# I. Introduction ommuting in inclement weather conditions like rain, fog and extremely hot or cold temperature, is difficult for the two wheeler users. It is observed that people switch their mode or their departure time to avoid any potential inconvenience on their way to work. Inclement weather conditions demand better, convenient and economically affordable traveling modes to different socioeconomic classes. There have been studies done on inclement weather travel behavior but they mainly focus on car, bus and rail transit system and were conducted in western countries (Khattak & Palma, 1997) (Khattak A. , 1991) (Sumalee, Uchida, & William, 2011). India has a large population of two-wheeler users and in some cities it accounts for more than fifty percentage of modal split. In Indian medium size cities, due to poor public transportation and shorter trip length, commuters naturally depend on personal mode; mainly twowheelers for their daily commute. It has been observed that the commuter's behavior changes in adverse weather conditions in search of convenient options. A thorough understanding of their character and behavior is essential for the efficient planning and management of transportation systems under such situations. Studies have shown that socioeconomic conditions are dominant factors for mode selection under normal conditions (Williams, 1978). Mode shifts in inclement weather conditions are more profound across different socioeconomic status. In medium size cities like Raipur and Jamshedpur: two wheelers and pedestrians are mostly affected in adverse situations and have large share of the modal split (Authority, 2008) (JJNURM). The prevalent modal shift takes a toll on traffic and transportation networks and they get heavily affected during inclement weather conditions. Socio-economic status; (SES) which is a combined score of income, occupation and education, is generally considered in medical, marketing and social science studies. It has been observed that higher SES is associated with higher rates of automobile ownership and greater fuel affordability, especially when income is higher (Giles-Corti & Donovan, 2002). A study done in Adelaide, Australia, indicates that higher level of education is related to higher frequency of transport (Cerin, Leslie, & Owen, 2009). Though the use of SES is new to transport related studies, its components i.e. income, education and occupation have established significance in mode selection. Education governs knowledge, attitude and value system of individual and their socioeconomic growth potential. Occupation determines the income generation capacity and social standing of an individual. Income helps to understand their purchase power and socioeconomic status (Parashar, 2009) This study aims to understand the relationship between SES and use of two-wheelers in various adverse weather conditions. It also tries to verify the impact of five different criteria namely affordability, comfort, trip duration, maneuverability and reliability on mode selection. # II. The Study a) Obejectives of the study The main objective of this study is to find relationship between SES and use of two-wheelers; both motorized and non-motorized, in inclement weather condition. Further the study attempts to find the importance of five factors affordability, comfort, trip duration, maneuverability and reliability in mode selection in normal and inclement weather conditions. # b) Case Study Areas Two medium size cities; Raipur and Jamshedpur with comparable demographic and climate where chosen for the study. Table 3 c) Main Survey questionaire A close end Questionnaire was prepared for data collection. Respondent's demographic profile, general transportation information, their perspective in ten different weather situations on five factors namely: affordability, comfort, trip duration, reliability and maneuverability were obtained in five point Likert scale. Rating of all the weather conditions were also done with respect to its importance in decision making. Subjective explanation of each weather condition and variable were explained to the respondent in order to obtain reliable data. # d) Data Collection In this study, data were collected through primary survey on 1060 people from Raipur and Jamshedpur. Raipur and Jamshedpur cities have population of 1.12 million and 1.33 million respectively (Authority, 2008) (JJNURM). For the population above 1 million, for 95% confidence interval with 5% margin of error, a sample size of 384 is suggested in sample table. With 80 % response rate 480 responses were collected from each city, in three seasons' winter (February, 2013), summer (May,2013) and monsoon (July, 2013). Out of the 480 responses in each city, 430 in Raipur and 444 in Jamshedpur was found valid for analysis. After conducting surveys at Raipur and Jamshedpur in three different seasons, data were coded and entered in SPSS19 for analysis. Data on income, occupation and education were collected on SES scale at the time of survey and then SES score was computed to distribute the sample in different socioeconomic classes and analyses were performed. # III. Results # a) Kuppuswamy's SES and mode of travel for work trips After collation of data it was observed that upper lower has highest number of cyclist for work trips. Apart from motorcycle / automated two wheeler, Raipur's Upper middle and lower middle class uses auto rickshaw and bus for commuting whereas, in Jamshedpur auto rickshaw users were from lower middle and upper lower class. Use of motorcycle/ automated two-wheeler were recorded in every class except lower in both the cities, whereas car usage was observed in upper, upper middle and lower middle class. Lower class people who own a bicycle in both the cities depended on it for daily commute. When survey was conducted it was observed that people change their mode in inclement weather conditions but after the SES categorization and graph plotting it became evident that mode