@ye_tik: يعرض هذا المشهد الأرشيفي النادر، الذي يعود لعام 1979، مراسم استقبال الملكة إليزابيث الثانية في دولة البحرين، في لقطات توثق جانباً مهماً من التراث الثقافي والضيافة الأصيلة‏ . • الاستقبال والترحيب: يوثق المشهد وصول الملكة ونزولها من السفينية، واستقبال الأمير الشيخ عيسى بن سلمان آل خليفة لها على السجادة الحمراء، مع عرض للمراسم التقليدية والترحيب بها وفق العادات الراسخة‏ . • الاحتفالات والتواصل: يبرز الفيديو فرحة الشعب البحريني وانفتاحه، مع لقطات من الاحتفالات التقليدية والغناء التي تعكس روح المناسبات في تلك الحقبة‏ . • التطور والبنية التحتية: يشير الفيديو إلى نبذة عن التطور الذي شهدته المنطقة، مثل بناء الجسر الرابط بين البحرين والسعودية، كجزء من التحول الاجتماعي والاقتصادي في ذلك الوقت‏ . هذا الفيديو جزء من مبادرتنا لحفظ التراث الثقافي الخليجي، ويأتي بهدف التوثيق الأكاديمي والتاريخي فقط، بعيداً عن أي سياقات سياسية. #البحرين_قديماً #استقبال_الملكة_1979 #توثيق_التراث_البحريني #الحياة_في_السبعينات #الأرشيف_النادر_الخليجي

السِّجل | THE RECORD
السِّجل | THE RECORD
Open In TikTok:
Region: US
Thursday 09 April 2026 04:19:27 GMT
351290
3495
118
1345

Music

Download

Comments

postnotmyletters
Nouf 🇰🇼 :
التعليق متعالي جداً
2026-04-09 14:12:41
18
akdyt5
akdyt :
تعليق المعلق الإنجليزي فيه كلام جارح
2026-04-10 09:48:42
38
hkem7745
حــﯖــٻۧــمۘ🇸🇦𝐻𝐴𝐾𝐼? :
ولله ونعم ..... هيبه و فخامه لله يرحمه
2026-04-09 04:36:06
25
ramizabusaif
Ramizabusaif :
كم طوله كاين الله يرحمه
2026-04-09 14:45:37
4
ghaida.ashkanani
Ghaida_Ashkanani :
هذا المعلق تواقح بالكلام عالأمير!!!
2026-04-09 13:35:08
17
howtowhatnow
RealTalkGuide :
This is little prince 🫅 amazing footage ❤️
2026-04-09 06:04:46
3
user494273445
تعرف ميدو :
التعليق مسئ للغاية
2026-04-10 05:57:18
4
sameh.elsanusi
سامح السنوسي :
2026-04-11 06:06:39
6
qmm68
Kuwaiti 🇰🇼 :
المذيع قال كلام خطأ بحق الشيخ عيسى الله يرحمه
2026-04-11 03:20:59
5
nyunfilter
nyunfilter :
🥰🥰🥰
2026-06-23 10:35:45
1
kingdom.gov
MBS :
صراحة اجمل واصدق فديو ❤️
2026-04-10 23:51:53
4
p.r5674
Me :
يا رب سامحني ضحكت
2026-04-09 09:33:17
9
fatemamohd67
fatemamohd67 :
حبيبي شيخنا الله يرحمه ويغفر له ويسكنه فسيح جناته يارب 🙏🙏💔💔❤️❤️❤️
2026-04-09 11:35:52
5
ned_lib
Nidal :
لا حول ولا قوة الا بالله
2026-04-09 13:28:03
2
hussainaldairy23
Hussainaldairy23 :
الله يرحمه الامير عيسى بن سلمان ال خليفه
2026-04-09 16:36:51
2
aldnysh_s
سعيد الدنيش :
سبحان ما أطوله ملك البحرين، فعلاً الطول عز
2026-04-11 00:33:49
2
usrmaatra
USR MAAT RA👁 :
2026-04-09 09:01:27
6
abeesa52005
AB- Bh :
His highness Sheikh Isa. Who built the Golden era of our kingdom and was able to make his people live a peaceful and prosperous life and the impact still exists today and will never ever end.. May he rest in peace.
2026-04-09 09:06:54
5
ayoubalqahtani
ابو الليثين :
الله يرحمه ويسكنه الفردوس الاعلى من الجنه
2026-04-10 10:59:13
1
user378232751703
أن الله مع الصابرين :
الله يرحم بوحمد ثقافه وطيبه وكرم وجود
2026-04-11 05:34:18
1
ahmedyassein83
ahmedyassein83 :
اللهم اغفر لهم وارحمهم واسكنهم فسيح جناته يارب العالمين
2026-04-10 10:31:22
1
ii_qr
Prince Alshafay🇪🇬🇧🇷🇮🇩 :
التعليق 😳
2026-04-10 22:25:27
1
hazimjmukhtar
Hazim MUKHTAR :
العقال المقصب شي ثاني 😍
2026-04-09 16:13:53
1
To see more videos from user @ye_tik, please go to the Tikwm homepage.

