Sentence examples for assuming a wind of from inspiring English sources

The phrase "assuming a wind of" is correct and usable in written English.
It can be used in contexts where you are making a hypothesis or estimation based on a specific wind condition, often in discussions related to weather, sailing, or aviation.
Example: "Assuming a wind of 15 knots, we can expect our sailing time to be reduced significantly."
Alternatives: "given a wind of" or "with a wind of".

Exact(1)

On Aug. 14, FirstEnergy was assuming a wind of 4.4 feet per second, he said, but actual conditions in much of its territory were dead calm.

Similar(59)

The power output was therefore recalculated under identical conditions, assuming a wind speed of 5 m/s at 10 m height and a wind shear gradient of 1/7.

Assuming a wind speed of (10~m~s^{-1}), an air parcel would move by about 50 nm in some direction between the single photon measurement and reference laser measurement.

By assuming a uniform wind in the FoV of the FPIs, we can monitor this temperature drift of the etalon gap, as described in Section 4. Figure 2 shows a schematic diagram of the optics of FP02, FP03, and FP04 that is also the same for the American FPI instruments.

The generalized force for any mode is formulated by assuming a distribution of the wind force power spectral density (PSD) along the structural height, and employing the base moments measured from HFBB wind tunnel tests.

Considering the wind loads on a typical house, estimates for failure wind speeds were obtained, assuming a factor of safety, and compared to ASCE 7-05 wind regions.

Most studies on offshore wind farm design assume a uniform wind farm, which consists of an identical type of wind turbines.

Capital costs for grid connection and electricity transmission, operation and maintenance costs, and other costs were integrated together to calculate a net present value (NPV) of a 60-MW offshore wind farm assuming a lifetime of 20 years of operation.

In this study, we have shown that a first approximation of the plasma sheet pressure and temperature can be obtained from a physical model of the magnetotail and using an empirical model of the cross polar cap potential of Morley et al. [ 2007] that is dependent on solar wind power input, assuming a constant area of the magnetotail.

The wind speed characteristics are applied to the simulation, assuming a constant load of 500 kW at Ramea.

While the geostrophic wind approximation assumes a balance of the pressure gradient force and the Coriolis force, gradient winds also include the centrifugal force.

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