1992•International Journal of Offshore and Polar EngineeringRequires access

Drag And Inertia Force Coefficients Derived From Field Tests

Wataru Koterayama, Masahiko Nakamura

Open publisher page 2 citations

Abstract

Field tests were carried out over a two-year period to obtain the drag and inertia coefficients of a surface-piercing vertical cylinder fixed in irregular waves using an ocean research platform. The platform was set 2 km offshore for collection of ocean environmental data on wind, waves and current. The wave forces were measured with two 2-component dynamometers set at either end of the test cylinder: Data on waves were recorded using a wave height meter array, and orbital velocity was also measured with a 3-component electromagnetic current meter to confirm the accuracy of estimated values or orbital velocity calculated from wave data and linear wave theory. The following was found. (a) the values of CD and CM obtained from least squares fit to the complete force time series of a random wave record were well ordered as a function of Keulegan-Carpenter number KC defined by significant orbital displacement and the diameter of the cylinder, but those determined by the least squares fit on a wave-by-wave basis were widely scattered. (b) ocean wave forces exerted on the cylinder was well represented by Morison's formula; the ratio of predicted wave force by this formula to the directly measured force was 90%, and the ratio was very stable throughout the experiments.

About this research paper

What this paper is about

Field tests were carried out over a two-year period to obtain the drag and inertia coefficients of a surface-piercing vertical cylinder fixed in irregular waves using an ocean research platform. The platform was set 2 km offshore for collection of ocean environmental data on wind, waves and current. The wave forces were measured with two 2-component dynamometers set at either end of the test cylinder: Data on waves were recorded using a wave height meter array, and orbital velocity was also measured with a 3-component electromagnetic current meter to confirm the accuracy of estimated values or orbital velocity calculated from wave data and linear wave theory. The following was found. (a) the values of CD and CM obtained from least squares fit to the complete force time series of a random wave record were well ordered as a function of Keulegan-Carpenter number KC defined by significant orbital displacement and the diameter of the cylinder, but those determined by the least squares fit on a wave-by-wave basis were widely scattered. (b) ocean wave forces exerted on the cylinder was well represented by Morison's formula; the ratio of predicted wave force by this formula to the directly measured force was 90%, and the ratio was very stable throughout the experiments.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Field tests were carried out over a two-year period to obtain the drag and inertia coefficients of a surface-piercing vertical cylinder fixed in irregular waves using an ocean research platform. The platform was set 2 km offshore for collection of ocean environmental data on wind, waves and current. The wave forces were measured with two 2-component dynamometers set at either end of the test cylinder: Data on waves were recorded using a wave height meter array, and orbital velocity was also measured with a 3-component electromagnetic current meter to confirm the accuracy of estimated values or orbital velocity calculated from wave data and linear wave theory. The following was found. (a) the values of CD and CM obtained from least squares fit to the complete force time series of a random wave record were well ordered as a function of Keulegan-Carpenter number KC defined by significant orbital displacement and the diameter of the cylinder, but those determined by the least squares fit on a wave-by-wave basis were widely scattered. (b) ocean wave forces exerted on the cylinder was well represented by Morison's formula; the ratio of predicted wave force by this formula to the directly measured force was 90%, and the ratio was very stable throughout the experiments.

Key concepts: Drag, Mechanics, Morison equation, Wave height, Cylinder, Drag coefficient, Physics, Wind wave

Related papers

Back to paper searchBrowse research topicsOriginal source
Drag And Inertia Force Coefficients Derived From Field Tests — Research Paper | ScholarLens