• <tr id="yyy80"></tr>
  • <sup id="yyy80"></sup>
  • <tfoot id="yyy80"><noscript id="yyy80"></noscript></tfoot>
  • 99热精品在线国产_美女午夜性视频免费_国产精品国产高清国产av_av欧美777_自拍偷自拍亚洲精品老妇_亚洲熟女精品中文字幕_www日本黄色视频网_国产精品野战在线观看 ?

    Neutronic analysis of Indian helium-cooled solid breeder tritium breeding module for testing in ITER

    2022-07-13 00:37:46SWAMIDeepakSHARMADANANICHAUDHARISRINIVASANandRajeshKUMAR
    Plasma Science and Technology 2022年6期

    H L SWAMI,Deepak SHARMA,C DANANI,2,P CHAUDHARI,2,R SRINIVASAN,2 and Rajesh KUMAR,2

    1 Institute for Plasma Research,Gandhinagar 382428,India

    2 Homi Bhabha National Institute,Anushaktinagar,Mumbai 400094,India

    Abstract India has proposed the helium-cooled solid breeder blanket concept as a tritium breeding module to be tested in ITER.The module has lithium titanate for tritium breeding and beryllium for neutron multiplication.Beryllium also enhances tritium breeding.A design for the module is prepared for detailed analysis.Neutronic analysis is performed to assess the tritium breeding rate,neutron distribution,and heat distribution in the module.The tritium production distribution in submodules is evaluated to support the tritium transport analysis.The tritium breeding density in the radial direction of the module is also assessed for further optimization of the design.The heat deposition profile of the entire module is generated to support the heat removal circuit design.The estimated neutron spectrum in the radial direction also provides a more in-depth picture of the nuclear interactions inside the material zones.The total tritium produced in the HCSB module is around 13.87 mg per full day of operation of ITER,considering the 400 s ON time and 1400 s dwell time.The estimated nuclear heat load on the entire module is around 474 kW,which will be removed by the high-pressure helium cooling circuit.The heat deposition in the test blanket model(TBM)is huge(around 9 GJ)for an entire day of operation of ITER,which demonstrates the scale of power that can be produced through a fusion reactor blanket.As per the Brayton cycle,it is equivalent to 3.6 GJ of electrical energy.In terms of power production,this would be around 1655 MWh annually.The evaluation is carried out using the MCNP5 Monte Carlo radiation transport code and FEDNL 2.1 nuclear cross section data.The HCSB TBM neutronic performance demonstrates the tritium production capability and high heat deposition.

    Keywords: HCSB,TBM,tritium,nuclear heat,ITER

    1.Introduction

    India is developing a tritium breeding blanket for self-reliance in fusion reactor fuel supply [1-4].The functions of blankets are tritium breeding,heat removal and radiation shielding.Tritium breeding maintains the supply of fuel in the reactor and deposited heat removal through coolant is converted into electricity [5-7].The functions make the blanket a prime component of fusion reactor sustainability.The blankets are designed with a combination of certain tritium breeding materials,i.e.solid and liquid breeder materials.The design depends on the functional requirement of the blanket for the fusion reactor.The breeding blanket concepts such as the helium-cooled solid breeder (HCSB),lead-lithium-cooled ceramic breeder (LLCB)and helium-cooled dual breeder (HCDB) blanket are under the design and development phase[7-11].Every blanket design has its own functional novelty.The helium-cooled solid breeder is a widely accepted concept for breeding blankets [12-15].

    The helium-cooled solid breeder concept has the Li2TiO3ceramic as a tritium breeder.Lithium in the ceramic(Li2TiO3)produces tritium through the following reactions:

    Reaction (1) shows tritium production through7Li.The occurrence of reaction(1)requires neutron energy higher than 2.45 MeV.The cross section plot of the reaction is shown in figure 1.The cross section is maximum at the neutron energy of 6 MeV [16].This reaction is one reason for lithium being established as a candidate for tritium production in the fusion reactor.Natural lithium has a high abundance of7Li.Reaction(2) represents tritium breeding through the6Li isotope.The cross section of the reaction is also shown in figure 1[16,17].It is very clear from the occurrence probability of the reaction that it can even happen at the thermal energy and the cross section is huge for thermal or slow neutrons.The benefit of this Li6reaction is that tritium can be produced in thermalizing zones inside the fusion reactor and the blanket thickness can be increased.It is a relief that the reaction produces a self-sustainable fuel supply system for the fusion reactor.

