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1.
相控震源定向地震波信号分析   总被引:8,自引:6,他引:2       下载免费PDF全文
姜弢  林君  杨冬  陈祖斌 《地球物理学报》2008,51(5):1551-1556
应用可控震源地震勘探,当环境噪声很强,采用组合震源工作仍不能满足信噪比要求时,引入能形成定向地震波的相控震源.由相控震源定向照明地震理论分析,主波束方向上3单元相控震源产生的反射地震波信号信噪比比单震源高6.53~9.54 dB,比组合震源高1.76~4.77dB.为研究相控地震实际效果,在同一测区进行了三种震源地震对比实验.由单炮地震记录和水平叠加时间剖面可知,相控震源反射波信号信噪比明显高于单震源情况,略高于组合震源情况.进一步对反射波信号功率谱特性做定量分析,得到如下结果:与单震源情况相比,相控震源使各道反射波信号信噪比提高了0.75~8.15 dB,平均提高3.65 dB;与组合震源情况相比,各道信噪比提高了0.93~3.17 dB,平均提高2.02 dB,实验结果与理论分析吻合.综上所述可知,基于相控震源的定向照明地震技术是可行的,可以有效提高地震信号的信噪比.  相似文献   

2.
基于接收阵列的时域地震波束形成方法   总被引:2,自引:2,他引:0       下载免费PDF全文
地震勘探中,针对目的层地震数据信噪比较低情况,为改善信噪比,本文提出一种基于接收阵列的时域地震波束形成方法(TSBBRA).该方法的理论依据是波束形成原理,文中通过对相控震源激发定向地震波场的分析,提出在反射地震勘探中,在信号接收端同样能生成定向地震波的思路.具体地,论文给出在地震数据集上先对单炮记录分组,再对组内记录时域内延时、叠加,生成对应定向地震波场的地震记录的方法.TSBBRA方法适于杂波干扰强,且杂波与目的层反射波方向不一致的地震条件.本文先通过波场模拟,展示了TSBBRA方法具有形成定向地震波场的能力;而后通过对比相控震源与TSBBBRA时间剖面,说明了TSBBRA方法的有效性;最后在吉林某油页岩矿区,用TSBBRA方法,分别针对浅层目标与深层目标,生成定向地震波数据.与原始数据相比,目标层信噪比提高了3~35 dB,在时间剖面上观测到的深部目标信号从200 ms扩展到1000 ms,TSBBRA剖面资料与测区附近区域的地质与地震资料一致.由此得出结论,TSBBRA方法有助于改善目的层地震资料信噪比,当关注深部目的层时,由于TSBBRA方法能有效压制噪声,因此可用于能够实现更大的勘探深度.实验中,我们给出了浅层勘探结果,由于本方法对震源及观测系统没有限制,实际应用中TSBBRA方法可作为深部资源勘探领域提高深部地震资料信噪比的有效方法.  相似文献   

3.
可控震源匹配扫描方法研究   总被引:2,自引:2,他引:0       下载免费PDF全文
王忠仁  高健  林君 《地球物理学报》2010,53(11):2754-2759
常规的可控震源Chirp扫描信号的地震响应存在着相关信号旁瓣大、分辨率低的缺点;用二元伪随机编码信号作为可控震源的驱动信号,地震响应剖面中存在严重的相关噪声,降低了地震记录的信噪比.本文提出的可控震源匹配扫描方法,利用匹配伪随机序列偶调制正弦载波信号作为可控震源驱动信号进行扫描激发,得到两个匹配的原始地震记录,对两个匹配的原始地震记录分别解码后再进行叠加形成最终的综合解码地震剖面.地震数值模拟的结果表明,该方法基本不存在常规Chirp扫描情形的旁瓣效应,可有效避免m-序列编码扫描情形的相关噪声,其最后形成的综合解码地震剖面可以与脉冲震源的炮集记录相媲美.  相似文献   

4.
20世纪 80年代以来 ,一些地震工作者提出了用地震波形记录测定小地震震源机制解的方法 .Kisslinger(1 980 )以及 Julian和 Foulger(1 996 )提出利用短周期 P,S波振幅比确定震源机制解的方法 ;Schwartz(1 995 )提出利用初动资料和对速度结构变化不灵敏地震包络振幅的测定方法 .但是 ,频率高于几赫的地震波振幅 ,对地震波传播途径上的速度和 Q值结构的三维变化是相当敏感的 .上述方法得到的结果仍可能受速度和 Q值结构不均匀性的明显影响 . Horiuchi等 1提出一种方法 ,如震源集中在一个小区域 ,可以假设这些地震的震源到某个地震台站的路…  相似文献   

