中国做受xxxxxaaaa_av免费观_国产在线不卡一区二区三区_九九自拍偷拍_欧美一级h_久久久久久国产精品一区

Location: Homepage  > News center  > Industry news

Discussion on carbon dioxide refrigerant

visits:53 addtime:2023-10-11 16:38:09

Carbon dioxide has high density and low viscosity, its flow loss is small, heat transfer effect is good, and through the enhancement of heat transfer, it can make up for the shortcomings of its low cycle. At the same time, carbon dioxide environmental performance is good, low cost, easy to obtain, good stability, which is conducive to reduce the unit volume. *Importantly, it is safe, non-toxic and non combustible, which has obvious advantages over R290.




Of course, using carbon dioxide as refrigerant has its disadvantages. The high critical pressure and low critical temperature of carbon dioxide also bring many difficulties to it. No matter subcritical cycle or transcritical cycle, the operating pressure of carbon dioxide refrigeration system will be higher than that of traditional refrigeration and air conditioning system, which will inevitably bring many new requirements to the design of system and components. At the same time, the efficiency of carbon dioxide refrigeration system is relatively low.




At present, the research and application of carbon dioxide mainly focus on three aspects




On the one hand, in the field of automobile air conditioning, the refrigerant with no harm to the environment must be used as soon as possible due to the large amount of refrigerant emission;




The second is the heat pump water heater. There is a considerable temperature slip in the heat release of carbon dioxide under supercritical conditions, which is conducive to heating the hot water to a higher temperature;




The third aspect is to use carbon dioxide as low-temperature refrigerant in cascade refrigeration cycle considering its good low-temperature flow performance and heat transfer characteristics.




In cascade refrigeration system, carbon dioxide cycle operates under subcritical condition. At this time, carbon dioxide is used as low-pressure refrigerant, and NH3 is used as refrigerant for high-pressure stage. Compared with other low-pressure refrigerants, even at low temperatures, the viscosity of carbon dioxide is very small, and its heat transfer performance is good, because the use of latent heat, its refrigeration capacity is quite large.




At present, several cascade refrigeration systems using carbon dioxide as low-temperature refrigerant have been established in supermarkets in Europe. The operation shows that the system is technically feasible, and this system is also suitable for low-temperature freeze-drying process.




At present, there are mainly two technical schemes for the replacement of R22 refrigerant in the world




One is represented by Nordic countries and South Korea, which advocates using natural working fluids as substitutes, such as pure working fluids R290, R1270, R744, R600a, R600, R717, etc., as well as mixtures of HCs;




The other is to use HFCS as substitutes, such as the non azeotropic mixture R410A of United signal company, R407C of DuPont company and i.c.i company, and R32 and R152a. The ODP of these refrigerants is 0, which can protect the ozone layer, but it will produce greenhouse effect.




At present, the prospect of carbon dioxide in the domestic market is a bit like "seeing flowers in the fog", as Wang Liqun said, they all know its good, but it is rarely used. The development of carbon dioxide has not been seen in the domestic air-conditioning industry for the time being, and it has just taken steps in the domestic refrigeration and refrigeration market. However, in the field of heat pump water heater, the standard for core accessories of carbon dioxide heat pump water heater - GB / t26181-2010 will be issued soon. Le Hongsheng, director of the heat pump propulsion Office of Shanghai Hitachi Electric Co., Ltd., who participated in the standard formulation, believes that although the heat pump water heater using carbon dioxide refrigerant in China has not yet come out, and the core component compressor is also in the research and development stage, "but the formulation of this advanced standard will play a good role in the market promotion of the products."



(1) Main advantages of CO2 refrigerant




1. CO2 is a natural substance, ODP = 0, GWP = 1. The use of CO2 as a refrigerant has no destructive effect on the atmospheric ozone layer, can reduce the global greenhouse effect, has a wide range of sources, does not need to be recycled, can greatly reduce the cost of refrigerant replacement, save energy, fundamentally solve the environmental pollution problem of compounds, with good economy.