    In order to produce the self-sustainable tritium supply system,the loss of neutrons cannot be contemplated in the fusion reactor.However,it is not possible to utilize all neutrons of the fusion reactor because of the presence of other controlling and diagnosing devices in the system.The coverage of the tritium breeding blanket cannot be 100%.It could be maximized up to 70%-80%.Therefore,it requires the neutrons in the blanket to be enhanced through some process to maximize the tritium breeding.Few elements,such as beryllium,lead,zirconium,bismuth,etc have the properties of multiple neutrons through nuclear reactions.The reactions of beryllium and lead are shown below.

    The (n,2n) reaction always requires threshold neutron energy to take place;it is 2.7 MeV for beryllium and 7.7 MeV for lead.The requirement of threshold energy makes the neutron multiplication specific,which needs to be tackled during the design of the blanket.The HCSB blanket has beryllium as a neutron multiplier material.

    The energy deposited by neutrons in the blanket needs to be extracted for electricity production through coolant flow.High-pressure helium is used as a coolant in the solid breeder blanket.

    ITER is an experimental fusion reactor to demonstrate nuclear fusion sustainability and also provides the platform to test the tritium breeding blankets concept for futuristic fusion power plants.ITER is designed to generate the 500 MW D-T fusion power.It will demonstrate power plant sustainability for 400 s [18].

    Keeping all points of concern in reference,a design for the Indian HCSB blanket module for testing in the ITER is developed and supported by rigorous neutronic and engineering analysis.

    The scope of the work is to present the neutronic design calculation of the Indian HCSB blanket module for testing in ITER.The HCSB design descriptions along with the analysis methodology are included here.The nuclear analysis results are elaborated in detail for the realization of functional requirements and design support.

    2.Description of HCSB blanket module for ITER

    The HCSB test blanket module (TBM) designed for ITER testing has the function materials such as Li2TiO3and beryllium.It is structured using Indian reduced activation ferritic martensitic steel (RAFMS) material and cooled using highpressure helium flowing in channels in different components of the blanket.The module has the external dimensions of 167 cm (poloidal)×46.2 cm (toroidal)×52.5 cm (radial).It is made in a submodular structure for efficient heat extraction.The module has six submodules as shown in figure 2(a).The submodule has three parallel zones of Li2TiO3and four zones of beryllium;all are partitioned using the RAFMS plates.The plates have cooling arrangements to extract the heat from entire regions.

    The vertical thickness of the Li2TiO3in each zone is around 20 mm,whereas the beryllium is 33.875 mm.The detail of the submodule is shown in figure 2(b).The plasmafacing first wall has a radial thickness of 2.8 cm.There are 80 channels with 16 parallel flow circuits in the first wall.The channels have a hydraulic diameter of 15 mm.The rear side of the module has helium channels with a combination of backplates to provide proper supplies to all submodules [19,20].

    3.Nuclear analysis methodology

    A neutronic model is prepared using the details of the HCSB test blanket module and it is incorporated in the ITER C-lite model.The ITER C-lite model is a 40-degree sector model that has the ITER machine’s standard details.The symmetrical boundary condition is applied on both the toroidal sides of the model.The geometrical and material details are given in the model as per ITER [21,22].There is a recent upgrade in the ITER MCNP model called the C-model,which is an advanced and very heavy model [23].The C-lite model is used here in the calculation to reduce the run time,along with an entire ITER sector model.The HCSB TBM material details are given in table 1.Materials are included in the model with impurity details.The fusion neutron source with the angular and spatial distribution of the ITER neutron source available in the MCNP-based C-lite model has opted for the calculations.The neutronic models of ITER and HCSB TBM are given in figures 3 and 4,respectively.The TBM is placed at the equatorial port of the ITER,as shown in figure 3.It also shows the distance of the TBM from the ITER machine centre and figure 4 represents the calculation model of the HCSB TBM.It is a heterogeneous model with all the geometrical and material details.The neutronic responses such as tritium production density,radial flux profiles,and heat density profiles,etc,belong to submodule 3,as shown in figure 4.The region for nuclear responses is marked in figure 4 from where all estimated responses are reported.

    The calculation is performed for the tritium breeding inside the Li2TiO3zones and beryllium zones using the track length estimator function for reaction rates.The6Li enrichment in the Li2TiO3has opted 60%.The reaction number 105,205(205 is also equivalent to reaction number 33 for7Li)is considered to estimate the6Li(n,t)and7Li(n,n’,t)reaction rates,respectively.For the beryllium (n,t) reaction,reaction number 105 is used.The reaction rate depends on the probability of the reaction.The reaction probability data is required for the estimation of the particular reaction in the radiation transport code MCNP [24].The reaction cross sections data chosen for the calculations are from FENDL 2.1 nuclear cross section data libraries [25].The heat density inside all material zones is estimated through the track length estimate of energy deposition.It includes the reaction threshold as well as releasing energies.It contains the heating through both neutron and photon.The neutron flux and energy spectra in breeding zones are estimated using the track-length estimator of flux in a certain volume.

