随着输电线路电压等级的提升,特高压线路电磁环境问题已成为决定其杆塔尺寸的主要因素之一。文中对1 000 k V特高压双回线路和六相578 k V线路的电磁环境进行了计算和比较,结果显示采用同样的塔头和呼高情况下,六相线路的电磁环境优于...
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随着输电线路电压等级的提升,特高压线路电磁环境问题已成为决定其杆塔尺寸的主要因素之一。文中对1 000 k V特高压双回线路和六相578 k V线路的电磁环境进行了计算和比较,结果显示采用同样的塔头和呼高情况下,六相线路的电磁环境优于三相线路。文中还研究了六相线路电磁环境随呼高的变化规律,地线及距地面最高的两根输电线的表面场强随呼高降低而降低,其余导体表面场强随呼高降低而增加;线路下方地面附近工频电场强度、无线电干扰及可听噪声均随着呼高的降低而增加。相比于同等相电压等级的三相线路,其导线表面电场强度更小。因此,六相输电可有效改善双回交流线路的电磁环境。
The directivity of acoustic vector sensor can be distorted by the sound diffraction wave of *** to Helmholtz integral equation,the directivity of acoustic vector sensor under the condition of finite cylinder baffle is...
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The directivity of acoustic vector sensor can be distorted by the sound diffraction wave of *** to Helmholtz integral equation,the directivity of acoustic vector sensor under the condition of finite cylinder baffle is calculated by using boundary element method(BEM).Considering the problem of nearly singular integrals of BEM,the exponent parts of fundamental solutions are expanded in trigonometric *** singular and the nonsingular parts are separated:the nonsingular parts are calculated by Gaussian integral method;the singular parts are regularized by subsection integral *** the surface integrals are reduced into line integrals along the elements' contour which can be calculated by Gaussian integral *** sound diffraction field of a plane wave under the condition of finite cylinder baffle at different frequencies and incident angles is calculated,and the characteristics of directivity of pressure and vibration velocity at different frequencies are *** experimental data are treated and the errors between the experimental and theoretical results are ***,according to the research results about the influences on the directivity of acoustic vector sensor by baffle at present,some future prospects about eliminating the effects of sound diffraction field by baffle are presented.
在某500 k V变电站同一工况的开关操作下,多次测量开关设备暂态外壳电压和汇控柜内电流互感器二次端口的骚扰电压,发现测量值存在很大的差异。为了确定操作过电压与断路器合闸瞬间动静触头间电压初相位的关系,采用断路器相控技术,建立...
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在某500 k V变电站同一工况的开关操作下,多次测量开关设备暂态外壳电压和汇控柜内电流互感器二次端口的骚扰电压,发现测量值存在很大的差异。为了确定操作过电压与断路器合闸瞬间动静触头间电压初相位的关系,采用断路器相控技术,建立单相断路器在不同相位条件下合闸空载长线的分析模型。仿真结果表明,断路器在最佳相位下击穿时,空载线路侧最大操作过电压为0.96 p.u.,低于500 k V输电线路的额定电压,验证了断路器相控技术用于抑制线路操作过电压的有效性。此外,针对断路器三相同期合闸造成某相出现较大过电压的情况,提出断路器合闸空载线路的选相控制策略,可使三相线路操作过电压均保持在额定电压范围内。
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