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Co-existence of wind seas and swells along the west coast of India during non-monsoon season

机译:非季风季节印度西海岸风浪和海浪共存

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An attempt has been made to understand the co-existence of wind seas and swells along the west coast of India during non-monsoon season. Wave data were collected in different years during non-monsoon season (off Goa during May 2005, off Ratnagiri during January-February 2008 and off Dwarka during December 2007-January 2008), which is fairly a calm weather season along these regions. Diurnal variation in wave parameters is noticeable along the central west coast of India (off Goa and Ratnagiri), which is due to the interaction of multidirectional waves (both wind seas and swells) of varying magnitudes and frequencies. Swells are predominantly mature (91%) and old (88%) during late pre-monsoon and post-monsoon seasons, respectively. Sea Swell Energy Ratio quantifies wind sea, swell and mixed seas prevailing in these regions during non-monsoon season. Intermodal distance (ID) between the energy peaks is moderately separated during non-monsoon season, whereas, during the shamal events, energy peaks are very close to each other (ID ∼ 0). However, pure wind seas (ID ∼ 1) are weakly present and found to co-exist with the swells almost all the time during non-monsoon season. Wind sea growth has been found while the swell propagates opposite to the direction of the wind and wind sea. Wind seas have minimum angular spreads in multimodal state. Under low winds, the interaction between wind sea and swell dominates and thereby the multimodal state reduces to unimodal state. The fetch available for the evolution of the wind sea spectrum has been estimated, and it is found to be less than 150 km. For the fetch limited condition, a non-dimensional empirical relation has been derived relating the significant wind sea height in terms of wind speed and peak wind sea period, and this relation fits for the west coast of India.
机译:试图了解非季风季节印度西海岸风浪和海浪的共存。在非季风季节(2005年5月在果阿附近,2008年1月至2月在拉特纳吉里附近和2007年12月至2008年1月在德瓦卡附近)的不同年份收集海浪数据,在这些地区,这是一个相当平静的天气季节。在印度中西部沿海(果阿和拉特纳吉里附近),海浪参数的日变化是明显的,这是由于大小和频率不同的多向波(风海和海浪)相互作用所致。在季风前后期和季风后季节中,膨胀主要是成熟的(91%)和陈旧的(88%)。海浪能量比量化了非季风季节在这些地区盛行的风浪,浪涌和混合海。在非季风季节,能量峰之间的联运距离(ID)适度分开,而在夏季活动期间,能量峰彼此非常接近(ID〜0)。但是,纯风海(ID〜1)很少存在,并且在非季风季节几乎所有时间都与海浪共存。已经发现风海的生长,而海浪则以与风相反的方向传播。风海在多峰状态下具有最小的角展度。在低风下,风海和海浪之间的相互作用占主导地位,因此多峰状态降低为单峰状态。据估计,可用于风海频谱演变的提取物,发现不到150公里。对于取水的限制条件,已经得出了一个无量纲的经验关系,该关系是根据风速和峰值风浪周期将重要风浪高度关联起来的,该关系适合印度西海岸。

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