    A hundred million particles are tracked for the estimation of the nuclear responses in the Monte Carlo radiation transport code MCNP.The statistical errors in all simulated responses are less than 5%.

    Table 1.HCSB TBM materials’ elemental composition in weight (%).

    4.Neutron flux

    The neutron flux is estimated from the TBM first wall to the backplate.The attenuation of the flux is shown in figure 5.The flux at the front zone of the breeding module is around~1.88×1014n cm-2s-1.It goes down inside the TBM and reaches around 3.5×1013n cm-2s-1at the rear side.The 40 cm breeding zone attenuates only ~5.3 times the total flux.This is because the interaction happens through(n,2n)and(n,n’),(n,t) reactions.The absorption reaction is compensated by the (n,2n) neutron multiplication reaction.It is also observed that while attenuation does not occur much in the total flux,the energy attenuation happens.The neutron energy spectra at various locations inside the TBM are shown in figure 6.The 14 MeV flux level goes down drastically,as shown in figure 6.The energy spectra represent the interactions and energy attenuation more clearly.

    5.Tritium production

    Tritium production is one of the main functions of the blanket and through the self-sufficiency of tritium,it provides feasibility to the fusion power plant concept.Tritium is not available naturally.Breeding in the heavy water fission reactors is also not significant and it may not be able to maintain the supply for big nuclear fusion-based power plants.The analysis provides an estimation of the tritium in the test module of the HCSB blanket,placed inside the ITER nuclear environment.The tritium estimation is made in Li2TiO3and beryllium materials.It is estimated separately for both lithium isotopes.The tritium produced in the HCSB TBM is 1.45×1017tritons/s.In a full power day (24 h of continuous operation) it can produce 62.4 mg.For the ITER pulse mode operation,considering the 1400 s dwell period between successive 400 s burn plasma pulses,there will be 48 pulses in a day,and the tritium production will be around 13.9 mg.Figure 7 shows the radial tritium production density(TPD)profiles in the ceramic material and figure 8 shows the tritium production in beryllium.TPD is tritium produced per unit volume of breeding materials.The results of TPD can be understood through the analogy of neutron energy spectrum and tritium production cross section for materials.The total flux reduces with radial depth and it does soften the energy spectrum.

    Figure 1.Cross section of lithium for tritium production reactions.

    Figure 2.(a) HCSB TBM model,(b) HCSB TBM submodule.

    Figure 3.ITER C-lite model with HCSB TBM.

    Figure 4.Neutronic model of HCSB TBM.

    Figure 5.Radial attenuation profile of neutron flux.

    Figure 6.Neutron spectra inside HCSB.

    Figure 7.Radial profile of tritium production density in ceramic breeder.

    Figure 8.Radial profile of tritium production density in beryllium.

    Figure 9.Radial profile of nuclear heat deposition density in TBM.

    Moreover,the calculation of the tritium breeding ratio in this small test blanket module is done using plasma sourcefacing surface area and the neutron wall load.It is found that the localized tritium breeding ratio for this design is around 1.05.It can be larger for the fusion reactor where the full plasma-facing area is covered by the tritium breeding blanket and also for larger blanket modules.The estimated ratio for the test blanket module is a bit smaller because it has more structural material due to the compact design of the module for ITER port fitting.However,it is more than 1,which is a good sign regarding tritium fuel management.

    6.Nuclear heat deposition

    A nuclear reactor or power plant works on the conversion of thermal heat to electricity.Thermal heat deposition is the main parameter for reactor performance.It represents the amount of thermal heat which can be converted into electricity.The estimation of thermal heat in a fusion reactor blanket is also equally important.It will showcase the fusion power conversion to electrical power.The fusion power will be deposited in the blanket through neutron interaction and attenuation.The deposited thermal power will be removed through an efficient cooling circuit and converted into electricity.

    The heat deposition in the small test module of HCSB is estimated and it is around 0.47 MW.The calculation covers heat deposition from neutrons and photons.The total heating in the Indian RAFMS material is mostly dominated by photon heating,which is around 82%.In beryllium,photons contribute ~26% and it is around ~13% in Li2TiO3.

