进行改造,增加窗墙比(WWR),不同的开窗设计,并制定新的建筑方案。作者遵循印度绿色建筑委员会(IGBC)关于照明的指导方针,并使用Insight 360生成了一个分析能源模型,以比较案例的能源消耗和成本效率。结果:本文调查了两种不同别墅案例的不同开窗类型的有效性,包括直接热增益、提供更多自然光的窗户朝向、总运营能耗和成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Architecture and Engineering
Architecture and Engineering Engineering-Architecture
CiteScore
1.80
自引率
0.00%
发文量
26
审稿时长
7 weeks
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