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Institution

Xuzhou Institute of Technology

EducationXuzhou, China
About: Xuzhou Institute of Technology is a education organization based out in Xuzhou, China. It is known for research contribution in the topics: Catalysis & Computer science. The organization has 1696 authors who have published 1521 publications receiving 13541 citations.


Papers
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Journal ArticleDOI
TL;DR: A multi-robot cooperation method based on niching particle swarm optimization is presented, which is applied to various scenarios of localizing multiple odor sources, and the experimental results confirm its effectiveness.

60 citations

Journal ArticleDOI
TL;DR: Wang et al. as mentioned in this paper proposed a system dynamic (SD) model to forecast the change of China's coal production capacity in three scenarios: baseline as usual scenario (BUS), policy regulation scenario (PRS) and strengthening policy scenario (SPS).
Abstract: Given the primary status of China’s coal in the energy structure, the scientific prediction of China’s coal production capacity (CPC) is of great significance to the orderly exploitation and use of coal resources and emission-reduction policy-making. This paper proposes a system dynamic (SD) model to forecast the change of China’s CPC in three scenarios – Baseline as Usual Scenario (BUS), Policy Regulation Scenario (PRS) and Strengthening Policy Scenario (SPS). Results show that: (1) SD model performs well in simulating the historical data and has a remarkable consistency between model behavior and actual situation. (2) Because of the continuous economic growth, China’s coal demand and carbon dioxide emissions will continue increasing and not peak by the year 2020 in the three scenarios, although the energy efficiency and energy consumption structure have actually improved. However, the expected goal of China’s carbon dioxide emission reduction is fully achieved in both the PRS and the SPS. (3) In the PRS, China’s coal production and demand in the year 2020 will be 4.334 and 3.852 billion tons, respectively. The relative overproduction appears to be aggravated, and the “supply-over-demand” situation in the coal market will not change noticeably. (4) China’s CPC will reach 5.144, 4.635 and 4.492 billion tons per year by the year 2020 in the BUS, the PRS and the SPS, respectively. China’s coal overcapacity will continue and face a severe challenge in the future. (5) The gap between coal supply and demand tends to be greater in the PRS and the SPS, and the PRS is considered to be the most conducive scenario to control China’s CPC because this scenario is consistent with China’s national circumstances. Finally, for abating the amount of China’s CPC, some suggestions are given from the perspective of supply-side reform in China’s coal industry.

59 citations

Journal ArticleDOI
TL;DR: In this article, a new approach of analytical solutions is carried out on the thermal transport phenomena of Casson fluid based on Prabhakar's fractional derivative with generalized Fourier's law.
Abstract: In this paper, a new approach of analytical solutions is carried out on the thermal transport phenomena of Casson fluid based on Prabhakar's fractional derivative with generalized Fourier's law. The governing equations are obtained through constitutive relations and analytical solutions obtained via Laplace transform technique. Solutions for temperature and velocity fields were analyzed through graphical description by Mathcad software. The fluid properties revealed various aspects for different flow parameters as well as fractional parameter values and found important results. As a result, it is found that fluid properties can be enhanced by increasing the values of fractional parameters and useful in some experimental data fitting in the heating and cooling phenomena especially electronic devices.

57 citations

Journal ArticleDOI
TL;DR: Polluted surface water was remediated in a bioreactor using biofilms on filamentous bamboo in batch and continuous flow modes and the COD cr removal rate of the enhanced systems increased more than 13% relative to a controlled system.

57 citations


Authors

Showing all 1711 results

NameH-indexPapersCitations
Peng Wang108167254529
Qiong Wu5131612933
Wenping Cao341764093
Bin Hu302133121
Syed Abdul Rehman Khan291312733
Jingui Duan29933807
Vivian C.H. Wu251052566
Lei Chen16991062
Chao Wang1674741
Wenbin Gong1627953
Jing Li16401025
Chao Liu1543737
Qinglin Wang1472595
Yaocheng Zhang1454566
Chao Wang1325774
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20237
202228
2021328
2020181
2019121
201873