    The total heat,for an entire day of operation of ITER with pulse mode,will be equal to 9 GJ of energy.The amount of power deposited in the HCSB TBM for an ITER day of operation is huge.It will be equivalent to a 189 kW electrical power system,considering the 40%efficiency of the Brayton engine,as per [26].For a day of operation,it will be around 3.6 GJ of energy.The radial profile of heat deposition density in specific materials is given in figure 9.The heat density in the ceramic material remains high due to the high reaction probabilities.RAFMS also attenuates more neutrons due to the higher interaction cross section of iron,magnesium,chromium,etc elements for neutrons.Therefore,it has higher energy deposition.

    7.Conclusion

    The performance of the Indian HCSB tritium breeding blanket module,for testing in ITER,is evaluated using the Monte Carlo radiation transport simulation code,MCNP.It is found that the test module performs well in the ITER neutron environment.The tritium breeding in a continuous full-power day of operation of ITER will be around 62.4 mg.The estimated ratio for this small module is around 1.05,which is higher than 1.An important feature in the HCSB design is that the tritium breeding density does not reduce much from the front area to the rear area.In the rear region,it is around 1.1×1012tritons cm-3s-1whereas at the front region it is around 5.8×1012tritons cm-3s-1.This is due to the good distribution of beryllium as a neutron multiplier in the module.The radial flux profile and spectrum showcase the opportunity to enhance the breeding through the Li6isotope enrichment in the blanket rear zones.The power disposition in the blanket features the energy conversion feasibility through the blanket module.The total power deposition in a small test blanket module is around 0.47 MW.For a day of operation,it is huge,around 9 GJ,which demonstrates the scale of power that can be produced through a fusion reactor blanket.Considering the Brayton cycle,it can be equivalent to 3.6 GJ of electrical energy.If all day operation of ITER is assumed,a small blanket module can generate an electric power of around 1.6 GWh annually.Further,optimizations in the design of the Indian solid breeder blanket are in progress.

    The neutronic assessment shows that the current HCSB design for a test blanket module is capable of featuring all the desired functions for a fusion reactor breeding blanket and that it could be a good candidate for future power plants.

    Acknowledgments

    Mr H L Swami pays sincere tribute to the late Dr R Srinivasan.He was a good mentor and supervisor.His contribution towards the development of Indian nuclear fusion research always remains with us.