change varies among different SES classes for same inclement weather conditions. From the Table 7 we can observe that upper class people in Raipur are more inclined to change their mode in adverse weather than Jamshedpur. Upper middle class showed similar modal shift pattern in both the cities where as lower middle and upper lower class of Raipur shift modes more frequently than Jamshedpur. In order to find the association of mode change and SES, Chi -Square test of independence was performed on Kuppuswamy's SES and Mode change in nine given inclement weather situations. For this the null hypothesis and research hypothesis were as follows: H0 = No relationship exists between Kuppuswamy SES and mode change in the given nine different inclement weather conditions from the normal condition. H1 = Relationship exists between Kuppuswamy SES and mode change in the given Nine different inclement weather conditions from the normal condition. Fair Table 6 list the Chi-square value and outcome of the test performed. In some Socio economic studies correlation of 0.26 to 0.50 are considered high when they occur in multiple regression models where one variable is calculated by the use of more than one variable. Cramer's V value indicates the correlation and p value in Pearson Chi square represent the level of significance. It indicates that in all the cases except hot, cold and cold wave in Jamshedpur, there is significant relation of mode change with SES. Considering other external factors like, availability of other options, willingness to change, and combined effect of all the socioeconomic classes in analysis the small value of association is significant. Raipur has higher value of correlation in every weather conditions as compared to Jamshedpur. It has been observed that maximum positive correlation was found in heavy rain situation in Raipur followed by very heavy rain. Further Table 7 Indicates, SES class wise percentage of modal shift in all inclement weather condition. This indicates that modal shift in any weather condition is maximum in upper class followed by upper middle; lower middle and upper lower. It also indicates that people tend to shift their modes more in very heavy and heavy rain situations. Further, they are more likely to shift their mode in Heat wave condition in Raipur and Cold with precipitation condition in Jamshedpur. Mode shift in hot and cold weather is found to be marginal. From the analysis it is evident that Raipur's modal shift is more sensitive to inclement weather as compared to Jamshedpur. From both the tables it can be concluded that Hot and cold weather does not impact the mode choice decision, whereas hot -humid, light rain and cold wave have moderate impact in both the cities. Heat wave, heavy rain, very heavy rain and cold with precipitation have significant impact on the choice of travel mode. Year 2016 Affordability is found to be correlated with a significance level of 0.05 to mode change in all the nine inclement weather conditions in Raipur and eight in Jamshedpur excluding hot days. The negative sign in the values indicates the negative correlation which states that as the importance of affordability decreases, the number of mode change increases. In Raipur affordability has maximum impact in cold with precipitation whereas, in Jamshedpur it's in light rain conditions. Across the different weather conditions affordability is observed showing significant influence on the choice of mode change in heat waves, heavy rain, very heavy rain, hot humid and cold wave in Raipur whereas in Jamshedpur it has significant impact in light rain ,heavy rain, cold with precipitation and heat wave conditions. J © 2016 Global Journals Inc. (US) After affordability, Comfort was found to be the second important factor in mode change in both the cities. It has positive correlation which indicates the increase in the value of comfort factor increases the chances of mode change across nine inclement weather conditions. In Raipur correlation was observed at the significance level of 0.05 in all the inclement weather conditions highest in heavy rain condition. Whereas in Jamshedpur, hot and hot humid conditions were excluded from the impact of comfort on choice of mode change, highest been in very heavy rain condition. Trip duration is the third important factor in mode change in Raipur except in hot day condition, but it was not relevant in Jamshedpur. In Raipur the highest correlation was observed in light rain and cold with precipitation. Reliability also seemed to be a deciding factor in Raipur and Jamshedpur but it has very less correlation and only statistically significant at 0.05 level of significance in cold with precipitation, very heavy rain, heat wave and hot humid conditions in Raipur and cold with precipitation in Jamshedpur. An increase in importance of reliability increases the chances of mode change. Maneuverability was not an important factor in both the cities. It only had small significant correlation in cold with precipitation in Raipur and hot humid in Jamshedpur. # d) Importance of five Factors Across Different Socio-Economic Classes in Normal and Nine Inclement Weather Conditions. To assess the importance of five factors across socio-economic groups, weighted average method of Likert scale was adopted. In this, the five choices within each factor was given weight from 1 to 5, assuming 1 being 'not at all important' to 5 being 'very much important' with equal interval. Then the weighted value for all the factors were calculated by multiplying the frequencies of responses to their assigned weights and then summing all the value in a factor to get a total score. These scores were then compared to get the importance of different factors according to user in different inclement weather conditions. Though the importance solely doesn't lead to mode change, but provides a perspective towards importance of five factors in respective weather condition according to different socioeconomic