期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
生活态度与工业园区规划设计——安康生物科技工业园中心地段详细规划设计 被引量:3
1
作者 侯全华 蔡辉 刘乃齐 《长安大学学报(建筑与环境科学版)》 2003年第3期31-34,共4页
以对科技工业园区的认识入手 ,阐明其存在的表层现象 ,分析产生现象的深层原由 .试图以安康生物科技工业园中心地段详细规划设计为实例 ,探索该规划设计以人的生活态度、真实需求为出发点和目标 ,创造出满足人们生活意向的空间和场所 .
关键词 规划设计 科技工业园区 安康生物科技工业园中心 城市规划 空间组织形式
下载PDF
银桥乳业投资2.5亿元兴建生物科技工业园
2
《中国乳业》 2005年第7期56-56,共1页
本刊辑:日前,西安高新区内锣鼓喧天、彩旗飘扬,农业产业化国家重点龙头企业——西安银桥乳业集团投资2.5亿元建设的生物科技工业园开工典礼在这里隆重举行。
关键词 西安市银桥乳业集团 生物科技工业 农业产业化 陕西 经营模式 经营理念 品牌建设
下载PDF
马来西亚生物科技及医疗器材市场概况
3
《国际市场导刊》 2003年第24期36-36,35,共2页
关键词 马来西亚 生物科技工业 医疗器材市场 市场规模 消费习性
下载PDF
Combustion Irreversibilities: Numerical Simulation and Analysis
4
作者 Valter Silva Abel Rouboa 《Journal of Thermal Science》 SCIE EI CAS CSCD 2012年第4期377-383,共7页
An exergy analysis was performed considering the combustion of methane and agro-industrial residues produced in Portugal (forest residues and vines pruning). Regarding that the irreversibilities of a thermodynamic pro... An exergy analysis was performed considering the combustion of methane and agro-industrial residues produced in Portugal (forest residues and vines pruning). Regarding that the irreversibilities of a thermodynamic process are path dependent, the combustion process was considering as resulting from different hypothetical paths each one characterized by four main sub-processes: reactant mixing, fuel oxidation, internal thermal energy exchange (heat transfer), and product mixing. The exergetic efficiency was computed using a zero dimensional model developed by using a Visual Basic home code. It was concluded that the exergy losses were mainly due to the internal thermal energy exchange sub-process. The exergy losses from this sub-process are higher when the reactants are preheated up to the ignition temperature without previous fuel oxidation. On the other hand, the global exergy destruction can be minored increasing the pressure, the reactants temperature and the oxygen content on the oxidant stream. This methodology allows the identification of the phenomena and processes that have larger exergy losses, the understanding of why these losses occur and how the exergy changes with the parameters associated to each system which is crucial to implement the syngas combustion from biomass products as a competitive technology. 展开更多
关键词 EXERGY Combustion paths Combustion sub-processes Exergetic efficiency Visual Basic SYNGAS
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部