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Design of Mid-Path Intercept HDD Crossing of the Santa Maria River

机译:圣玛丽亚河中途拦截硬盘穿越设计

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Nipomo Community Services District is located on the central coast of California. The District's Santa Maria River Crossing of the Supplemental Water Project Bid Package #1 includes installation of over 2,000 feet of 30-inch diameter waterline installed by a multiple pass directionally controlled drilling operation known as Horizontal Directional Drilling (HDD). The work was completed as designed using a mid-path intercept installation for the pilot bore. Located in and across the Santa Maria River, the Project was conducted amid sensitive habitats. The preliminary engineering for the Supplemental Water Project recommended construction of a 30-inch OD HDPE pipeline crossing the Santa Maria River via HDD in order to reduce disturbance of environmentally sensitive areas, avoid construction on the bluff, and streamline permitting for the project. The HDD River Crossing alignment begins within the riverbed at the HDD Entry Point located approximately 880-feet northwest of where the pipeline passes under the levee adjacent to the river. From this point, the alignment extends northward towards the south facing bluff of the Nipomo Mesa, traversing approximately 2,100 feet of riverbed and gaining approximately 110 feet in elevation as it rises to the top of the bluff. At the top of the bluff, the alignment extends an additional 500 feet northward towards the HDD Exit Point near the reservoir and pump station site. The carrier pipe vertical alignment (profile) includes an inverted arc with a radius of 5,000-feet. The soils encountered generally consist of alluvium derived from the Paso Robles Formation and dune sand. The groundwater levels vary significantly seasonally, and thus the HDD construction was specified to take place during periods of low flow because the HDD entry point is within the flood plain. A surface casing was required to stabilize the soils at the entry and exit points during drilling. The significant surface elevation difference between the entry and exit pits presented a unique challenge to the designers of the Project. This paper addresses the design considerations that led to a successful mid-path intercept HDD installation, and the construction challenges that were overcome.
机译:Nipomo社区服务区位于加利福尼亚州中部海岸。该地区的圣塔玛丽亚河穿越辅助水项目招标包#1包括安装超过2,000英尺的直径为30英寸的水线,该水线通过多次通过定向控制的钻井作业(称为水平定向钻井(HDD))进行安装。这项工作是使用导向孔的中途截距安装设计完成的。该项目位于圣玛丽亚河及其对面,在敏感的栖息地中进行。补充水项目的初步工程建议建设一条30英寸外径的HDPE管道,该管道通过HDD穿越圣玛丽亚河,以减少对环境敏感区域的干扰,避免在虚张声势上施工,并简化了该项目的流程。 HDD河流过河路线始于HDD入口点的河床内,HDD入口点位于西北约880英尺处,管线在靠近河流的堤坝下方通过。从这一点开始,线形向北延伸至Nipomo Mesa的向南的虚张声势,横越约2100英尺的河床,并在上升到虚张声势的顶部时获得约110英尺的高程。在非流线型的顶部,该路线向北延伸了500英尺,朝着靠近水库和泵站站点的HDD出口点延伸。输送管垂直对齐(轮廓)包括半径为5,000英尺的倒弧。遇到的土壤通常由来自Paso Robles组的冲积层和沙丘组成。地下水水位随季节变化很大,因此,由于HDD的入口点位于洪泛区之内,因此HDD的建设被指定为在流量低时进行。在钻孔过程中,需要使用表面套管来稳定入口和出口处的土壤。入口坑和出口坑之间明显的表面高差给项目设计者带来了独特的挑战。本文讨论了导致成功安装中途拦截HDD的设计注意事项,以及克服的构造挑战。

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