Published June 17, 2016 | Version v1
Publication Open

EXPERIMENTAL STUDY OF MOTIONS OF TWO FLOATING OFFSHORE STRUCTURES IN WAVES

  • 1. Persian Gulf University
  • 2. King Abdulaziz University

Description

Drilling is carried out in deeper to deeper waters around the globe to meet growing demands for oil and natural gas, and a number of multi body structures are deployed in various oil fields in the world. Investigation of hydrodynamic interaction of offshore structures is therefore worthwhile. Hydrodynamic interaction between floating offshore structures affects motion and relative motion especially during loading and offloading operations. Hydrodynamic interactions may lead to large motions of floating bodies that would cause damage to moorings and offloading systems and may collide with each other. This research work discusses experimental results of hydrodynamic interaction in surge, heave and pitch motion, relative motion and relative distance between a Tension Leg Platform (TLP) and semi-submersible (Tender Assisted Drilling) in regular waves. The experiment is conducted without tendon because of the depth limitation of the Towing Tank. However, in order to consider the contribution of mooring in linear direction, appropriate stiffness of horizontal springs have been used. The experiment was conducted for a full scale wave height of 3.77 m to 12.49 m for a separation distance of 21.7 m. From the analyses of the experimental and numerical results, it can be concluded that nonlinearity of the wave has an important effect on increasing the motion especially in the natural frequency region. Finally, a number of recommendations have been made for further study.

⚠️ This is an automatic machine translation with an accuracy of 90-95%

Translated Description (Arabic)

يتم الحفر في المياه العميقة في جميع أنحاء العالم لتلبية الطلب المتزايد على النفط والغاز الطبيعي، ويتم نشر عدد من الهياكل متعددة الأجسام في مختلف حقول النفط في العالم. وبالتالي، فإن التحقيق في التفاعل الهيدروديناميكي للهياكل البحرية أمر جدير بالاهتمام. يؤثر التفاعل الهيدروديناميكي بين الهياكل البحرية العائمة على الحركة والحركة النسبية خاصة أثناء عمليات التحميل والتفريغ. قد تؤدي التفاعلات الهيدروديناميكية إلى حركات كبيرة من الأجسام العائمة التي قد تتسبب في تلف المراسي وأنظمة التفريغ وقد تصطدم ببعضها البعض. يناقش هذا العمل البحثي النتائج التجريبية للتفاعل الهيدروديناميكي في حركة الارتفاع والحركة والميل والحركة النسبية والمسافة النسبية بين منصة ساق الشد (TLP) وشبه الغاطسة (Tender Assisted Drilling) في موجات منتظمة. يتم إجراء التجربة دون ميل بسبب محدودية عمق خزان القطر. ومع ذلك، من أجل النظر في مساهمة الرسو في الاتجاه الخطي، تم استخدام الصلابة المناسبة للينابيع الأفقية. أجريت التجربة لارتفاع موجة كاملة النطاق من 3.77 م إلى 12.49 م لمسافة فصل 21.7 م. من تحليلات النتائج التجريبية والعددية، يمكن الاستنتاج أن عدم خطية الموجة له تأثير مهم على زيادة الحركة خاصة في منطقة التردد الطبيعي. أخيرًا، تم تقديم عدد من التوصيات لمزيد من الدراسة.

Translated Description (English)

Drilling is carried out in deeper to deeper waters around the globe to meet growing demands for oil and natural gas, and a number of multi body structures are deployed in various oil fields in the world. Investigation of hydrodynamic interaction of offshore structures is therefore worthwhile. Hydrodynamic interaction between floating offshore structures affects motion and relative motion especially during loading and offloading operations. Hydrodynamic interactions may lead to large motions of floating bodies that would cause damage to moorings and offloading systems and may collide with each other. This research work discusses experimental results of hydrodynamic interaction in surge, heave and pitch motion, relative motion and relative distance between a Tension Leg Platform (TLP) and semi-submersible (Tender Assisted Drilling) in regular waves. The experiment is conducted without tendency because of the depth limitation of the Towing Tank. However, in order to consider the contribution of mooring in linear direction, appropriate stiffness of horizontal springs have been used. The experiment was conducted for a full scale wave height of 3.77 m to 12.49 m for a separation distance of 21.7 m. From the analyses of the experimental and numerical results, it can be concluded that nonlinearity of the wave has an important effect on increasing the motion especially in the natural frequency region. Finally, a number of recommendations have been made for further study.

