建物エネルギーシミュレーション(BEM)ソフトウェアを用いたエネルギー効率向上の可能性の分析
ANALYSIS OF THE POSSIBILITIES OF USING BUILDING ENERGY MODELING (BEM) SOFTWARE TO IMPROVE ENERGY EFFICIENCY (原題)
N. Levchenko, A. Bobrakov, M. V. Chechel, D. Ivanenko, L. Hituliar
🤖 gxceed AI 要約
日本語
本論文は、建物のエネルギー効率向上におけるBEM(建物エネルギーシミュレーション)技術の役割を分析する。BEMが新築・既存建物のエネルギー消費計算を自動化し、省エネ設計の選択を支援することを示す。また、BIMとの統合の重要性を強調し、都市スケールでのエネルギー効率評価手法を検討する。ウクライナの戦後復興への応用可能性にも言及する。
English
This paper analyzes the role of Building Energy Modeling (BEM) in improving building energy efficiency. It highlights how BEM automates energy calculations, supports energy-efficient design choices, and emphasizes integration with BIM for higher accuracy. It also explores urban-scale energy efficiency assessment methods and their application to Ukraine's post-war reconstruction.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では、省エネ基準の適合義務化やZEB普及が進む中、BEMを活用した設計・評価の効率化が期待される。本論文は、BIMとBEMの連携による精度向上や、都市スケールでのエネルギー評価手法の可能性を示唆しており、日本の建築業界や自治体の取り組みに参考となる。
In the global GX context
Globally, BEM is increasingly recognized as a key tool for achieving net-zero building targets. This paper contributes by discussing the integration of BEM with BIM and proposing urban-scale energy efficiency assessment methods, which are relevant to international efforts on sustainable urban development and post-conflict reconstruction.
👥 読者別の含意
🔬研究者:BEMとBIMの統合によるエネルギー評価の精度向上や都市スケールへの拡張手法に関する知見が得られる。
🏢実務担当者:BEMソフトウェアの選定や導入を検討する際の参考情報として、省エネ設計プロセスの効率化に役立つ。
🏛政策担当者:建築分野の省エネ規制やBIM/BEM導入促進政策を検討する際の背景情報として有用。
📄 Abstract(原文)
This article focuses on the current problem of using energy modeling technologies for buildings and structures to ensure their energy efficiency. The importance of reducing carbon and greenhouse gas emissions, the need to reduce the amount of excess building materials and their rational use is noted. It is considered how software for energy modeling of buildings and structures helps in identifying problem areas of projects for new construction and existing facilities, how BEM technologies accelerate and automate the process of calculating energy costs and help in choosing the most energy-efficient project option. Presented the main factors that affect the energy efficiency of buildings, such as the orientation of the building relative to the sun, the size of window openings and types of glazing. Considered how these building characteristics are set and edited when using BEM technology. Emphasized the urgency of using BEM, the advantages and disadvantages of using software are given. Examples of the most common software for energy modeling of buildings and structures, the features of these programs are given. The importance of using energy modeling together with building information modeling is emphasized, because in this way the calculations reach their highest accuracy. Foreign experience in using BIM is considered, new concepts for application for ensuring energy efficiency of urban development are analyzed, the results of the proposed methods for determining the energy efficiency of a city are analyzed, and the possibilities of their application in the context of the post-war reconstruction of Ukraine are indicated. The article also shows the biggest problems and barriers to the development of energy modeling software as a permanent part of the construction industry, and provides ways to overcome such barriers. In particular, the problems of the lack of qualified BIM specialists, the incompleteness of regulatory documentation on the implementation and use of energy modeling technology emphasized.
🔗 Provenance — このレコードを発見したソース
- semanticscholar https://uajcea.pgasa.dp.ua/article/download/369803/354356first seen 2026-08-30 05:25:33 · last seen 2026-09-22 05:13:50
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