2. CO2 is safe, non-toxic, non combustible, and has good thermal stability. It will not decompose harmful gases even at high temperature. In case of leakage, there will be no damage to human body, food and ecology.




3. CO2 has thermophysical properties suitable for refrigeration cycle and equipment. With small molecular weight and large refrigeration capacity, the unit refrigerating capacity at 0 ℃ is 5-8 times higher than that of conventional refrigerants. Therefore, for the refrigeration system with the same cooling load, the size and weight of the compressor can be significantly reduced, and the whole system is very compact; the lubrication conditions are easy to meet, and the common materials in the refrigeration system are not corroded, which can improve the sealing performance of the open compressor and reduce leakage.




4. The viscosity of CO2 is small. At 0 ℃, the kinematic viscosity of CO2 saturated liquid is only 5.2% of NH3 and 23.8% of R12. The flow resistance of the fluid is small, and the heat transfer performance is better than CFC refrigerants, which can improve the heat dissipation of totally enclosed refrigeration compressor.




(2) Main shortcomings and analysis of CO2 refrigerant




1. The critical pressure of CO2 is high (7.38mpa), so the working pressure of CO2 transcritical refrigeration cycle is much higher than that of traditional subcritical two-phase refrigeration cycle, which is about 6-8 times of that of CFC or HCFC system.




Therefore, the refrigerant pipeline system in the refrigeration system must be subject to safety analysis. However, since the refrigeration capacity of CO2 per unit volume is about 5-8 times of that of conventional refrigerant, the volume flow of CO2 required by the system is very small, and the explosion energy of gas in the equipment is a function of the product of pressure and volume, so although the working medium pressure of the system is high, the volume is small, the product of pressure and volume is not different from that of conventional refrigerant, and the explosion energy of gas in the equipment is not increased much.




Based on the reliability theory, the reliability of CO2 transcritical refrigeration system under different pipe conditions is studied and analyzed according to the different influencing factors and changing rules of pipeline reliability. The conclusion is that when the outer diameter of pipeline system is given, as long as the pipe material and pipe wall thickness are reasonably selected, the reliability of the system under the given pressure can be guaranteed Safety: the higher operation pressure of CO2 transcritical cycle can be reasonably solved; the existing steel pipe can be directly applied, while the existing copper pipe should be selected after safety analysis according to the pipe diameter and wall thickness. Therefore, the safety problems caused by high operating pressure of CO2 will not affect the promotion and application of CO2 as an environmental protection refrigerant.




2. The cop of CO2 single-stage compression transcritical cycle is lower than that of R12, R22, R134a and other conventional refrigerants at the same temperature. In view of the low coefficient of performance of CO2 refrigeration cycle, scholars have found that it can be solved by improving the system cycle mode and optimizing the system equipment, such as adopting two-stage compression and adopting expander to recover part of expansion work to improve the refrigeration cycle efficiency. Theoretical analysis shows that the efficiency of CO2 transcritical cycle with expander is higher than that of throttling expansion cycle with conventional refrigerant.




Application prospect of CO2 refrigerant




Since g. Lorentzen, the former president of the international refrigeration society, proposed the use of CO2 as an environmentally friendly refrigerant and the theory of transcritical cycle [7], the advantages of CO2 in environmental protection and performance have attracted more and more attention of scholars all over the world. The development of its systems and components has also been greatly developed. The existing research results show that when the CO2 system is operating at high ambient temperature (above 45 ℃) The cooling performance of the system is lower than that of the traditional system, which is similar to that of the traditional system at 35-45 ℃, and the performance is better when the temperature is below 35 ℃. At present, the application prospect of CO2 transcritical cycle is very good in automobile air conditioning, heat pump, commercial refrigeration equipment, food refrigeration and so on. The performance of CO2 transcritical cycle is equivalent to or even better than that of the original R22 or R12 or R134a refrigeration device. It is especially suitable for the occasion where large temperature change is required, and the performance is better at lower evaporation temperature.




