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基于气象水文蒸发测量原理的水位温度矫正装置设计 被引量:1
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作者 黄松岭 《陕西水利》 2019年第2期55-56,共2页
随着社会发展的不断加快,水位温度测量工作变得越来越重要,但由于当前科学技术水平的限制,水位温度测量工作繁杂,精度低,阻碍后续工作的进行。针对这一现象,利用气象水文蒸发测量原理对水位温度矫正装置进行改造创新,强化检测装置和界... 随着社会发展的不断加快,水位温度测量工作变得越来越重要,但由于当前科学技术水平的限制,水位温度测量工作繁杂,精度低,阻碍后续工作的进行。针对这一现象,利用气象水文蒸发测量原理对水位温度矫正装置进行改造创新,强化检测装置和界面设计,并结合新疆地质条件进行实验验证,结果显示改造后的水位温度测量数据更加能够反映出水体的真实情况,为水资源控制提供可靠依据。 展开更多
关键词 气象水文蒸发测量 水位温度矫正 系统界面设置
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秦山核电二期堆芯温度水位测量系统改造
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作者 李翰宇 杜泽荣 +1 位作者 胡昌森 姚彤 《仪器仪表用户》 2020年第12期64-68,共5页
秦山核电二期1、2号机组堆芯温度水位测量系统自投用以来已运行10余年时间,由于国外生产厂家倒闭,备件供应和技术服务已停止多年。本文着重介绍了改造背景、实施效果及实施过程遇到的问题,通过对堆芯冷却监测机柜升级替换,能够从根本上... 秦山核电二期1、2号机组堆芯温度水位测量系统自投用以来已运行10余年时间,由于国外生产厂家倒闭,备件供应和技术服务已停止多年。本文着重介绍了改造背景、实施效果及实施过程遇到的问题,通过对堆芯冷却监测机柜升级替换,能够从根本上解决旧系统中出现的备件短缺问题,恢复设备可用性。同时,新系统采用多重冗余,具有模拟系统所不具备的自诊断功能、高可靠性、高精度等优点。 展开更多
关键词 堆芯温度水位测量系统 反应堆堆芯温度 压力容器水位 改造
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核电厂乏燃料池一体化液位温度测量装置设计 被引量:1
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作者 孙益晖 文继 孙琳 《中国核电》 2015年第2期125-128,共4页
文章介绍了福清核电3号、4号机组乏燃料池完成同时同点液位温度测量装置,无需分设两套设备;失去外电源时仍能正常工作,响应速度<50 ms、测量精度水位±5 mm,温度±5℃,具有在线校验功能,适用于核电厂的池、坑及其他容器的水... 文章介绍了福清核电3号、4号机组乏燃料池完成同时同点液位温度测量装置,无需分设两套设备;失去外电源时仍能正常工作,响应速度<50 ms、测量精度水位±5 mm,温度±5℃,具有在线校验功能,适用于核电厂的池、坑及其他容器的水位温度测量。 展开更多
关键词 水位温度一体测量 失去外电源 响应速度〈50ms 在线校验
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用微机控制锅炉安全运行
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作者 殷铭工 刘建辉 《煤矿安全》 CAS 北大核心 2002年第7期53-55,共3页
小型锅炉设备是一种高温、高压、有爆炸危险的特种设备。粗放管理会埋下安全隐患 ,往往造成重大事故。用微机控制其安全运行 ,将监控重点放在锅炉压力、水位、温度等关键环节 。
关键词 微机控制 锅炉 安全运行 粗放管理 压力 水位温度
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大坝不利运行工况的影响及控制
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作者 邢林生 《大坝与安全》 1994年第2期7-14,共8页
本文结合工程实践,就低温高水位、高温低水位、低温低水位等不利运行工况对大坝的影响机制,作了定性和定量的分析研究.指出控制运行水位,是避免产生不利运行工况,确保大坝安全的有效手段.
关键词 大坝 温度水位的组合 影响与控制
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Stable Isotopes in Precipitation in Xilin River Basin,Northern China and Their Implications 被引量:9
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作者 WU Jinkui DING Yongjian +3 位作者 YE Baisheng YANG Qiyue HOU Dianjiong XUE Liyang 《Chinese Geographical Science》 SCIE CSCD 2012年第5期531-540,共10页
Under the increasing pressure of water shortage and steppe degradation, information on the hydrological cycle in steppe region in Inner Mongolia, China is urgently needed. An intensive investigation of the temporal va... Under the increasing pressure of water shortage and steppe degradation, information on the hydrological cycle in steppe region in Inner Mongolia, China is urgently needed. An intensive investigation of the temporal varia-tions of δD and δ^18O in precipitation was conducted in 2007-2008 in the Xilin River Basin, Inner Mongolia in the northern China. The 6D and δ^18O values for 54 precipitation samples range from +1.1%o to -34.7%0 and -3.0%0 to -269%0, respectively. This wide range indicates that stable isotopes in precipitation are primarily controlled by differ-ent condensation mechanisms as a function of air temperature and varying sources of vapor. The relationship between δD and δ^18O defined a well constrained line given by δD = 7.896180 + 9.5, which is nearly identical to the Meteoric Water Line in the northern China. The temperature effect is clearly displayed in this area. The results of backward tra-jectory of each precipitation day show that the vapor of the precipitation in cold season (October to March) mainly originates from the west while the moisture source is more complicated in warm season (April to September). A light precipitation amount effect existes at the precipitation event scale in this area. The vapor source of precipitation with higher d-excesses are mainly from the west wind or neighboring inland area and precipitation with lower d-excesses from a monsoon source from the southeastern China. 展开更多
关键词 PRECIPITATION stable isotopes temporal variation Xilin River Basin
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Heat Transfer Analysis of Sterilization of Canned Milk Using Computational Fluid Dynamics Simulations 被引量:1
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作者 Prateek Dhayal Narayansing Chhanwal Chinnaswamy Anandharamakrishnan 《Journal of Food Science and Engineering》 2013年第11期571-583,共13页
A uniform and effective heat distribution inside the canned milk is very crucial for achieving effective sterilization. It is extremely difficult to establish the temperature profile inside the canned milk during cont... A uniform and effective heat distribution inside the canned milk is very crucial for achieving effective sterilization. It is extremely difficult to establish the temperature profile inside the canned milk during continuous industrial scale operation. Computational fluid dynamics (CFD) simulation can be a useful tool to determine the temperature distribution of the fluid inside the can during the sterilization process. A CFD model was developed for the sterilization of canned milk at 121 ~C. The simulation results were validated with the experimental measurements of temperatures. The formation and movement of slowest heating zone (SHZ) during the sterilization process was tracked. Moreover, effect of can position (vertical and horizontal) during processing on milk temperature distribution inside the can was also investigated. Higher Grashof and Rayleigh numbers were obtained for vertical positioning of can compared to horizontal can processing. Further, effectiveness of the process was calculated based on F-value and these results reinforced the positive effect of horizontal position of can during the sterilization process. 展开更多
关键词 CFD HORIZONTAL STERILIZATION canned milk.
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