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A Qualitative Study Investigating the Sensemaking Process of Engineers Performing Windstorm Risk Surveys

机译:调查设计风暴风险调查的工程师传感过程的定性研究

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Insurance loss prevention survey, specifically windstorm survey, is the process of investigating potential damages associated with a building or structure in the event of an extreme weather condition such as a hurricane or tornado. Windstorm inspection is a type of visual risk assessment survey performed to investigate and identify the risk factors that might result in severe damages in the event of extreme weather conditions such as hurricanes or tornados. This survey involves an engineer going to a site and inspecting the property according to a standard protocol. Though they follow the protocol, the inspection process is never straightforward. The engineers have to exercise their judgement and analytical skills while evaluating the property. This process depends highly on the skills and expertise of the engineer. This could result in certain biases and mistakes. This exploratory qualitative research investigated the sensemaking process of insurance risk engineers while performing windstorm surveys. A combination of convenient sampling and maximum variation strategy was used to recruit participants from a specific insurance company. Ten risk engineers with experience ranging from less than one year to 20 years (M = 4.7) were interviewed. Additionally, we identified a subject matter expert rom this insurance company. The subject matter expert performed a mock windstorm loss preventions survey. The mock inspection activity was video recorded. Following the mock inspection, a semi-structured interview protocol was developed to understand the sensemaking process of risk engineers. The recruited participants were interviewed via phone for 90-120 minutes. The interview responses were audio recorded and the recordings were de-identified (used numbers to identify the recordings). The responses were then transcribed by an external agency for analysis purpose. The qualitative data was analyzed following an inductive thematic approach, one of the most common qualitative data analysis methods (Padgett, 2011). The first author led the inductive coding process. The coding process was completed in two steps. In the first step, the researchers identified open codes from the transcripts and then the transcripts were coded individually and the percentage of agreement was calculated (38.4% across all transcripts). However, the coders reached complete consensus after discussion. In the next step the coding schema was updated based on the results of the first step of coding. The researchers coded the transcripts again and the percentage agreement was calculated (54% across all transcripts). The transcripts were then imported to ATLAS.ti, a qualitative data analysis software. The relationships among codes were identified using the querying capability available in the software platform. Upon completing the analysis, the SME was approached to discuss the validity of our findings.
机译:保险预防调查,特别是风暴调查,是在飓风或龙卷风等极端天气状况时调查与建筑物或结构相关的潜在损害的过程。风暴检验是一种视觉风险评估调查,用于调查和确定可能导致在飓风或龙卷风等极端天气条件下严重损害的风险因素。该调查涉及将工程师参加一个站点并根据标准协议检查属性。虽然它们遵循协议,但检查过程永远不会简单。工程师必须在评估财产时行使判断和分析技能。这一过程依赖于工程师的技能和专业知识。这可能导致某些偏见和错误。该探索性定性研究在执行风暴调查时调查了保险风险工程师的传感过程。方便采样和最大变化策略的组合用于从特定保险公司招募参与者。有10个风险工程师,经验不到一年到20年(M = 4.7)接受了采访。此外,我们确定了一个主题专家Rom这个保险公司。主题专家进行了模拟风暴损失预防调查。模拟检验活动是视频录制的。在模拟检查之后,开发了一个半结构性面试协议,以了解风险工程师的传感过程。招募的参与者通过电话采访了90-120分钟。面试响应是录制的音频,并录制被证明(使用数字以识别录音)。然后由外部机构转录的响应进行分析目的。在归纳主题方法之后,分析了定性数据,其中一个最常见的定性数据分析方法之一(Padgett,2011)。第一作者领导了归纳编码过程。编码过程分两步完成。在第一步中,研究人员从转录物中鉴定了从转录物中的开放代码,然后单独编码转录物,并计算协议的百分比(所有转录物中38.4%)。但是,编码人员在讨论后达成了完全共识。在下一步中,基于编码第一步骤的结果更新编码模​​式。研究人员再次编码了转录物,并计算了百分比协议(所有转录物的54%)。然后将成绩单导入到Atlas.ti,定性数据分析软件。使用软件平台中可用的查询功能来识别代码之间的关系。完成分析后,接近中小企业讨论了我们调查结果的有效性。

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