5.
为了研究二氧化碳物理相变技术应用于新型震源研发的可行性,在地下成层性较好的某煤田地震测区,开展了利用二氧化碳相变技术激发地震波的野外人工震源激发-接收实验.并与传统炸药震源进行了对比.地震数据利用Aries2.66型垂直分量反射地震仪和PDS-2型三分量地震仪接收.根据实测地震数据,从野外地震记录震相识别,初至波传播距离分析,震源近场地震信号时频分析,CO_2相变激发震源子波提取和基于CO_2震源子波的地震初至波波形反演实验等多个方面,进行了关于CO_2相变激发技术能否产生地震波信号以及能否将其应用于新型震源研发的可行性研究.研究结果表明CO_2物理相变膨胀能够产生能量集中的地震波信号;在实验区地质条件和激发参量下地震记录中初至波的可识别的传播距离约为1km;震源近场地震信号的主频集中在8~13Hz;利用震源近场数据提取了CO_2震源子波;通过地震初至波波形反演实验认为这种震源子波能够应用于波形反演等方面的研究.因为CO_2相变激发具有绿色、环保、安全等方面的优点,若能进一步在激发能量、激发—延迟时间一致性等方面加以改进,该技术有望在城市隐伏活动断层探测、城市地下空间探测、煤矿高瓦斯环境人工地震勘探等领域发挥重要的作用.  相似文献   

6.
可控震源定向照明方法的仿真研究   总被引:2,自引:1,他引:1       下载免费PDF全文
当野外噪声很强,即使使用组合震源地震也无法获得满意信噪比的地震数据时,本文提出了一种基于可控震源阵列的定向照明控制方法,采用该方法可形成定向地震波.通过仿真研究合成了8激震器可控震源阵列分别采用简单组合及定向照明技术得到的单炮地震记录,可以看出采用合适的延时参数,定向照明单炮地震记录的反射波信噪比高于组合地震情况.定量的计算结果表明,实验条件下采用0.89 ms延时参数,各反射波信噪比分别提高了10.19 dB,3.23 dB和1.02 dB.由此可见,可控震源定向照明地震技术是一种提高原始地震资料信噪比的有效方法.  相似文献   

7.
本文基于相控震源基本原理,通过数值模拟计算验证相控震源具有方向可控性,能量集中的特点.首先,采用了有限差分法求解声波方程方式来模拟由传统炸药震源、单个可控震源、组合震源和相控震源在相同地质模型下的地震波场,其中选择了PML吸收边界,设计了两种均匀介质的地质模型.通过对比不同震源的地震记录和波场快照,相控震源相比同等环境参数下的其他震源(炸药震源、相控震源和单个可控震源)有较高分辨率,以及在大倾角地层有较好的探测效果.其次,通过控制参数法研究了震源个数、震源间距以及chirp信号的相位对相控震源分辨率的影响.  相似文献   

8.
随着勘探工作向深部发展,地震数据的信噪比分辨率要求越来越高.均匀振幅加权定向地震波方法(即基于接收阵列的时域地震波束形成方法,简称TSBBRA),可以增强目标信号、降低噪声,改善地震数据的质量.然而增大TSBBRA的控制参数N,会导致地震有效波束变窄,主波束不能覆盖整个接收排列,有时达不到对数据质量的要求.余弦振幅加权定向地震波方法(SDBCAD)通过余弦振幅加权展宽波束,能改善上述问题.过去对SDBCAD方法改善程度的研究仅限于理论模型上的研究,为了进一步探讨SDBCAD方法与TSBBRA方法对实际数据质量的影响,在吉林省农安县哈拉海镇开展了对比实验研究.通过TSBBRA和SDBCAD的实验剖面对比可知,SDBCAD方法能够在满足勘探精度要求的情况下合理展宽定向地震波束,能够更有效覆盖接收排列,表明了SDBCAD方法在宽接收排列情况下,能够更显著地改善地震数据质量.  相似文献   