Other Videos

The Spear-Meso Orbital Satellite System (SM-OSS) is a fictional convective storm structure consisting of one dominant Main Spear-Meso Cell and one dynamically coupled Satellite Cell that literally orbits the main mesocyclone along a curved trajectory. Unlike a conventional multicell cluster, the Satellite Cell is not simply an independent storm developing alongside the main cell; its motion and persistence are directly controlled by the distorted rotating wind field surrounding the Main Spear-Meso Cell. The main cell features a compressed mesocyclone and a truncated northern hook, while the smaller Satellite Cell maintains its own deep updraft, downdraft, reflectivity core, overshooting top, and localized rotation. The satellite typically remains 8–20 km from the main circulation, with its orbital distance changing according to the phase of the system. Its orbit is maintained by the combined influence of a strong southeast inflow stream, a shear-gradient zone surrounding the main mesocyclone, and a narrow northwestern RFD that prevents the satellite from entering the main core. The Satellite Cell follows a curved, horseshoe-like trajectory, developing or strengthening in the southeast, moving toward the east, curving northeastward, approaching the northern side of the Main Spear-Meso Cell without directly entering the truncated hook, and then being deflected back toward the eastern side by the compressed RFD. A major orbital cycle lasts approximately 15–35 minutes. During a stable orbit, the satellite remains roughly 15–20 km from the main circulation and interacts only weakly with it, allowing the system to persist for an extended period. During an orbital contraction, the satellite approaches within approximately 8–12 km, its updraft becomes elongated toward the main circulation, and interaction between the two circulations intensifies. This contraction can temporarily strengthen the primary mesocyclone and, when accompanied by enhanced low-level shear, may produce a short-lived tornado near the northern spearhead. Eventually, the orbit may collapse if the Satellite Cell is disrupted by the RFD or drawn into the main circulation, causing the existing satellite structure to disappear and the Main Spear-Meso Cell to undergo a restructuring phase. If the surrounding thermodynamic and kinematic environment remains favorable, a new Satellite Cell can subsequently regenerate on the southeastern or eastern side of the main circulation and begin another orbital cycle. The defining characteristic of the SM-OSS is therefore the existence of a deep, structurally distinct convective satellite that maintains a literal curved orbit around a dominant mesocyclone while remaining dynamically coupled to it, producing a continuously evolving two-cell system rather than a conventional collection of independent multicells. #fyp #tornado #storm #savetornadotok #meteotok
The Spear-Meso Orbital Satellite System (SM-OSS) is a fictional convective storm structure consisting of one dominant Main Spear-Meso Cell and one dynamically coupled Satellite Cell that literally orbits the main mesocyclone along a curved trajectory. Unlike a conventional multicell cluster, the Satellite Cell is not simply an independent storm developing alongside the main cell; its motion and persistence are directly controlled by the distorted rotating wind field surrounding the Main Spear-Meso Cell. The main cell features a compressed mesocyclone and a truncated northern hook, while the smaller Satellite Cell maintains its own deep updraft, downdraft, reflectivity core, overshooting top, and localized rotation. The satellite typically remains 8–20 km from the main circulation, with its orbital distance changing according to the phase of the system. Its orbit is maintained by the combined influence of a strong southeast inflow stream, a shear-gradient zone surrounding the main mesocyclone, and a narrow northwestern RFD that prevents the satellite from entering the main core. The Satellite Cell follows a curved, horseshoe-like trajectory, developing or strengthening in the southeast, moving toward the east, curving northeastward, approaching the northern side of the Main Spear-Meso Cell without directly entering the truncated hook, and then being deflected back toward the eastern side by the compressed RFD. A major orbital cycle lasts approximately 15–35 minutes. During a stable orbit, the satellite remains roughly 15–20 km from the main circulation and interacts only weakly with it, allowing the system to persist for an extended period. During an orbital contraction, the satellite approaches within approximately 8–12 km, its updraft becomes elongated toward the main circulation, and interaction between the two circulations intensifies. This contraction can temporarily strengthen the primary mesocyclone and, when accompanied by enhanced low-level shear, may produce a short-lived tornado near the northern spearhead. Eventually, the orbit may collapse if the Satellite Cell is disrupted by the RFD or drawn into the main circulation, causing the existing satellite structure to disappear and the Main Spear-Meso Cell to undergo a restructuring phase. If the surrounding thermodynamic and kinematic environment remains favorable, a new Satellite Cell can subsequently regenerate on the southeastern or eastern side of the main circulation and begin another orbital cycle. The defining characteristic of the SM-OSS is therefore the existence of a deep, structurally distinct convective satellite that maintains a literal curved orbit around a dominant mesocyclone while remaining dynamically coupled to it, producing a continuously evolving two-cell system rather than a conventional collection of independent multicells. #fyp #tornado #storm #savetornadotok #meteotok

About