    ORCID iDs

    久久国内精品自在自线图片| 偷拍熟女少妇极品色| 国产黄a三级三级三级人| 久久久久久伊人网av| www.色视频.com| 乱人视频在线观看| 插阴视频在线观看视频| 精品一区二区免费观看| avwww免费| 精品国产三级普通话版| 免费观看a级毛片全部| 黑人高潮一二区| a级毛片a级免费在线| 黄色视频,在线免费观看| 黄色视频,在线免费观看| 国产精品一区二区三区四区久久| 精品一区二区免费观看| 国产精品国产三级国产av玫瑰| 丰满乱子伦码专区| 18禁在线无遮挡免费观看视频| 美女cb高潮喷水在线观看| 桃色一区二区三区在线观看| 亚洲成人久久爱视频| 菩萨蛮人人尽说江南好唐韦庄 | 免费av观看视频| 精品国内亚洲2022精品成人| 伦精品一区二区三区| .国产精品久久| 国产爱豆传媒在线观看| 少妇丰满av| 一级毛片电影观看 | 丰满的人妻完整版| 美女xxoo啪啪120秒动态图| 给我免费播放毛片高清在线观看| 中文字幕精品亚洲无线码一区| 性欧美人与动物交配| 99久国产av精品| 人妻久久中文字幕网| av专区在线播放| 一级黄色大片毛片| 只有这里有精品99| 久久99热这里只有精品18| 色哟哟·www| 亚洲欧洲日产国产| 亚洲五月天丁香| 日本撒尿小便嘘嘘汇集6| 欧美成人精品欧美一级黄| 欧美色欧美亚洲另类二区| 男人狂女人下面高潮的视频| 啦啦啦韩国在线观看视频| 亚洲精华国产精华液的使用体验 | 99热只有精品国产| av在线天堂中文字幕| 美女内射精品一级片tv| 国产日本99.免费观看| 女的被弄到高潮叫床怎么办| 国产大屁股一区二区在线视频| 精品久久久久久久人妻蜜臀av| 夫妻性生交免费视频一级片| 2021天堂中文幕一二区在线观| 日韩三级伦理在线观看| 日韩欧美三级三区| 成年女人永久免费观看视频| 国产精品爽爽va在线观看网站| 欧美成人一区二区免费高清观看| 婷婷色av中文字幕| 亚洲一区高清亚洲精品| 免费黄网站久久成人精品| 看片在线看免费视频| 国产午夜福利久久久久久| 91aial.com中文字幕在线观看| 成人国产麻豆网| 国产精品日韩av在线免费观看| 狠狠狠狠99中文字幕| 禁无遮挡网站| 免费黄网站久久成人精品| 日韩视频在线欧美| 成人综合一区亚洲| 伊人久久精品亚洲午夜| 日韩欧美 国产精品| 99热只有精品国产| 久久6这里有精品| 久久精品久久久久久久性| 99久久成人亚洲精品观看| 啦啦啦韩国在线观看视频| 国产精品一区二区在线观看99 | 国产成人a∨麻豆精品| 禁无遮挡网站| 高清毛片免费观看视频网站| 能在线免费观看的黄片| 又爽又黄a免费视频| 国产精品一区二区三区四区免费观看| 黄色日韩在线| 亚洲精品亚洲一区二区| 搡女人真爽免费视频火全软件| 91久久精品国产一区二区三区| 国产真实乱freesex| 国产精品麻豆人妻色哟哟久久 | 久久精品国产清高在天天线| 久久亚洲精品不卡| 久久久精品欧美日韩精品| 一本久久精品| 高清在线视频一区二区三区 | 亚洲在线观看片| 国内精品一区二区在线观看| 亚洲精品亚洲一区二区| 久久精品综合一区二区三区| 亚洲最大成人手机在线| 国产亚洲欧美98| 成人综合一区亚洲| av在线蜜桃| 国产成人freesex在线| 一进一出抽搐gif免费好疼| 3wmmmm亚洲av在线观看| a级毛片免费高清观看在线播放| 日本一二三区视频观看| 99久国产av精品| 欧美潮喷喷水| 欧美最新免费一区二区三区| 国产午夜精品久久久久久一区二区三区| 国产不卡一卡二| 国产精品精品国产色婷婷| 亚洲国产色片| 国产探花在线观看一区二区| 一级黄色大片毛片| 欧美又色又爽又黄视频| 99久久精品热视频| 91久久精品国产一区二区三区| 国产亚洲精品久久久com| 老师上课跳d突然被开到最大视频| 国产午夜精品一二区理论片| 一级黄色大片毛片| 亚洲成人久久性| 久久精品影院6| 成人无遮挡网站| 亚洲精品456在线播放app| 成人午夜精彩视频在线观看| 国产白丝娇喘喷水9色精品| 久久这里只有精品中国| 97在线视频观看| 日韩亚洲欧美综合| 老师上课跳d突然被开到最大视频| 国产精品.