Related Experiment Video
Updated: Jul 10, 2025

Trajectory Data Analyses for Pedestrian Space-time Activity Study
Published on: February 25, 2013
Renewable energy transition to sustainable tourism: extrapolating from core density and non-parametric approaches
Lianfeng Zhang1,2, Yuriy Danko3, Jianmin Wang4
1School of Economics and Management, Henan Institute of Science and Technology, Xinxiang,, 453003, Henan, China. zlfmail@hist.edu.cn.
Abstract:
The globe has faced severe challenges recently, and environmental deterioration has become more prominent. Therefore, the world has taken several initiatives to deal with environmental issues while the problem remains intact. Interestingly, the OECD economies are the leading example to understand the accurate picture of sustainability across the near regions. This study makes an effort to introduce the core factors such as economic development, renewable energy, tourism, natural resources, and innovations in OECD economies over the period of 2000-2021. Similarly, to investigate the study's objectives, this study employs the quantile autoregressive distributed lag model (Q-ARDL). The analyzed results show the significant contribution of renewable energy, tourism, and natural resources to environmental sustainability. In contrast, income and innovations contribute to ecological deterioration. Moreover, the quantile causality is being used by this empirical study to investigate the causal association among studied variables. However, using green energy in sustainable tourism is highly recommended for specified economies. In order to deal with environmental pressure, this research proposes green implications to attain the desired sustainability level.
Related Concept Videos
Energy Budgets
Conservation of Energy: Application
Energy Conservation and Bernoulli's Equation
All the terms in the equation have the dimension of energy per unit volume. The kinetic energy per unit volume is called the kinetic energy density, and the potential energy per unit volume is...
Conservation of Energy
Conservation of Declining Populations
Energy Considerations in Open Channel Flow

