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The Next Big Adventure Planning Your OE
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作者 william murray 赵忠德 《英语知识》 2000年第11期14-15,共2页
If you are starting to think about settingout,STA Travel on campus can give youall kinds of helpful information should youwant to investigate possibilities with them.Howie Yee,who has worked for the UCSASTA Travel bra... If you are starting to think about settingout,STA Travel on campus can give youall kinds of helpful information should youwant to investigate possibilities with them.Howie Yee,who has worked for the UCSASTA Travel branch for the last four years,recommends a number of useful resources tohelp people organise their trips,including theSTA website(www.statravel,co.nz)。 展开更多
关键词 The Next Big Adventure Planning Your OE 意大利
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鹿特丹公约:为什么在这里和它试图达到什么目的?
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作者 william murray Sheila Logan 刘志强(译) 《产业与环境》 CAS 2005年第2期9-11,共3页
关键词 合成化学品 持久性 环境管理 鹿特丹公约 安全管理
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Development and Test of an Experimental Apparatus to Study Thermal-Choking in Ideal Gases and Self-decomposition in Superheated N2O
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作者 Patrick Lemieux Alberto Fara +1 位作者 Pablo Sanchez william murray 《Journal of Energy and Power Engineering》 2015年第1期25-39,共15页
N2O represents a popular oxidizer for hybrid rocket motors for a variety of reasons, including safety, ease of access and self-pressurization. It is often used as a saturated two-phase fluid in these applications to t... N2O represents a popular oxidizer for hybrid rocket motors for a variety of reasons, including safety, ease of access and self-pressurization. It is often used as a saturated two-phase fluid in these applications to take advantage of self-pressurization. Recent interest in using this oxidizer in regeneratively cooled engines requires a detailed heat transfer process analysis to the coolant, in order to quantify performance. Since the injection of N2O typically takes place in the two-phase region, our study focuses on heat transfer rates in this region, and extends the region to include superheated vapor. This analysis is critical for these cooling applications, because the exothermic decomposition nature of N2O also means that unchecked heating in the superheated region may result in a runaway reaction in the cooling passages. Furthermore, provided that sufficient heat transfer rates are available, N2O is expected to accelerate in the cooling passages due to Rayleigh flow effects much like those of a calorically perfect gas. The proximity of superheated N2O to its saturated vapor curve, at the conditions studied here, makes the suitability of a perfect gas model questionable, but that benchmarks is still useful. This paper presents the development of an experimental apparatus (a "Rayleigh tube"), specifically designed to study this problem, and test the analytical methods developed to model it. Since we focus on the development of the apparatus, the data presented were uses primarily calorically perfect gas surrogates, but the goal is to apply the apparatus and method to N2O. The design and construction of the Rayleigh tube is presented, along with preliminary results with perfect gases. Finally, we present preliminary results on heated N2O flow. Using a simple model for predicted dry-out point, we investigate where superheating may be expected to occur. We present estimates of critical heating and compare them to the heat required to achieve self-decomposition. 展开更多
关键词 Self-decomposition N2O Rayleigh apparatus
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