久久久| 亚洲中文字幕日韩| 黄片wwwwww| 一夜夜www| 女人被狂操c到高潮| 赤兔流量卡办理| 亚洲一区二区三区色噜噜| 丰满的人妻完整版| 久久韩国三级中文字幕| 成年免费大片在线观看| 欧美高清成人免费视频www| 国产免费一级a男人的天堂| 国产精品免费一区二区三区在线| 在线观看美女被高潮喷水网站| 亚洲人与动物交配视频| 老师上课跳d突然被开到最大视频| 精品不卡国产一区二区三区| 国产午夜精品久久久久久一区二区三区| 我要看日韩黄色一级片| 人妻少妇偷人精品九色| 国内精品久久久久精免费| 婷婷精品国产亚洲av| 亚洲精品日韩在线中文字幕 | 亚洲一区高清亚洲精品| 在线国产一区二区在线| 国产精品一区二区性色av| 色吧在线观看| 好男人视频免费观看在线| 欧美成人免费av一区二区三区| 久久久久免费精品人妻一区二区| 在线观看av片永久免费下载| 免费不卡的大黄色大毛片视频在线观看 | 中国美女看黄片| 成人亚洲精品av一区二区| 欧美人与善性xxx| 村上凉子中文字幕在线| 我要看日韩黄色一级片| 三级毛片av免费| 看黄色毛片网站| 成人国产麻豆网| 成人av在线播放网站| 天天一区二区日本电影三级| 麻豆国产97在线/欧美| 国产单亲对白刺激| 国产爱豆传媒在线观看| av在线播放精品| 亚洲在线自拍视频| 日本与韩国留学比较| 欧美xxxx黑人xx丫x性爽| 日韩一区二区视频免费看| 亚洲精品成人久久久久久| 99久久精品国产国产毛片| 国产亚洲精品av在线| 久久精品国产亚洲av香蕉五月| 乱系列少妇在线播放| 欧美激情久久久久久爽电影| 久久久精品94久久精品| 99热这里只有是精品50| 日韩精品有码人妻一区| 国产视频内射| 色哟哟哟哟哟哟| 91在线精品国自产拍蜜月| 国产日韩欧美在线精品| eeuss影院久久| 亚洲四区av| 国产成人一区二区在线| 精品久久国产蜜桃| 精品久久久久久成人av| 国产精品福利在线免费观看| 亚洲欧美中文字幕日韩二区| 你懂的网址亚洲精品在线观看 | 日韩一区二区三区影片| 小说图片视频综合网站| 日日干狠狠操夜夜爽| 国产色婷婷99| 久久久成人免费电影| 三级毛片av免费| av福利片在线观看| 91在线精品国自产拍蜜月| 联通29元200g的流量卡| 91麻豆精品激情在线观看国产| 国产视频内射| 久久热精品热| 亚洲最大成人手机在线| 波野结衣二区三区在线| 精品免费久久久久久久清纯| 天堂av国产一区二区熟女人妻| 久久亚洲精品不卡| 夜夜夜夜夜久久久久| 熟女电影av网| 欧美成人a在线观看| kizo精华| 男女边吃奶边做爰视频| 亚洲av成人精品一区久久| 国产一区二区三区av在线 | 久久99精品国语久久久| 国产人妻一区二区三区在| 成年版毛片免费区| 综合色丁香网| 在线播放无遮挡| 久久久久久久久久黄片| 直男gayav资源| 日日啪夜夜撸| 欧美激情国产日韩精品一区| 亚洲无线在线观看| 欧美最黄视频在线播放免费| 深夜精品福利| 天堂影院成人在线观看| 一区福利在线观看| 欧美成人精品欧美一级黄| 日韩一本色道免费dvd| 性色avwww在线观看| 亚洲在久久综合| 变态另类丝袜制服| 天堂网av新在线| 亚洲精品成人久久久久久| 一进一出抽搐动态| 人妻夜夜爽99麻豆av| 欧美成人a在线观看| 亚洲无线观看免费| 国产精品爽爽va在线观看网站| 日本一本二区三区精品| 久久这里只有精品中国| 午夜精品国产一区二区电影 | 久久久久网色| 国产熟女欧美一区二区| 美女内射精品一级片tv| 看十八女毛片水多多多| 99国产精品一区二区蜜桃av| 久久亚洲国产成人精品v| 长腿黑丝高跟| 男女那种视频在线观看| 久久99热这里只有精品18| 国产单亲对白刺激| 村上凉子中文字幕在线| 久久人人爽人人片av| 天堂中文最新版在线下载 | 特级一级黄色大片| 美女xxoo啪啪120秒动态图| 国产探花在线观看一区二区| av免费在线看不卡| 亚洲第一电影网av| 久久这里只有精品中国| 蜜桃久久精品国产亚洲av| 黄片无遮挡物在线观看| 青春草国产在线视频 | 插阴视频在线观看视频| 在线a可以看的网站| а√天堂www在线а√下载| 人人妻人人看人人澡| 国产成年人精品一区二区| 99久久人妻综合| 国产真实伦视频高清在线观看| 国产黄色视频一区二区在线观看 | 亚洲国产欧洲综合997久久,| 十八禁国产超污无遮挡网站| 国产精品,欧美在线| 中文字幕免费在线视频6| 村上凉子中文字幕在线| 成年免费大片在线观看| 自拍偷自拍亚洲精品老妇| 一进一出抽搐动态| 91午夜精品亚洲一区二区三区| 久久久色成人| 日本黄大片高清| 插阴视频在线观看视频| 在线天堂最新版资源| 