エネルギー監査:EDGEおよびLEEDグリーンビルディング基準への必須経路
Energy Auditing: A Mandatory Pathway for EDGE and LEED Green Building Standards (原題)
(著者不明)
🤖 gxceed AI 要約
日本語
商業施設(モール)を対象に、地域コード準拠のベースケースモデルとEDGE基準(ベンチマーク比20%削減)適用モデルを比較し、電力・水消費、建材の炭素内包量、太陽光導入によるカーボンニュートラル化を検討した研究。モールの光熱費請求書を分析し、負荷率・年間消費量・最大需要指標を評価、消費電力削減のためのダッシュボード提案も行う。
English
A mall case study compares a local-code base case against an EDGE green-building model (20% benchmark reduction), examining electricity/water use, embodied carbon in materials, and solar-based carbon neutrality. Utility bills are analyzed for load factor, annual consumption, and maximum demand, with a dashboard proposed to monitor and cut facility power use.
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ZEB・省エネ法・建築物省エネ法対応が進み、EDGE/LEEDは国際認証として不動産・建設セクターのESG開示と連動する。エネルギー監査とダッシュボードによる可視化は、Scope1/2算定やSSBJ開示の基礎データ整備に直結する。
In the global GX context
Green building certification (LEED/EDGE) and energy auditing feed directly into building-sector Scope 1/2 accounting and disclosure under ISSB/CSRD. The paper's focus on embodied carbon and renewable integration aligns with global net-zero building pathways and transition finance for real estate.
👥 読者別の含意
🔬研究者:Provides a replicable base-case vs. green-standard modeling approach for building energy and embodied carbon assessment.
🏢実務担当者:Offers a practical template for utility-bill analysis, load-factor evaluation, and dashboard-based energy monitoring in commercial facilities.
🏛政策担当者:Illustrates how local building codes and green standards interact, useful for designing energy-efficiency mandates and benchmarking policies.
📄 Abstract(原文)
Electricity is one of the most popular energy types and its consumption is increasing due to in-efficient equipment installed at sites or already completed their useful life which will result on the current economy of the state / province to procure the fossil fuel for its electricity generation and run the transportation system. In 2022, buildings are used one third (34 %) of the global energy, where majority of the energy used in the residential sector. Total energy consumption in the building sector increases with an average of 1% increase per year over the last decade. According to UN Environmental Global status report 2024, Out of Global energy consumes in the fiscal year 2022, which is 115GWh, almost 39 GWh were consumed in construction building sector having an energy utilization in construction material constitute is 4 % and residential is 21 %. Similarly, energy used in building is generated by fossil fuel burning and the energy pollution caused by buildings is often not obvious because it is removed from the point of use. It is belief and confirmed that almost half of the electricity produced in the world in 2022 was consumed by the building sector. In this paper, A base case model of the Mall has been developed represents the local code and standard to consume the electricity and water and compare it with modified version of building by applying the Edge green building standard 20% reduction on benchmark. The study focusses on carbon embodied in material along net emission of carbon by utilizing different fossil fuel and carbon neutrality through the installation of solar renewable energy resources. In addition, Mall utility bill has been analyzed by demonstrating the load factor of the mall along with yearly Consumption of energy, Maximum Demand indicator evaluation and suitable dash board recommendation to monitor and reduce the power consumption in the entire facility
🔗 Provenance — このレコードを発見したソース
- semanticscholar https://doi.org/10.4028/p-bo4gb0first seen 2026-09-12 05:42:24 · last seen 2026-09-22 05:12:59
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