Balancing of life cycle carbon and cost appraisal on alternative wall and roof design verification for residential building

A. T. Balasbaneh, A. Marsono, E. Kermanshahi
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引用次数: 16

Abstract

The purpose of this study is to describe life cycle cost (LCC) and life cycle assessment (LCA) evaluation for single story building house in Malaysia. Two objective functions, namely, LCA and LCC, were evaluated for each design and a total of 20 alternatives were analyzed. Two wall schemes that have been adopted from two different recent studies toward mitigation of climate change require clarification in both life cycle objectives.,For this strategic life cycle assessment, Simapro 8.3 tool has been chosen over a 50-year life span. LCC analysis was also used to determine not only the most energy-efficient strategy, but also the most economically feasible one. A present value (PV)-based economic analysis takes LCC into account.,The results will appear in present value and LC carbon footprint saving, both individually and in combination with each other. Result of life cycle management shows that timber wall−wooden post and beam covered by steel stud (W5) and wood truss with concrete roof tiles (R1) released less carbon emission to atmosphere and have lower life cycle cost over their life span. W5R1 releases 35 per cent less CO2 emission than the second best choice and costs 25 per cent less.,The indicator assessed was global warming, and as the focus was on GHG emissions, the focus of this study was mainly in the context of Malaysian construction, although the principles apply universally. The result would support the adoption of sustainable building for building sector.
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住宅墙体屋面替代设计验证的全生命周期碳平衡与成本评估
本研究的目的是描述马来西亚单层住宅的生命周期成本(LCC)和生命周期评估(LCA)评估。对每个设计进行LCA和LCC两个目标函数评价,并对20个备选方案进行分析。最近针对减缓气候变化的两项不同研究采用了两种隔离方案,需要澄清这两个生命周期目标。对于这种战略生命周期评估,Simapro 8.3工具已被选择超过50年的生命周期。LCC分析不仅确定了最节能的策略,而且确定了最经济可行的策略。基于现值(PV)的经济分析将LCC考虑在内。,结果将显示在现值和LC碳足迹节约中,无论是单独还是相互结合。生命周期管理结果表明,采用钢钉覆盖的木墙-木柱和木梁(W5)和采用混凝土屋面瓦覆盖的木桁架(R1)在其生命周期内对大气的碳排放更少,生命周期成本更低。W5R1的二氧化碳排放量比第二好的选择少35%,成本低25%。评估的指标是全球变暖,由于重点是温室气体排放,本研究的重点主要是在马来西亚的建设背景下,虽然原则适用于普遍。研究结果将支持建筑行业采用可持续建筑。
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