国产精品久久久久久av不卡| 欧美不卡视频在线免费观看| 69av精品久久久久久| 麻豆成人av视频| a级毛片免费高清观看在线播放| 免费观看精品视频网站| 国产男人的电影天堂91| 免费观看精品视频网站| 少妇的逼好多水| 国产日韩欧美在线精品| 亚洲熟妇中文字幕五十中出| 成人综合一区亚洲| 国产成人福利小说| 国产欧美日韩精品一区二区| 色哟哟·www| 精品久久久噜噜| 亚洲一级一片aⅴ在线观看| 免费黄网站久久成人精品| av国产免费在线观看| 成人鲁丝片一二三区免费| 男女啪啪激烈高潮av片| 国产中年淑女户外野战色| 男的添女的下面高潮视频| 国产精品嫩草影院av在线观看| 亚洲中文字幕日韩| 亚洲av免费高清在线观看| 欧美最新免费一区二区三区| 性色avwww在线观看| .国产精品久久| 男女视频在线观看网站免费| 国语自产精品视频在线第100页| 久久6这里有精品| 久久鲁丝午夜福利片| 天美传媒精品一区二区| 国产精品乱码一区二三区的特点| 国产黄片视频在线免费观看| 黄色一级大片看看| 欧美在线一区亚洲| 国产毛片a区久久久久| 日日干狠狠操夜夜爽| 国产成人freesex在线| 少妇裸体淫交视频免费看高清| 免费av观看视频| 国产视频首页在线观看| 欧美日韩国产亚洲二区| av在线天堂中文字幕| 国产亚洲精品av在线| 乱人视频在线观看| 久久精品国产亚洲av涩爱 | 美女脱内裤让男人舔精品视频 | 日韩国内少妇激情av| 欧美日韩乱码在线| 久久鲁丝午夜福利片| 亚洲七黄色美女视频| 久久鲁丝午夜福利片| 国产高清有码在线观看视频| 国产成人freesex在线| 一夜夜www| 亚洲最大成人中文| 国产精品久久久久久av不卡| 欧美区成人在线视频| videossex国产| av天堂中文字幕网| 美女cb高潮喷水在线观看| av.在线天堂| 在线观看午夜福利视频| 成人特级黄色片久久久久久久| 国产亚洲av嫩草精品影院| 永久网站在线| 成人av在线播放网站| 久久热精品热| 色视频www国产| 最好的美女福利视频网| 亚洲精品456在线播放app| 亚洲成人中文字幕在线播放| 亚洲国产精品久久男人天堂| 我的女老师完整版在线观看| 国内精品久久久久精免费| 少妇的逼好多水| 成人午夜精彩视频在线观看| 99九九线精品视频在线观看视频| 亚洲在久久综合| 岛国在线免费视频观看| 婷婷精品国产亚洲av| 一级毛片我不卡| 欧美日韩一区二区视频在线观看视频在线 | 在线播放国产精品三级| 爱豆传媒免费全集在线观看| 亚洲丝袜综合中文字幕| 99九九线精品视频在线观看视频| 国内精品一区二区在线观看| 亚洲精品久久国产高清桃花| 国产一级毛片七仙女欲春2| 亚洲国产色片| 亚洲真实伦在线观看| 美女高潮的动态| 18禁黄网站禁片免费观看直播| 特大巨黑吊av在线直播| 亚洲av.av天堂| 国产成人精品一,二区 | 岛国毛片在线播放| 99riav亚洲国产免费| 免费观看在线日韩| 可以在线观看的亚洲视频| 2022亚洲国产成人精品| 特大巨黑吊av在线直播| 亚洲av.av天堂| 99热这里只有是精品50| 亚洲无线在线观看| 亚洲欧美日韩东京热| 免费人成视频x8x8入口观看| 亚洲电影在线观看av| 在线免费十八禁| 日韩精品青青久久久久久| 夜夜夜夜夜久久久久| www日本黄色视频网| 色尼玛亚洲综合影院| 国产私拍福利视频在线观看| av专区在线播放| 成人漫画全彩无遮挡| 欧美+日韩+精品| 一级黄片播放器| 精品人妻偷拍中文字幕| 国产精品伦人一区二区| 久久精品国产亚洲av香蕉五月| 十八禁国产超污无遮挡网站| 成人特级av手机在线观看| 欧美人与善性xxx| 国产精品久久久久久av不卡| 身体一侧抽搐| 夜夜夜夜夜久久久久| 26uuu在线亚洲综合色| 99久久成人亚洲精品观看| 亚洲自偷自拍三级| 18+在线观看网站| 一夜夜www| 一级黄色大片毛片| 熟女人妻精品中文字幕| 精品人妻视频免费看| 内地一区二区视频在线| 欧美精品国产亚洲| 中国美白少妇内射xxxbb| 欧美性猛交╳xxx乱大交人| 黄色配什么色好看| 春色校园在线视频观看| 欧美+亚洲+日韩+国产| 啦啦啦啦在线视频资源| 日韩欧美一区二区三区在线观看| 亚洲三级黄色毛片| 在线观看美女被高潮喷水网站| 成年版毛片免费区| 欧美色视频一区免费| 日日啪夜夜撸| 久久精品国产亚洲av天美| 日韩三级伦理在线观看| 亚洲欧美成人精品一区二区| 