9.
组合震源技术通过调节延迟激发时间和震源埋藏深度能够实现地震波场的定向传播,提高地震波的照明能量和地震数据信噪比.然而,目前国内外对基于特定目标的组合震源最佳聚焦方向的选取以及起伏地表组合震源定向理论的研究相对较少.在聚焦方向选取方面,目前基本是利用多种不同延时参数的组合震源分别进行试验,从而确定较好的组合震源延时参数.本文则利用爆炸反射面原理,在目的层界面上均匀布置震源同时激发地震波,能够产生垂直于地层界面传播的平面波,当初至波传播至地表时进行地表方向统计.根据互易性原理,以初至波传播方向的反方向为聚焦方向,激发产生的地震波主波束方向将垂直入射到目的层界面上,从而精确的计算出组合震源的最佳聚焦方向.在组合震源定向方面,目前主要是利用组合震源方向因子公式进行计算,但该方法要求震源布置在同一条直线上,并不能满足起伏地表的应用要求.本文以惠更斯-菲涅尔原理为理论基础,提出通过炮点向量在聚焦方向上的投影来确定组合震源传播至虚拟波前的走时,从而确定任意起伏地表组合震源的延迟激发时间.该方法不仅能够计算出沿给定地质模型的目的层界面垂直入射的组合震源聚焦方向,也能够确定任意起伏地表情况下形成沿该聚焦方向定向传播地震波场的组合震源延迟激发时间.因此,本文提出的面向目标的起伏地表组合震源延时参数计算方法对组合震源数据采集具有理论与实践意义.  相似文献   

10.
为减少管波对采集数据的影响,井间地震采用了定向震源,其能量辐射特性影响接收波场的能量分布与后续成像效果.研究定向震源的正演模拟并分析能量辐射特性,为井间地震成像过程中能量补偿提供基础数据.采用圆形震源阵列法,在近源区内按照质点与震源点连线的方向设置振动函数强度,水平方向能量最强,垂直方向能量最弱,模拟的辐射能量具有随方向改变的特点.实际井间地震能量方向性非常强,因而同时采用吸收衰减层法进一步减弱纵向的地震波能量.吸收衰减层法在震源周围设置具有衰减因子的海绵层,通过不同方向设定不同的衰减因子来控制震源的方向特性.衰减因子采用了渐变函数,保证海绵层边界不产生人为反射干扰.将圆形震源阵列法与吸收衰减层法联合进行双层介质模型和实际速度场模拟,得到的炮记录方向性更加明显.两种方法的有机结合,能够更好地模拟井间定向震源.在圆形震源阵列法可行性验证基础上,分析了阵列半径对接收波场能量的影响,初步确定了模拟定向震源的最佳阵列半径.通过分析方向性参数和井间距对接收波场能量分布的影响,获得了定向震源激发下接收波场的能量分布,为在井间地震偏移成像中进行能量补偿建立了基础.  相似文献   

11.
相控震源对地震信号信噪比的改善研究   总被引:7,自引:4,他引:3       下载免费PDF全文
当测区噪声很强,采用组合震源工作仍然不能满足信噪比要求时,为进一步提高地震勘探信噪比,引入能形成定向地震波的相控震源.针对水平层状介质模型,对组合震源、相控震源地震进行了数值模拟,并定量计算了采用4,8,15,20单元的组合与相控震源地震数据的信噪比,同组合地震相比,相控地震使来自不同反射层的反射波信号的信噪比平均提高了154~990 dB.结果表明,相控震源地震得到的反射波信号信噪比高于组合地震,并且随着激震器数目增加,相控震源合成地震记录中的反射波地震数据信噪比明显提高.  相似文献   

