基于区块链的新型系统,从建筑节能角度提高建筑项目的信息完整性

IF 9.8 1区 社会学 Q1 ENVIRONMENTAL STUDIES Environmental Impact Assessment Review Pub Date : 2024-08-21 DOI:10.1016/j.eiar.2024.107637
Yu Gao , Peiyu Xu , Hao Yu , Xiaoxiao Xu
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引用次数: 0

摘要

长期以来,全球人口增长一直与环境问题和可持续发展交织在一起。建筑行业是全球重要的能源消耗行业,对能源消耗总量和温室气体排放量贡献巨大。预计到 2050 年,全球人口将达到 97 亿,建筑能耗预计将持续上升,这凸显了优化能源性能以实现环境可持续性的必要性。尽管许多国家都在努力制定节能目标和战略,但经验证据显示,设计能耗和实际建筑能耗之间存在巨大差距,即所谓的建筑能效差距(BEPG)。这一差距给节能工作带来了巨大挑战,而信息不完整则是造成这一差距的重要原因。为了应对建筑节能项目中信息完整性不足的挑战,本研究提出了一种基于区块链技术的创新解决方案。利用区块链去中心化、透明、防篡改的特性,所提出的模型旨在加强利益相关者之间的信息传输机制。研究确定了建筑项目中与能源相关的十个主要利益相关者和各种信息流。在此基础上,结合区块链技术开发了一个探索性的建筑信息管理模型。该模型具有数据记录、检索、传输和激励机制等功能,以确保数据的不变性和可靠的访问安全性。通过案例研究,从存储成本、延迟和隐私等方面对该模型的性能进行了评估,结果表明在上传和传输文件方面大大节省了时间。所提出的基于区块链的模型为解决建筑能源项目中信息完整性不足的难题提供了可行的解决方案,促进了协作和准确的信息传输。该模式有助于改善项目成果,推动建筑行业的可持续发展。
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A novel blockchain-based system for improving information integrity in building projects from the perspective of building energy performance

Global population growth has long been intertwined with environmental concerns and sustainable development. The building sector, a significant energy consumer worldwide, contributes substantially to total energy consumption and greenhouse gas emissions. With the projected global population projected to reach 9.7 billion by 2050, building energy consumption is expected to rise continuously, emphasizing the need to optimize energy performance for environmental sustainability. Despite efforts by many countries to formulate energy conservation objectives and strategies, empirical evidence reveals a substantial disparity between designed and actual building energy consumption, known as the building energy performance gap (BEPG). This gap poses a significant challenge to energy conservation efforts, and the lack of information integrity is a significant contributor to this gap. To address the challenge of inadequate information integrity in building energy projects, this research proposes an innovative solution based on blockchain technology. By utilizing blockchain's decentralized, transparent, and tamper-resistant nature, the proposed model aims to enhance information transmission mechanisms among stakeholders. Ten key energy-related stakeholders and various information flows within building projects are identified. Based on this, an exploratory architectural information management model incorporating blockchain technology is developed. The model features functionalities such as data recording, retrieval, transmission, and incentive mechanisms to ensure data immutability and reliable access security. Through a case study, the model's performance is evaluated in terms of storage cost, latency, and privacy, demonstrating significant time savings in uploading and transferring files. The proposed blockchain-based model offers a feasible solution to the challenges of inadequate information integrity in building energy projects, promoting collaboration and accurate information transmission. This model contributes to improving project outcomes and advancing sustainable development in the construction industry.

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来源期刊
CiteScore
12.60
自引率
10.10%
发文量
200
审稿时长
33 days
期刊介绍: Environmental Impact Assessment Review is an interdisciplinary journal that serves a global audience of practitioners, policymakers, and academics involved in assessing the environmental impact of policies, projects, processes, and products. The journal focuses on innovative theory and practice in environmental impact assessment (EIA). Papers are expected to present innovative ideas, be topical, and coherent. The journal emphasizes concepts, methods, techniques, approaches, and systems related to EIA theory and practice.
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