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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >PRIME2: Development and evaluation of improved building downwash algorithms for rectangular and streamlined structures
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PRIME2: Development and evaluation of improved building downwash algorithms for rectangular and streamlined structures

机译:Prime2:矩形和流线型结构改进的建筑物淋浴算法的开发和评估

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摘要

AbstractTheoretical flaws in PRIME (the building downwash formulation in AERMOD) have recently been documented. To improve PRIME, an industry funded research study was initiated with the following overall objectives: 1) correct the known problems in the theory; 2) incorporate and advance the current state of science; 3) expand the types of structures that can be accurately handled (e.g., streamlined, long, wide); 4) properly document and verify the model formulation and code for the updated PRIME (PRIME2); and 5) collaborate with EPA to work toward implementing the improved model. This paper presents the results from the wind tunnel study used to develop a database of wind speed and turbulence intensity measurements downwind of various rectangular and streamlined structures for three different approach turbulence conditions. Based on those measurements, new equations were developed to estimate the velocity deficit and turbulence intensity increase in the building wake as a function of downwind distance, height, building shape, and approach turbulence intensity. Comparisons of the new equations versus wind tunnel observations showed good agreement; whereas, the equations in PRIME do not agree well above the height of the building and show mixed agreement below the top of the building.Highlights
机译:<![CDATA [ 抽象 最近记录了Prime中的理论缺陷(Aermod中的建筑物Dowshastulatulatulatulatulation)。为了提高素数,在以下整体目标启动了一个行业资助的研究研究:1)纠正理论中的已知问题; 2)纳入并推进当前的科学状态; 3)扩展可以精确处理的结构类型(例如,流线型,长,宽); 4)正确记录并验证更新素数的模型配方和代码(Prime2); 5)与EPA合作,努力实施改进的模型。本文介绍了风洞研究的结果,用于开发风速和湍流强度测量数据库,这是针对三种不同的方法湍流条件的各种矩形和流线型结构的风速和湍流强度测量数据库。基于这些测量,开发了新的方程以估计建筑物唤醒中的速度缺口和湍流强度增加,作为向下距离,高度,建筑形状和接近湍流强度的函数。新方程与风洞观测的比较表现出良好的一致性;虽然,素数的方程在建筑物的高度方面并不普遍存在建筑物的高度之上,并在建筑物顶部显示混合协议。 < CE:抽象XMLNS:CE =“http://www.elsevier.com/xml/common/dtd”xmlns =“http://www.elsevier.com/xml/ja/dtd”class =“author-fighlights” XML:lang =“en”id =“abs0015”视图=“全部”> 突出显示

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