12.
Marine seismic vibrators are generally considered to be less intrusive than airguns from an environmental perspective. This is because they emit their energy spread out in time, rather than in a single, high-intensity pulse. There are also significant geophysical benefits associated with marine vibrators, and they stem from the ability to specify in detail the output acoustic waveform. The phase can be specified independently at each frequency. Such detailed control cannot be achieved with conventional airgun sources, where the phase can only be modified using simple overall time delays. The vibrator phase can be employed in several different ways: it can be applied to the overall source phase in a sequence so that it varies from one source point to the next; it can be applied to the individual vibrators within the source array so the source directivity is changed; it can be applied to the overall source phase of each source in a simultaneous source acquisition. Carefully designed phase sequences can attenuate the residual source noise, and this in turn allows extra source points to be interleaved between the conventional ones. For these extra source points, the relative phase of the vibrators within the array can be chosen to create a transverse gradient source, which illuminates the earth predominantly in directions out of the plane of the sail line without left/right ambiguity. If seismic vibrator data are acquired using interleaved conventional and transverse gradient sweeps, more information is collected per kilometre of vessel travel than is the case in conventional acquisition. This richer data acquisition leads to the possibility of acquiring all the necessary seismic data in a shorter time. Three-dimensional reconstruction techniques are used to recover the same image quality that would have been obtained using the conventional, more time-consuming acquisition. For a marine vibrator to be suitable for these techniques it must, in general terms, have ‘high fidelity’. The precise device specifications are defined through realistic end-to-end simulations of the physical systems and the processing. The specifications are somewhat more onerous than for a conventional vibrator, but they are achievable. A prototype vibrator that satisfies these requirements has been built. In a simulated case study of a three-dimensional deep-water ocean bottom node survey, the seismic data could have been acquired using marine vibrators in one third of the time that it would have taken using airguns.  相似文献   

13.
The output from the hydraulic vibrators typically used for land seismic surveys is controlled by monitoring the acceleration measured by accelerometers mounted on the reaction mass and baseplate. The considerable energy output by such vibrators, which are coupled with the sensitivity of the accelerometers used, results in crosstalk if more than one vibrator is being used. In this paper, we present the results of a field experiment in which we measured the crosstalk between two adjacent vibrators. We found that the level of crosstalk was approximately ‐20 dB when the vibrators were adjacent but decreased with increasing frequency and separation. This result has implications for measurements of vibrator performance, source‐signature deconvolution, and in particular, estimates of the total energy output by a fleet of vibrators.  相似文献   

14.
延时参数对地震信号信噪比的改善   总被引:5,自引:3,他引:2       下载免费PDF全文
姜弢  林君  陈祖斌 《地球物理学报》2009,52(6):1651-1656
当测区噪声很强,采用组合震源工作仍然不能得到高质量地震数据,为进一步提高地震信号的信噪比,引入能形成定向地震波的相控震源.相控震源产生的地震波方向可由延时参数控制,因此延时参数是影响相控地震效果的重要参数.理论分析表明,定向地震波技术可提高反射波信号信噪比,以含3个激震器的相控震源为例,信噪比可提高6.53~9.54 dB.针对延时参数分别为0,0.802,0.384,0.241,0.174,0.123 ms的情况,完成了野外地震实验.根据原始地震记录,得到了反射波信号功率谱,在此基础上定量地计算了不同延时参数下目标层反射信号的信噪比.结果表明,与单震源情况相比,在6种延时参数下,反射波信噪比分别提高了3.3150,8.0150,6.0547,5.0278,4.5383,4.0364 dB;与组合震源情况相比,信噪比分别提高了0,4.7000,2.7397,1.7128,1.2233,0.7214 dB.综合理论分析及野外实验结果,我们可以得到这样的结论:定向地震波技术能够提高反射波信号信噪比,延时参数变化对信噪比有很大影响,采用合理的延时参数能得到更高的信噪比.  相似文献   

15.
It is well recognized that in order to realize the full potential of the Vibroseis technique, one needs to ensure accurate phase locking and a meaningful cross-correlation. To achieve these two important objectives we require an accurate estimate of the compressional stress wave radiated by the vibrator into the ground. In this paper a simple method (subject of a patent application) is developed for predicting the compressional stress waves radiated by a vertical vibrator. The main feature of the proposed method is that it involves the field measurement of the acceleration of the reaction mass and the baseplate, respectively. The method is illustrated by computing the compressional stress waves generated by a typical vertical vibrator radiating into ice, chalk, sand, and mud. It is shown that for a seismic vibrator radiating into hard ground the pressure of the downgoing P-wave is 180° out of phase with the baseplate velocity. It is also shown that when the driving force of the seismic vibrator has a flat amplitude spectrum, the amplitude spectrum of the downgoing P-wave falls off by 6 dB/octave towards low frequencies.  相似文献   

