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AgdaPkt 2015-09-21 Joint Special SAF PAF
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AgdaPkt 2015-09-21 Joint Special SAF PAF
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Last modified
9/22/2015 12:12:16 PM
Creation date
9/18/2015 8:41:20 AM
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Template:
CC Index
CC Index - Document Type
Agenda Packet
Meeting Type
Joint
Agency Type
City Council and Successor Agency and Public Financing Authority
Date
9/21/2015
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<br />3 <br /> <br />levels. The Day/Night Average Sound Level (Ldn) is essentially the same as CNEL, with the <br />exception that the evening time period is dropped and all occurrences during this three-hour period <br />are grouped into the daytime period. <br /> <br />Fundamentals of Groundborne Vibration <br /> <br />Ground vibration consists of rapidly fluctuating motions or waves with an average motion of zero. <br />Several different methods are typically used to quantify vibration amplitude. One method is the <br />Peak Particle Velocity (PPV). The PPV is defined as the maximum instantaneous positive or <br />negative peak of the vibration wave. In this report, a PPV descriptor with units of mm/sec or in/sec <br />is used to evaluate construction generated vibration for building damage and human complaints. <br />Table 3 displays the reactions of people and the effects on buildings that continuous vibration level s <br />produce. <br /> <br />The annoyance levels shown in Table 3 should be interpreted with care since vibration may be <br />found to be annoying at much lower levels than those shown, depending on the level of activity or <br />the sensitivity of the individual. To sensitive individuals, vibrations approaching the threshold of <br />perception can be annoying. Low-level vibrations frequently cause irritating secondary vibration, <br />such as a slight rattling of windows, doors, or stacked dishes. The rattling sound can give rise to <br />exaggerated vibration complaints, even though there is very little risk of actual structural damage. <br /> <br />Construction activities can cause vibration that varies in intensity depending on several factors. The <br />use of pile driving and vibratory compaction equipment typi cally generates the highest construction <br />related groundborne vibration levels. Because of the impulsive nature of such activities, the use of <br />the PPV descriptor has been routinely used to measure and assess groundborne vibration and almost <br />exclusively to assess the potential of vibration to induce structural damage and the degree of <br />annoyance for humans. <br /> <br />The two primary concerns with construction-induced vibration, the potential to damage a structure <br />and the potential to interfere with the enjoyment of life, are evaluated against different vibration <br />limits. Studies have shown that the threshold of perception for average persons is in the range of <br />0.008 to 0.012 in/sec PPV. Human perception to vibration varies with the individual and is a <br />function of physical setting and the type of vibration. Persons exposed to elevated ambient vibration <br />levels, such as people in an urban environment, may tolerate a higher vibration level. <br /> <br />Structural damage can be classified as cosmetic only, such as minor cracking of building elements, <br />or may threaten the integrity of the building. Safe vibration limits that can be applied to assess the <br />potential for damaging a structure vary by researcher and there is no general consensus as to what <br />amount of vibration may pose a threat for structural damage to the building. Construction-induced <br />vibration that can be detrimental to the building is very rare and has only been observed in instances <br />where the structure is at a high state of disrepair and the construction activity occurs immediately <br />adjacent to the structure. <br />8.A. - Page 119
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