Prediction of GHG emissions from Chengdu Metro in the construction stage based on WOA-DELM
Author:
Publisher
Elsevier BV
Subject
Geotechnical Engineering and Engineering Geology,Building and Construction
Reference46 articles.
1. Predicting the carbon dioxide emission of China using a novel augmented hypo-variance brain storm optimization and the impulse response function;Boamah;Environ. Technol.,2021
2. Initial greenhouse gas emissions from the construction of the California High Speed Rail infrastructure: A preliminary estimate;Chang;Dissertations Theses - Gradworks.,2009
3. Life cycle greenhouse gas assessment of infrastructure construction for California's high-speed rail system;Chang;Transp. Res. D,2011
4. PID parameters optimization based on wind driven optimization algorithm;Chen;Comput. Eng. Appl.,2016
5. Swarm-based optimization as stochastic training strategy for estimation of reference evapotranspiration using extreme learning machine;Chia;Agric. Water Manage.,2021
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