16.
相控震源在矿产勘探中应用的数值模拟研究   总被引:2,自引:2,他引:0       下载免费PDF全文
为满足深部矿区精细勘探的需求,研究适于矿区的震源技术至关重要.在便携式电磁驱动可控震源应用于矿区勘探过程中,单电磁驱动可控震源和组合震源分辨率不高.本文基于相控震源技术,采用有限差分方法,对二维地下空间不同介质模型的波场传播及地面接收点的响应进行数值模拟.模拟中,震源分别使用单震源、延时时间为0 ms及1.33 ms的9单元相控源,介质模型采用均匀、水平层状、不规则矿区模型,得到如下结果:均匀介质下相控震源激励定向地震波,0 ms、1.33 ms延时参数下相控源激发固定方向地震波,方向分别为90°和70.4°;层状介质模型下,0 ms参数下相控源产生的垂向地震波方向不随介质变化,1.33 ms相控源激励的定向地震波在不同介质中仍然具有方向性,但随波速变化,地震波发生偏折,地震波主波束方向由70.4°,依次变为68.5°,66.0°,63.7°,61.1°;不规则矿区模型下,1.33 ms相控源激发的地震波在首层介质内传播方向为70.4°,围岩内为65.4°,矿体内为63.1°.在水平层状矿区介质结构下,与单震源相比,1.33 ms和0 ms相控源令接收点信噪比分别提高了14.1 dB和10.2 dB;在不规则矿区模型下,1.33 ms和0 ms相控源较单震源令接收点信噪比提高了18.9 dB和14.9 dB.由此得到如下结论:相控源在复杂介质模型下仍具有激发定向地震波的能力,尽管波束方向在不同介质内会发生偏折;在多种延时参数下,相控源都具有改善接收数据信噪比的能力.综上所述,相控震源技术能有效提高矿集区的数据采集质量.  相似文献   

17.
The goal of vibroseis data acquisition and processing is to produce seismic reflection data with a known spatially-invariant wavelet, preferably zero phase, such that any variations in the data can be attributed to variations in geology. In current practice the vibrator control system is designed to make the estimated groundforce equal to the sweep and the resulting particle velocity data are cross-correlated with the sweep. Since the downgoing far-field particle velocity signal is proportional to the time-derivative of the groundforce, it makes more sense to cross-correlate with the time-derivative of the sweep. It also follows that the ideal amplitude spectrum of the groundforce should be inversely proportional to frequency. Because of non-linearities in the vibrator, bending of the baseplate and variable coupling of the baseplate to the ground, the true groundforce is not equal to the pre-determined sweep and varies not only from vibrator point to vibrator point but also from sweep to sweep at each vibrator point. To achieve the goal of a spatially-invariant wavelet, these variations should be removed by signature deconvolution, converting the wavelet to a much shorter zero-phase wavelet but with the same bandwidth and signal-to-noise ratio as the original data. This can be done only if the true groundforce is known. The principle may be applied to an array of vibrators by employing pulse coding techniques and separating responses to individual vibrators in the frequency domain. Various approaches to improve the estimate of the true groundforce have been proposed or are under development; current methods are at best approximate.  相似文献   

18.
An experiment was undertaken at BP's Fulbeck Geophysical test site to compare the viability of various simultaneous vibroseis recording techniques, which are often recommended as a means of improving data acquisition production rates for 3D seismic surveys. Of particular interest were: (a) the ability to separate the signals from each source during processing, (b) the generation and suppression of harmonics and (c) the effects of any source interaction. Two vibrators were deployed with a baseplate separation of 10 m, about a borehole containing a vertical array of geophones. Our analysis concentrated on the groundforce signals measured at each vibrator and the far-field signatures measured using a vertical geo-phone at a depth of 204 m. By comparing single vibrator records with similar but separated records from a simultaneous recording sequence, signal separability, harmonic suppression and vibrator interaction could be fully studied. Separated far-field signatures from simultaneous vibroseis methods using combinations of up and downsweeps exhibited unsuppressed harmonics and substantial energy from the undesired source which leaked through the correlation process. The ‘up/down’ method was capable of separating the signal from each source by only 12.7 dB, and is therefore unsuitable as a field technique. The variphase simultaneous vibroseis methods studied afforded some harmonic suppression and gave signal separations of about 30.0 dB. Use of variphase simultaneous vibroseis methods will compromise the quality of the data recorded, when compared with single-source acquisition methods. None of the simultaneous vibroseis methods tested provided adequate signal separation and, therefore, cannot be recommended as data acquisition techniques. The ‘alternate sweeping’ method coupled with multispread recording will give the desired improvement in data acquisition rates, while preserving the necessary quality of our seismic data.  相似文献   

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