steam trap俄文steam退款原因怎么写写

疏水器(Steam Trap)工作原理及安装要求_百度文库
两大类热门资源免费畅读
续费一年阅读会员,立省24元!
疏水器(Steam Trap)工作原理及安装要求
上传于|0|0|文档简介
&&疏水器(Steam Trap)工作原理及安装要求
阅读已结束,如果下载本文需要使用1下载券
想免费下载本文?
定制HR最喜欢的简历
下载文档到电脑,查找使用更方便
还剩5页未读,继续阅读
定制HR最喜欢的简历
你可能喜欢名牌蒸汽疏水阀STEAMTRAP_价格_图片_简介_爱帮网
价格:面议
最小采购量:10 品牌/型号:红峰920/HRF150A 产品用途:高温高压、超高压饱和蒸汽和过热蒸汽管线
名牌蒸汽疏水阀STEAMTRAP的详细信息
品牌/型号:红峰920/HRF150A产品用途:高温高压、超高压饱和蒸汽和过热蒸汽管线产品别名:高压过热蒸汽疏水阀STEAMTRAP
名牌蒸汽疏水阀STEAMTRAP红峰牌系列疏水阀产品是国内知名品牌疏水阀,已有二十多年的生产历史,我公司拥有国内唯一的专业疏水阀研究所和先进的疏水阀动作性能检测实验室。公司疏水阀研究所经过对国内外疏水阀门的精心研究,开发设计出了符合国内各种蒸汽热工艺要求的疏水阀产品疏水阀产品均按GB/J、GB12251-89标准设计生产,同时根据用户要求设计生产日本JIS、美国ANSI、API、德国DIN等标准的疏水阀产品。公司生产的各种疏水阀,各项指标均已达到或超过国家标准。以新颖的结构、优良的材质、先进的生产工艺和显著的节能效果等,赢得了广大用户的信赖,并得到上级和有关部门的重视,为国内各类大型工程配套了大批量优质高性能疏水阀产品如国内上海90万吨乙烯工程等多项乙烯工程,扬-巴一体化工程,扬子江醋酸工程,多项聚氯乙烯工程,国内所有大化肥工程,火电厂工程,热电厂工程。出口到以苏丹喀土穆炼厂为代表的多项国际工程中。6年连续评为中国石油天然气集团公司一级供应网络成员厂,中国石化物资资源市场成员单位,中国石油化工集团公司工程建设部阀门产品推荐单位。2004年3月,通过GB/T &ISO 国际质量体系认证。证书号:R2M,2006年1 月成功重组改制为股份制有限责任公司。
喜欢名牌蒸汽疏水阀STEAMTRAP的用户也关注了
无负压给水设备,无负压供水设备,
无负压给水设备,无负压供水设备,
武汉无负压供水设备,
无负压给水设备,无负压供水设备,
与“名牌蒸汽疏水阀STEAMTRAP”相关的商家
做客推荐,让您感受不一样的生活
杭州来必可饮水设备有限公司&&共59人浏览
杭州萧山节能工业电炉厂&&共100人浏览
常州爱索电子有限公司&&共148人浏览What is a Steam Trap? | TLV - A Steam Specialist Company (International)
Browse Products by Category
Find a Specific Model
Document Search
Steam Engineering Tutorials
Engineering Calculator
Steam Tables
& What is a Steam Trap?
Steam traps are a type of automatic valve that filters out condensate (i.e. condensed steam) and non-condensable gases such as air without letting steam escape. In industry, steam is used regularly for heating or as a driving force for mechanical power. Steam traps are used in such applications to ensure that steam is not wasted.
defines steam traps the following way:
steam trap - Self contained valve which automatically drains the condensate from a steam containing enclosure while remaining tight to live steam, or if necessary, allowing steam to flow at a controlled or adjusted rate. Most steam traps will also pass non-condensable gases while remaining tight to live steam.ANSI/FCI 69-1-1989
Why are Steam Traps Installed?
Steam is formed when water vaporizes to form a gas. In order for the vaporization process to occur, the water molecules must be given enough energy that the bonds between the molecules (hydrogen bonds, etc.) break. This energy given to convert a liquid into a gas is called 'latent heat'.
Steam-based heating processes use latent heat and transfer it to a given product. When the work is done (i.e. steam has given up its latent heat), steam condenses and becomes condensate. In other words, condensate does not have the ability to do the work that steam does. Heating efficiency will therefore suffer if condensate is not removed as rapidly as possible, whether in steam transport piping or in a heat exchanger.
For further details on the steam heating mechanism, read the following article on .
Reason Steam Traps are Necessary (e.g. Jacketed Kettle)
What's Wrong with Using a Manual Valve?
It is sometimes believed that the load of condensate can be regulated with a regular valve instead of a steam trap by simply adjusting the valve opening manually to match the amount of condensate generated.
Theoretically, this is possible. However, the range of conditions necessary to achieve this are so limited that in practice it is not a realistic solution.
The largest problem with this method is that having the valve opening set to discharge a fixed amount of fluid means that fluctuations in the load of condensate cannot be compensated for. Indeed, the amount of condensate generated in a given system is not fixed. In the case of equipment, the load of condensate at start-up differs from that during normal operation. Fluctuations in the product load also result in differences in the amount of condensate generated. Similarly, in the case of steam transport piping, the load of condensate may differ depending on outdoor air temperature or as a result of heavy rain or snow.
If the device can't respond to fluctuations in condensate load, condensate that should be discharged will instead pool inside the equipment/pipe and heating efficiency will suffer. On the other hand, when the condensate load lessens, steam leakage will occur and steam will be wasted.
Reduction in Heating Efficiency and Wasted Steam
Steam Traps Come in Various Different Mechanisms
Various types of steam trap mechanisms (operation principles) have been developed to automatically discharge condensate and non-condensable gases. The most widely used mechanisms are those that rely on differences in temperature, specific gravities, and pressure. Each of these types of steam traps has its own advantages and applications.Visit the article
for further information on the specific types of steam traps.
JavaScript is turned off on this browser}

我要回帖

更多关于 steam怎么写评测 的文章

更多推荐

版权声明:文章内容来源于网络,版权归原作者所有,如有侵权请点击这里与我们联系,我们将及时删除。

点击添加站长微信