As a natural refrigerant, CO2 has incomparable advantages over other non natural refrigerants in terms of its physical properties. With the deepening of the research on CO2 refrigeration system, CO2 as a new generation of refrigerant will be further promoted. It is believed that in the near future, CO2 will be widely used in automobile air conditioning system, commercial refrigeration system, residential air conditioning system and heat pump drying system of various production enterprises.


As a refrigerant, people want it to be environmentally friendly, efficient and economical, but in fact, there is no perfect refrigerant. Compared with other refrigerants, CO2 has obvious advantages in environmental protection, safety, economy and refrigeration capacity per unit volume, but also has deficiencies in operating pressure and efficiency. The current research shows that the safety and reliability of CO2 system under transcritical pressure can be ensured as long as the thickness of pipe and pipe wall is reasonably selected, and the reasonable improvement of CO2 transcritical cycle mode can effectively reduce throttling loss and improve the cycle efficiency of the system. As one of the environmental protection refrigerants, CO2 has a good application prospect Development will be widely used. Xuemei has always been at the forefront of technology. Our company actively participates in the project implementation, R & D and promotion of energy-saving products, implements the commitment of energy-saving and emission reduction, and develops new energy-saving and efficient carbon dioxide compressor with natural working medium and reliable environmental protection.


主站蜘蛛池模板: avhd101素人diy入口_看全色黄大色黄女片爽名优_999视频精品_久久爱黑人激情av_红杏成人免费视频观看_GAY片男同网站WWW免费_久久精品99久久久久久2456_亚洲成人三区 | 久草亚洲天堂_狠狠操av_精品国内_一级不卡免费视频_91久久精品一区二区三区_91精品午夜窝窝看片_蜜桃色欲AV久久无码精品_国产一区福利在线 | 国产麻豆一区二区三区在线观看_久久精品国产首页027007_亚洲国产精品自产在线播放_免费精品国偷自产在线青年_日韩无马砖区芒果_美女全黄视频_国产精品自在线_蜜臀久久99精品久久久久久 | 四色网站_久久久久人妻一区精品色_丁香婷婷综合在线麻豆_大屁股人妻女教师撅着屁股_精品丝袜国产自在线拍高清_99精品欧美一区_国产在线不卡2005_草草影院第一页 | 久久精品国产99久久久古代_a级毛片黄片_亚洲欧美日韩一区二区三区在线_国产亚洲精品久久久久久老妇_国产免费AV片在线观看播放器_av成人在线观看_2018成人影院_大地资源高清在线 | 亚洲精品永久在线_亚州日本乱码一区二区三区_999精品视频这里只有精品_国产爆乳尤妮丝无码视频在线_无码日韩精品一区二区免费_护士被强女千到高潮视频_91看片在线看_精品综合久久 | 黑人大荫道BBWBBB高潮潮喷_亚洲欧美h_免费观看国产大片_男人戳女人戳到爽视频_av在线直接看_性xxxx18免费观看视频软件_四虎5151久久欧美毛片_日韩高清片 | 人人人妻人人澡人人爽欧美一区_四色激情网_麻豆神马91_精品欧美一区二区中文字幕视频_激情信箱免费观看_日本黄色不卡_aaaa国产_狠狠做五月深爱婷婷伊人 | 18禁止导深夜福利备好纸巾_国产福利视频奶水在线_国产V精品V欧美V日韩V_国产亚洲中字幕欧_四虎欧美_青青伊人久久_国产精品久久久久久白浆_黄色一类片 | 色丁香久久_天堂久久一区二区三区_99在线国内在线视频22_亚洲综合熟女久久久40P_成人h视频在线_欧洲精品成人免费视频在线观看_我和亲妺妺乱的性视频_加勒比AV中文字幕不卡 | 国产h视频在线_日韩精品真人荷官无码_日日操日日摸_夏目友人帐第7季高清免费观看_宅男影院在线播放999_91视频网页版_亚洲黄一区二区三区_亚洲精品人人 | 亚欧日韩在线_无码人妻丰满熟妇区毛片_开妇小嫩苞调教HHH嗯啊MTV_A级毛片在线视频免费观看_www.色99_日韩一区精品视频_丝袜美腿精品国产一区_国产91精品看黄网站 | 99情趣网视频_欧美日韩久久精品_久久99精品久久久秒播软件优势_逼逼影视_女人被狂躁的高潮免费视频_亚洲欧洲日韩在线观看_国产xxxx69_亚洲国产精品一区二区第一页 | 欧美熟妇性XXXXX_潜行者40集连续剧免费_一区二区免费在线视频_成人国产一区二区三区精品不卡_午夜影院免费观看_亚洲第一AV导航AV尤物_日韩精品亚洲精品第一页_国产精品欧美一区乱破 | 久久综合九色_亚洲人在线观看_欧美日韩一区免费_中国女人真人一级毛片_91嫩操_蜜乳av一区二区_一级做a爰片性色毛片是免费_中文字幕无码久久精品 | 亚洲中文字幕伊人久久无码_亚洲欧洲专线一区_国产午夜精品一区_日日日操_国产成人无码精品久久灭火器_人成午夜免费视频在线观看_成人性生交无码免费看_尤物丰满少妇大尺度喷血写真 | 男人操女人视频免费_黄色免费大全_成人欧美在线视频_永久免费无码网站在线观看_一个人看的www网站_青娱乐这里只有精品_手机福利在线_最新中文字幕在线视频 | 嗯嗯嗯亚洲精品国产精品一区_欧美日韩精选_又黄又粗暴的120秒免费GIF视频_年轻的朋友3中文_国产一女三男3p免费视频_亚洲人亚洲人色久_免费在线成人_日韩高清三区 | 国产麻豆一区二区三区在线观看_久久精品国产首页027007_亚洲国产精品自产在线播放_免费精品国偷自产在线青年_日韩无马砖区芒果_美女全黄视频_国产精品自在线_蜜臀久久99精品久久久久久 | 欧美最猛黑人xxxx黑人表情_亚洲视频一区国产_黑人巨大精品欧美一区二区蜜桃_国产成年人小视频_99精品久久久国产一区二区三_青草青在线_91精品在线视频观看_成人黄色av网址 | 精品久久国产_欧美91_91porny国产_www.youjizz国产_99热这里只有精品1_亚洲九九九_日本一道本线一区免费_曰本一区二区 | 粉色免费视频_国产高潮好爽受不了了夜夜做_97自拍网_国产亚洲精品AA片在线观看网站_天天草夜夜_国产精品扒开腿做爽爽爽视频_久久久久久666_国产欧美亚洲日韩图片 | 