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1.
Erkki Koskela Markku Ollikainen Mikko Puhakka 《Journal of Environmental Economics and Management》2002,43(3):497
We incorporate a renewable resource into an overlapping generations model without capital and with quasi-linear preferences. Besides being an input for production the resource serves as a store of value. We characterize the dynamics, efficiency, and stability of the steady-state equilibria. The stability properties are sensitive to the type of resource growth. For constant growth there is only one steady-state equilibrium which is stable and efficient. In the general case of the concave growth function, there are usually at least two steady-state equilibria, one of which is stable and the other one unstable. The unstable steady state is efficient, but the stable one may or may not be. We study the robustness of our results by assuming a logarithmic utility function. We show that for the Cobb–Douglas production function the steady state is unique and stable regardless of whether the equilibrium is efficient or inefficient. Our analytical results are illustrated by numerical calculations. 相似文献
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能源连人类社会赖以生存和发展的重要资源。随着中国经济的持续发展,能源与环境对经济发展的制约作用逐渐得到显现.能源问题与环境问题已经成为国家发展的战略性问题。因此发展生物质能是解决中国能源紧张的重要突破口。发展生物质能的战略措施是建立生物质能源的产业体系。即相对于传统产业体系的第二产业体系。具体战略阶段是:2000—2010年实验探讨阶段(初级阶段);2020—2030年推广应用阶段(发展阶段):2030年一2050年优化提出阶段(提高阶段)。生物质能源的发展战略有助于“三农”问题的解决即农村小康社舍的建设;有助于减轻环境压力;有助于维护国家能源安全。 相似文献
4.
吉林省的风能潜力(英文) 总被引:2,自引:0,他引:2
近两年我国电力突然短缺,已经引起政府的高度重视。由于我国风电发展的紧迫性和风电发展的潜力,特别是国际上正在如火如荼地开发风电的情景,中国- 奥地利政府间双边合作计划将风电评估列入2001~2003 年度合作计划,论文是该计划的成果之一。以我国吉林省为研究对象,采用广泛使用的风机选址算法和空间分布诊断程序( WAsP和ZAWIMOD2),运用数字地形图和遥感资料获得的土地利用图,进而得到数字化的表面粗糙度,再对吉林省的风能潜力进行估算。完成了近1km2 分辨率的距地面60m高度的风速和风能密度计算,并制作了它们的分布图。这是我国第一次在较大区域上估算距地面60m 高度的风速和风能密度,其方法对我国风电资源的评估有重要的借鉴作用。结果显示最有效的风能资源在吉林省的中西部地区,而南部和东部的高风资源区位于山脊和山顶,对风能的开发有一定的限制。 相似文献
6.
This article does not focus on adaptation or mitigation policy directly but on an allied opportunity that exists for the Pacific
Islands via the auspices of the Climate Convention, because the existing very costly energy systems used in the Pacific Island
region are fossil-fuel dependent. It is argued here that efforts can be made towards the development of energy systems that
are ecologically sustainable because Pacific Island nations are eligible to receive assistance to introduce renewable energy
technology and pursue energy conservation via implementation mechanisms of the Climate Convention and, in particular, through
transfer of technology and via joint implementation.
It is contended that assistance in the form of finance, technology, and human resource development from developed countries
and international organizations would provide sustainable benefits in improving the local Pacific Island environments. It
is also emphasized that mitigation of greenhouse gas emissions is not the responsibility of the Pacific Islands as they contribute
very little on a per capita global scale and a tiny proportion of total global greenhouse gas emissions. 相似文献
7.
Life cycle energy impacts of automotive liftgate inner 总被引:1,自引:0,他引:1
This paper compares the life cycle energy use of a cast-aluminum, rear liftgate inner and a conventional, stamped steel liftgate inner used in a minivan. Using the best available aggregate life cycle inventory data and a simple spreadsheet-level analysis, energy comparisons were made at both the single-vehicle and vehicle-fleet levels. Since the product manufacture and use are distributed over long periods of time that, in a fleet, are not simple linear combinations of single product life cycles. Thus, it is all the products in use over a period of time, rather than a single product, that are more appropriate for the life cycle analysis. Using a set of consistent data, analyses also examine sensitivity to the level of analysis and the assumptions to determine the most favorable materials with respect to life cycle energy benefits.As expected, life cycle energy impacts of aluminum are lower than steel at a single-vehicle level – energy savings are determined to be 1.8 GJ/vehicle. Most energy savings occur at the vehicle operation phase due to improved fuel economy from lightweighting. The energy benefits are realized only very close to the average vehicle life of 14 years. With the incremental growth of the vehicle fleet, it takes longer – about 21 years – for aluminum to achieve life cycle equivalence with steel. The number of years aluminum needs to achieve equivalence with steel was found to be quite sensitive to aluminum manufacturing energy and fuel economy. As the steel industry races to compete with other materials for automotive lightweighting, a systems approach, instead of part-to-part comparison, is more appropriate in the determination of viability of aluminum substitution from an energy perspective. 相似文献
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9.
Validation of a hybrid life-cycle inventory analysis method 总被引:2,自引:0,他引:2
Crawford RH 《Journal of environmental management》2008,88(3):496-506
The life-cycle inventory analysis step of a life-cycle assessment (LCA) may currently suffer from several limitations, mainly concerned with the use of incomplete and unreliable data sources and methods of assessment. Many past LCA studies have used traditional inventory analysis methods, namely process analysis and input-output analysis. More recently, hybrid inventory analysis methods have been developed, combining these two traditional methods in an attempt to minimise their limitations. In light of recent improvements, these hybrid methods need to be compared and validated, as these too have been considered to have several limitations. This paper evaluates a recently developed hybrid inventory analysis method which aims to improve the limitations of previous methods. It was found that the truncation associated with process analysis can be up to 87%, reflecting the considerable shortcomings in the quantity of process data currently available. Capital inputs were found to account for up to 22% of the total inputs to a particular product. These findings suggest that current best-practice methods are sufficiently accurate for most typical applications, but this is heavily dependent upon data quality and availability. The use of input-output data assists in improving the system boundary completeness of life-cycle inventories. However, the use of input-output analysis alone does not always provide an accurate model for replacing process data. Further improvements in the quantity of process data currently available are needed to increase the reliability of life-cycle inventories. 相似文献
10.
目的 探究船体加筋板结构在受到重复碰撞载荷作用下塑性变形的累计趋势,分析加筋板主要参数对损伤演化过程的影响,揭示高速、重复冲击下船体加筋结构的变化机理。方法 以一纵三肋加筋板为研究对象,建立基于能量法的刚塑性加筋板动态变形计算方法,以及基于Johnson-Cook本构关系的数值模拟方法,开展不同板架厚度、冲击能量以及冲击尺寸等参数对加筋板变形演化影响的研究。结果 对比分析了理论模型和数值方法,获得了不同参数下的加筋板的结构损伤演化规律。结论 理论解和数值解较为吻合。冲击能量增加后,加筋板的塑性变形量、塑性变形累积速度也随之增加。载荷集中程度越大,对于碰撞边界的破坏效应越大。 相似文献