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Geophysical characterisation of the Onewhero and Kellyville volcanic complexes, South Auckland Volcanic Field

机译:南奥克兰火山场的Onewhero和Kellyville火山复合体的地球物理特征

摘要

The Quaternary-aged (1.59 – 0.51 Ma) intraplate, monogenetic, basaltic South Auckland Volcanic Field consists of at least 82 volcanic centres that span an area of 300 km². This study focusses on the volcanic and sedimentary histories of the Onewhero and Kellyville maars, interpreted from additional geological observations, which build upon previous geological studies, and gravimetric and magnetic surveys.New geological observations of the Onewhero maar reveal the presence of diatomaceous sediment, and at least one lava flow, that probably originated from the nearby Klondyke cone to the south, and which occupies a significant area of the crater floor. A geological investigation of the Kellyville maar reveals a crater that has been partially filled by a thick accumulation of basalt and scoria and overlain by Karapiro Formation sediments and diatomite. Available borehole stratigraphy suggests that the Glass Hill basalt cone present in the Kellyville maar was an early-stage volcanic product rather than a late-stage product as previously thought.Gravimetric surveys in the Onewhero and Kellyville maars revealed contrasting crater fill deposits. Raw gravity data was acquired in the field, corrected for drift and then reduced to a Bouguer anomaly. The Onewhero maar is characterised by an anomaly of -5.8 mGal that has a concave profile. The post-eruption geological body present at Onewhero is two-dimensionally modelled with a density of 1.3 g/cm³, and has a maximum thickness of 100 m in the northwest of the crater. The Kellyville maar is characterised by an anomaly of +2.5 mGal that has a convex profile. The dominant geological body present in the crater is a lava-lake deposit that is two-dimensionally modelled with a density of 2.9 g/cm³, and has a maximum thickness of 60 m.The total magnetic field strength of the Onewhero and Kellyville maars was recorded with a proton magnetometer and the values were mapped in ArcMap. In the Onewhero maar, two subdued anomalies were outliers. A positive magnetic anomaly (213 nT) with a broad crescent shape was identified in the middle of the crater and interpreted to be either an extrusive feeder dyke or an accumulation of highly magnetic volcanic sediment deposited in a topographic trough. A circular negative anomaly (-1057 nT) in the northwest of the crater is an accumulation of lake sediment with a low magnetic susceptibility. In the Kellyville maar, two contrasting anomalies were observed. The strongly positive anomaly (1275 nT) corresponds to the geographical position of Glass Hill, a basaltic cone. A strong negative anomaly (-3315 nT) in the middle of the crater corresponds to a known deposit of diatomite.Overall, the structure of the Onewhero maar, as inferred by this investigation, is similar to many other maars globally and its sedimentary fill is remarkably similar to the Dottingen maar in Germany. The Kellyville maar has a more unique structure but can be compared to the Domain maar in the nearby Auckland Volcanic Field.
机译:第四纪年龄(1.59 – 0.51 Ma)的板内单生玄武岩南奥克兰火山场由至少82个火山中心组成,面积超过300km²。这项研究的重点是Onewhero和Kellyville岩浆的火山和沉积历史,从以前的地质研究以及重力和磁学勘测中获得的其他地质观测结果进行了解释.Onewhero岩浆的新地质观测表明存在硅藻土沉积物,并且至少有一个熔岩流,可能来自附近的南部的克朗代克锥,并占据了火山口层的很大一部分。对凯利维尔(Kellyville)岩浆进行的地质调查显示,一个火山口已被玄武岩和火山灰的浓厚堆积部分填充,并被Karapiro组沉积物和硅藻土覆盖。可用的钻孔地层学表明,凯利维尔(Kellyville)岩浆中存在的Glass Hill玄武岩锥是早期的火山产物,而不是以前认为的晚期产物。在现场采集了原始重力数据,对其进行了校正,然后归纳为布格异常。 Onewhero maar的特征是-5.8 mGal的异常,具有凹形轮廓。存在于Onewhero的喷发后地质体被二维建模,密度为1.3 g /cm³,并且在火山口的西北部最大厚度为100 m。凯利维尔(Kellyville)岩浆的特征是+2.5 mG​​al的异常,具有凸起的轮廓。火山口中的主要地质体是熔岩湖沉积物,二维建模,密度为2.9 g /cm³,最大厚度为60m。Onewhero和Kellyville岩浆的总磁场强度为用质子磁力计记录并在ArcMap中映射值。在Onewhero maar,两个柔和的异常是异常值。在陨石坑的中部发现了一个具宽月牙形的正磁异常(213 nT),被解释为挤压的馈电线堤或沉积在地形槽中的高磁性火山沉积物的堆积。火山口西北部的圆形负异常(-1057 nT)是湖沉积物的堆积,磁化率低。在凯利维尔马尔(Kellyville maar),观察到两个相反的异常。强正异常(1275 nT)对应于玄武岩锥玻璃山的地理位置。火山口中部有一个强烈的负异常(-3315 nT)对应于已知的硅藻土矿床。总体而言,根据这项研究推断,Onewhero玛氏岩的结构与全球其他许多玛氏岩相似,其沉积物填充量为与德国的Dottingen maar非常相似。凯利维尔(Kellyville)火山岩具有更独特的结构,但可以与附近的奥克兰火山场中的Domain火山岩进行比较。

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    Mullane Kevin Joseph Chase;

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