Translated Description (French)

Drilling is carried out in deeper to deeper waters around the globe to meet growing demands for oil and natural gas, and a number of multi body structures are deployed in various oil fields in the world. L'étude de l'interaction hydrodynamique des structures offshore est encore précieuse. Hydrodynamic interaction between floating offshore structures affects motion and relative motion especially during loading and offloading operations. Hydrodynamic interactions may lead to large motions of floating bodies that would cause damage to moorings and offloading systems and may collide with each other. This research work discutes experimental results of hydrodynamic interaction in surge, heave and pitch motion, relative motion and relative distance between a Tension Leg Platform (TLP) and semi-submersible (Tender Assisted Drilling) in regular waves. L'expérience est conduite sans tendance à cause de la limitation profonde du réservoir de remorquage. However, in order to consider the contribution of mooring in linear direction, appropriate stiffness of horizontal springs have been used. L'expérience a été conduite pour une hauteur d'onde à pleine échelle de 3,77 m à 12,49 m pour une distance de séparation de 21,7 m. From the analyses of the experimental and numerical results, it can be concluded that nonlinearity of the wave has an important effect on increasing the motion especially in the natural frequency region. Finalement, un certain nombre de recommandations ont été faites pour une étude ultérieure.

Translated Description (Spanish)

Drilling is carried out in deeper to deeper waters around the globe to meet growing demands for oil and natural gas, and a number of multi body structures are deployed in various oil fields in the world. Investigation of hydrodynamic interaction of offshore structures is therefore worthwhile. Hydrodynamic interaction between floating offshore structures affects motion and relative motion especially during loading and offloading operations. Las interacciones hidrodinámicas pueden conducir a grandes movimientos de cuerpos flotantes que podrían causar daños a los pantanos y sistemas de descarga y pueden colisionar con otros. This research work discusses experimental results of hydrodynamic interaction in surge, heave and pitch motion, relative motion and relative distance between a Tension Leg Platform (TLP) and semi-submersible (Tender Assisted Drilling) in regular waves. The experiment is conducted without tendon because of the depth limitation of the Towing Tank. However, in order to consider the contribution of mooring in linear direction, appropriate stiffness of horizontal springs have been used. The experiment was conducted for a full scale wave height of 3.77 m to 12.49 m for a separation distance of 21.7 m. From the analyses of the experimental and numerical results, it can be concluded that nonlinearity of the wave has an important effect on increasing the motion especially in the natural frequency region. Finally, a number of recommendations have been made for further study.

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Additional details

Additional titles

Translated title (Arabic)
دراسة تجريبية لحركات اثنين من الهياكل البحرية العائمة في الأمواج
Translated title (English)
EXPERIMENTAL STUDY OF MOTIONS OF TWO FLOATING OFFSHORE STRUCTURES IN WAVES
Translated title (French)
ÉTUDE EXPÉRIMENTALE DES MOUVEMENTS DE DEUX STRUCTURES FLOTTANTES OFFSHORE EN VAGUES
Translated title (Spanish)
ESTUDIO EXPERIMENTAL DE MOVIMIENTOS DE DOS ESTRUCTURAS OFFSHORE FLOTANTES EN ONDAS

Identifiers

Other
https://openalex.org/W2470733934
DOI
10.21278/brod67201

GreSIS Basics Section

Is Global South Knowledge
Yes
Country
Malaysia