Research on Security Threat and Evaluation Model of New Energy Plant and Station

Author(s):  
Xingdong Bai ◽  
Lei Liu ◽  
Dongming Wei ◽  
Jingyi Cao
2014 ◽  
Vol 686 ◽  
pp. 458-462
Author(s):  
Zi Yan Shi ◽  
Guo Lin Zhao ◽  
Qiao Lin Hu

The security evaluation for an information network system is an important management tool to insure its normal operation. We must realize the significance of the comprehensive network security risks. A network evaluation model and the algorithm are presented and adapt the hierarchical method to characterize the security risk situation. The evaluation method is used to evaluate the key nodes and the mathematics is used to analyze the whole network security situation. Compared with others, the method can automatically create a rule-based security evaluation model to evaluate the security threat from the individual security elements and the combination of security elements, and then evaluation the network situation. It is shown that this system provides a valuable model and algorithms to help to find the security rules, adjust the security measure, improve the security performance and design the appropriate security risk evaluation and management tools.


2012 ◽  
Vol 512-515 ◽  
pp. 2607-2614 ◽  
Author(s):  
Li Fang Liu ◽  
Yan Jia ◽  
Zhu Qing Wu

In this paper, multidimensional evaluation model is made to select and analysis the new energy vehicles developing direction, namely to maturity, cost, energy resources, pollution and greenhouse gas emissions, energy efficiency and technical characteristics. And the research results show that, China should take the new energy vehicle technology line with "oil-electric hybrid, pure electric, improved hybrid- hydrogen fuel cell (hydrogen power), rechargeable hybrid" as the main line, and adjustment should be made with the technology innovation, industrial development, conditions and so on.


2013 ◽  
Vol 807-809 ◽  
pp. 392-401 ◽  
Author(s):  
Chong Jian Ma ◽  
Hui Ming ◽  
Hua Shou Li

currently, the comprehensive utilization of red mud has been a worldwide challenge. Due to high alkaline level and a serious lack of nutrients, a great amount of red mud has been stocked in the open rather than covered by plantations, which showed harms to the atmosphere, water and soil environment. In order to explore a more effective phytoremediation approach of red mud and screen plants with strong tolerance, the research group applied Pennisetum hybridum as the experiment material for a long term, which is a new energy plant in the field of ecological environmental management and restoring. Through the addition of different types of addictives, his experiment conducted the plantation Pennisetum hybridum based on red mud improvement matrix. Besides, a systematic research of the improvement effects of different ameliorants on red mud was conducted. Concurrently, the growth of Pennisetum hybridum in different groups of the experiment was investigated. Their mutual effect on the improvement effect of red mud was analyzed systematically. Results demonstrated that effective raw materials of red mud improvement include phosphogypsum, wastes of polluted and edible mushrooms. These can significantly reduce the pH and conductivity of red mud. After the improvement, Pennisetum hybridum can grow vigorously in the mixture matrix of red mud, and significantly improve the red mud matrix. Concurrently, considerable biomasses were obtained. The experiment results demonstrated that the addition of necessary nutriments for the plant growth was very important for red mud. The research has laid a solid foundation for the identification of the great potentials of Pennisetum hybridum in red mud phytoremediation, the further exploration of its role of restoring of red mud and the extensive application and promotion in the future.


2021 ◽  
Vol 11 (1) ◽  
pp. 6730-6733
Author(s):  
K. A. Samo ◽  
A. Baharun ◽  
A. R. H. Rigit

Renewable energy sources are considered a part of the future of energy production in Malaysia. The main objectives of this research are to append a new energy extraction technique that harvests energy from tides and to develop a preliminary design for a tidal energy plant at Kuching Barrage. Knowing the diameter of the turbine, the dimensions of the powerhouse are achieved in conjunction with site conditions. The centerline should be at least below the low water tide so that the tide is at all times guaranteed to be submerged. Based on this, the powerhouse has a 24.61m length, is about 100m in distance across, and its elevation is 36.39m. The construction is located downstream and the centerline habitation at -1.15 and below LSD. The calculated tidal energy plant is comprised of four bulb-type turbines installed at each barrage gate. The bulb-type turbine blades would face the sea site with 11.32m length of the draft tube. This study detailed feasibility study can be implemented.


2019 ◽  
Vol 11 (9) ◽  
pp. 2635 ◽  
Author(s):  
Fansheng Meng ◽  
Xiaoye Jin

In order to alleviate the pressures of environmental pollution and the energy crisis, and to lay out and capture huge emerging markets as soon as possible, all countries in the world are vigorously developing new energy vehicles (NEVs). This paper analyzes the factors influencing the development capability of the NEV industry from the aspects of autonomy, controllability, and stability, and constructs an evaluation index system. Based on the improved entropy method and the catastrophe progression method, we establish an evaluation model for the development capability of China’s NEV industry and comprehensively evaluate the development capability of 15 new energy auto companies. An empirical analysis finds that the outlook for the overall development capability of China’s NEV industry is not optimistic, and there is a big gap in the industry, lacking core technology and independent innovation capability. We propose countermeasures such as increasing research and development (R&D) investment and innovation, and improving policy support.


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