日本免费一区二区在线观看_亚洲无码专区三区在线观看_国产成人精品久久二区二区_av天堂精品久久久久_伊波拉病毒在线观看超清国语_国产一区二区三区_JIZZ成熟丰满韩国女人少妇_亚洲精品成人片在线观看 | 男ji大巴进入女人的视频免费看_国产精品99久久久久久宅男_国产一区二区三区精品视频_亚洲av无码久久寂寞少妇_国产在线观看影视_a级网站在线观看_欧美黄色片网站_91久久久久久白丝白浆欲热蜜臀 | 亚洲精品久久久久高潮_欧美精品毛片_tube麻豆_无套内射视频囯产_自拍偷自拍亚洲精品一区_成年人视频免费在线观看_伊人大杳焦在久久综合网_18禁裸体动漫美女无遮挡网站 | 亚洲黄色小说图片_国产精品久久久久久久综合_色一乱一伦一图一区二区精品_免费gogo少妇大尺寸视频_欧美成免费A级毛片_伊人色吧_性猛交xxxx免费看蜜桃_亚洲第一伊人 | 国产一区二区影视_爱999精品视频_少妇xxxxx性开放_伊人精品网_福利片中文字幕_伊人九九九有限公司_免费观看一级大片_国产精品狼人色视频一区 麻豆视频污_欧美黑人巨大精品VIDEOS_久久久精品一区二区毛片免费看_日本黄色高清片_亚洲有吗在线观看_A级日本乱理伦片免费入口_蜜桃av资源_国产ts一区 | 国产成人片视频一区二区_91精彩视频_一二三区视频在线_亚洲区综合区小说区激情区_健身房啪啪的av片_国产色视频_亚洲高清国产精品_日韩精品欧美一区 | 日本精品久久_四虎影视网址_国产强奷伦奷片_精品黑人一区二区三区久久_国产aⅴ夜夜欢一区二区三区_中文字幕第315页_亚洲AV无码成人网站在线观看_日韩欧美卡一卡二卡新区 | 第一页av_久久久久久国_国产农村妇女毛片精品久久_免费91看片_欧美黑人又粗又大又爽免费_自拍偷拍专区_精品国产一区二区三区香蕉沈先生_久久午夜国产 | 手机国产视频福利_亚洲看片_亚洲AV乱码久久精品蜜桃_丁香五月综合缴清中文_亚洲自拍偷拍综合网_青青精品_国产一区在线视频播放_亚洲天堂99 | 亚洲第一视频_com.黄_欧美日韩在线亚洲二区综二_免费中午字幕无吗_www.久久精品视频_精品自拍农村熟女少妇图片_狠狠操狠狠干狠狠_欧美一区二区三区诱惑在线 | 久久www免费人成看片小草_国产卡一卡二卡乱码_噜啊噜在线成人A片观看_欧美一区3_欧美裸体XXXX_精品少妇一区二区三区在线视频_久草免费视_久久久国产成人一区二区 | 色欲AV无码一区二区三区_国产亚洲欧美一区二区三区四区_日本免费一区二区三区最新_日本一区二区三区在线不卡_天堂在线中文_四虎国产精品亚洲永久免费_国产a级久久久_成年美女黄网 | www啦啦啦视频在线观看免费_一级国产aa片免费观看_无码精品A∨在线观看中文_九九精品视频在线观看_99国产精品2018视频全部_中国一级黄色片子_麻豆嫩芽忘忧草一区二区三区_99精品网 | 久久天天躁夜夜躁狠狠躁_俄罗斯美女的天堂一级毛片_久久精品久久精品久久精品_免费吃奶摸下激烈视频_中文字幕av在线免费_成人免费毛片立即播放_久久国产精品久久精品_国产午夜伦理 | 国产在线观看黄色_久久99精品久久久久久久久久_成a人v在线观看视频_AV无码专区亚洲AVL在线观看_激情视频中文字幕_狠狠丁香_肉嘟嘟WWW视频在线观看高清_亚洲综合色久 | 中文字幕日韩精品一区二区_欧美一级久久久猛烈a大片_国产精品免费久久久久久久久久中文_欧美精产国品一二三区_久久a免费视频_亚洲AV永久无码精品天堂动漫_免费精品久久久久久久一区二区_超清AV在线播放不卡无码 | 在线99_三年片免费观看影视大全满天星_国产网红主播精品av_日韩美女在线_一级在线播放_国产精品成人一区无码_精品久久久久一区二区_H无码精品动漫在线观看导航 | 老师粉嫩小泬喷水视频90_台湾毛片_9191网站_久久激情欧美_www.日本黄色_日韩爱爱片_91麻豆免费在线观看_欧美黑人肉体狂欢大派对 韩国女主播一区二区三区_亚洲综合色自拍一区_精品视频一区二区三区中文字幕_国产女人高潮抽搐叫床视频_jiujiure国产_97aⅰ内射白浆蜜桃精品_又硬又粗又大一区二区三区视频_亚洲永久免费 | 亚洲精品国产精品乱码不卞_国产露脸无码A区久久_美女高潮久久久_爱爱一区_日躁夜躁狠狠躁2020_亚洲jizzjizz妇女_亚洲aⅴ综合av国产八av_97国产影院 |