天天躁日日操中文字幕| 成人毛片60女人毛片免费| 日韩一区二区三区影片| 男女做爰动态图高潮gif福利片| 天堂网av新在线| 青春草亚洲视频在线观看| 少妇高潮的动态图| 一本一本综合久久| 国产精品无大码| 高清在线视频一区二区三区 | 成人午夜高清在线视频| 亚洲中文字幕一区二区三区有码在线看| 欧美bdsm另类| 在线播放国产精品三级| 国国产精品蜜臀av免费| 日韩,欧美,国产一区二区三区 | 国产在线精品亚洲第一网站| 激情 狠狠 欧美| 老熟妇乱子伦视频在线观看| 99在线视频只有这里精品首页| 久久99蜜桃精品久久| 亚洲第一电影网av| 久久精品综合一区二区三区| 99久久九九国产精品国产免费| 在现免费观看毛片| 成人三级黄色视频| 国产色爽女视频免费观看| 一级毛片电影观看 | av在线蜜桃| 欧美丝袜亚洲另类| 亚洲欧美成人综合另类久久久 | 欧美一区二区精品小视频在线| 久久99热6这里只有精品| 九九久久精品国产亚洲av麻豆| 欧美潮喷喷水| 亚洲aⅴ乱码一区二区在线播放| 天堂中文最新版在线下载 | 大型黄色视频在线免费观看| 人妻久久中文字幕网| 波多野结衣高清作品| 国产午夜精品论理片| 亚洲精品久久国产高清桃花| 久久久午夜欧美精品| 亚洲精品456在线播放app| 3wmmmm亚洲av在线观看| 99热这里只有精品一区| 色噜噜av男人的天堂激情| 亚洲av不卡在线观看| 深夜a级毛片| 女人被狂操c到高潮| 婷婷色综合大香蕉| 桃色一区二区三区在线观看| 久久热精品热| 中文字幕精品亚洲无线码一区| 日韩人妻高清精品专区| 国产精品一区www在线观看| 天堂中文最新版在线下载 | 美女cb高潮喷水在线观看| 日本-黄色视频高清免费观看| 在现免费观看毛片| 99久久久亚洲精品蜜臀av| 亚洲国产精品成人久久小说 | 欧美色视频一区免费| 两个人的视频大全免费| 国产精品久久久久久精品电影小说 | 国产69精品久久久久777片| 久久精品国产清高在天天线| 免费观看精品视频网站| 色哟哟·www| 国产午夜精品一二区理论片| 成人特级av手机在线观看| 99久久精品一区二区三区| 国产精品一区二区三区四区久久| 精品久久久久久久久久免费视频| 一本—道久久a久久精品蜜桃钙片 精品乱码久久久久久99久播 | 免费看av在线观看网站| 久久国产乱子免费精品| 国产v大片淫在线免费观看| 国产不卡一卡二| 日本在线视频免费播放| 亚洲av.av天堂| 99热这里只有是精品50| 九色成人免费人妻av| 99久久精品一区二区三区| 青春草亚洲视频在线观看| 搞女人的毛片| 欧美激情在线99| 变态另类成人亚洲欧美熟女| 久久久久九九精品影院| 成人特级黄色片久久久久久久| 好男人在线观看高清免费视频| 22中文网久久字幕| 欧美色欧美亚洲另类二区| 3wmmmm亚洲av在线观看| 又爽又黄a免费视频| 国产一区二区在线av高清观看| 亚洲色图av天堂| 精品无人区乱码1区二区| 国产精品一及| 国产午夜精品论理片| 一本一本综合久久| 在线观看一区二区三区| 人人妻人人看人人澡| 亚洲va在线va天堂va国产| 亚洲欧美精品专区久久| 亚洲在线观看片| 69av精品久久久久久| 男人舔奶头视频| 中文在线观看免费www的网站| 在线观看美女被高潮喷水网站| 人妻夜夜爽99麻豆av| 亚洲久久久久久中文字幕| 国产视频首页在线观看| 欧美三级亚洲精品| 欧美成人免费av一区二区三区| 久久久久久国产a免费观看| 亚洲成人av在线免费| 婷婷色av中文字幕| 麻豆国产97在线/欧美| av福利片在线观看| 干丝袜人妻中文字幕| 九色成人免费人妻av| 波野结衣二区三区在线| 国产69精品久久久久777片| 国产亚洲91精品色在线| 国产白丝娇喘喷水9色精品| 久久久久性生活片| 国产成年人精品一区二区| 色综合色国产| 日本撒尿小便嘘嘘汇集6| 国产男人的电影天堂91| 国语自产精品视频在线第100页| 99热这里只有是精品在线观看| 欧美精品国产亚洲| 波野结衣二区三区在线| 性欧美人与动物交配| 国产成人福利小说| 欧美区成人在线视频| 国产精品久久久久久久久免| 男女边吃奶边做爰视频| 全区人妻精品视频| 欧美成人免费av一区二区三区| 久久久久久大精品| av.在线天堂| 99热这里只有精品一区| 一级二级三级毛片免费看| 国内精品美女久久久久久| 亚洲精品乱码久久久v下载方式| 欧美性猛交╳xxx乱大交人| 边亲边吃奶的免费视频|