classes. It was observed that in normal condition affordability is the most important factor across the socioeconomic classes in both the cities. Comfort stood second in Raipur in all the cases where as maneuverability was seen to be second important concern in Upper lower and Lower classes of Jamshedpur. This may be because, after affordability, it was the second most important concern for these groups as they travel mostly by cycles. Maneuverability was the third important issue of Raipur commuters in Upper, Upper lower, and lower class. Trip duration and then Reliability scored fourth and fifth positions respectively on the scale of importance in Raipur and Jamshedpur in normal weather conditions. In lower class only affordability was most important factor and rest factors were found equally important. In hot day inclement weather condition, similar trends were observed regarding affordability in both the cities. Comfort was second important factor in Raipur in Upper class, Lower middle and lower class. In Jamshedpur maneuverability was mostly in second position of importance except in lower middle class and lower class where comfort and reliability were second important factor, respectively. Trip duration and reliability stood fourth and fifth, respectively. Lower class in Raipur showed similar preferences like normal conditions, whereas in Jamshedpur affordability was followed by reliability and maneuverability then comfort and trip duration were least important. In hot humid inclement condition, affordability was again most important factor except in upper class in Jamshedpur where it stood third in the line of importance. Maneuverability was second most important factor except in upper class in Raipur, where it was replaced by comfort which was third important factor in this climate across all the classes. Trip duration and reliability came fourth and fifth, respectively in all classes. Raipur lower class preferred comfort after affordability and then they gave equal importance to trip duration, reliability and maneuverability. In Jamshedpur after affordability comfort, trip duration and maneuverability were found to be equally important and reliability stood last. In heat wave condition, affordability was perceived to be the most important factor except in upper class in both the cities, where comfort took its place and affordability stood third and fourth in Raipur and Jamshedpur, respectively. In Jamshedpur's upper middle class, maneuverability was most important factor for the commuters, though it was second important factor, across all the classes except in upper midd le and lower class in Raipur, where it stood third. Trip duration and reliability came fourth and fifth, respectively. In light rain conditions, affordability was again the most important factor in all the classes except in upper class in Jamshedpur where it preceded comfort. Maneuverability was second important factor across all the remaining classes in both the cities. In general comfort came third, trip duration fourth and reliability fifth. In lower class comfort was the second most important factor in Raipur followed by reliability, then maneuverability and finally trip duration. Whereas maneuverability is the second important factor after In heavy rain conditions affordability was still the most important factor in consideration except in upper classes in both the cities. It was also replaced by maneuverability in upper middle and lower middle class in Jamshedpur. Comfort which was the first important factor in upper classes was considered as second important factor in upper lower and lower class in Raipur and upper middle in Jamshedpur, in rest of the classes, maneuverability was voted second important factor. Trip duration was third important factor in upper classes where affordability was fourth important factor. But in rest of the classes, trip duration stood fourth and reliability fifth. In very heavy rain inclement weather condition again comfort was most important factor across upper class commuters in both the cities, and upper middle class in Raipur in rest of the cases it stood second and affordability was prime factor except in Jamshedpur's upper middle, lower middle and upper lower classes in rest of the cases. Maneuverability stood third, trip duration fourth and reliability fifth. In cold weather conditions, affordability was the most important factor in user's perspective, followed by comfort in upper class and maneuverability in rest. Trip duration was seen to be the second important factor in case of Jamshedpur's upper middle class. In rest of the classes, trip duration was fourth and reliability stood fifth in importance. In Raipur lower class commuters' perspective only affordability was important and the rest was rated same in the second position. In Jamshedpur, lower class commuter rated comfort as the second important factor after affordability, then reliability, and finally trip duration and maneuverability shared the least importance. In cold wave condition across all the socioeconomic classes in both the cities, affordability was considered the most important factor followed by comfort in upper class and lower class in both the cities. Maneuverability was the second most important factor in rest of the classes. Trip duration came fourth and reliability, fifth on the importance scale. In cold with precipitation inclement weather conditions, comfort was the priority factor in upper class in both the cities and in upper middle class of Jamshedpur in rest of cases affordability was still the major factor for consideration, except in lower middle class were maneuverability was a pressing issue. Trip duration came fourth and reliability, fifth on the importance scale. # IV. Conclusion and Inferences After a thorough analysis it is found that affordability is the most important factor in both the cities except in few conditions like heat wave, rain and cold with precipitation, comfort is the most important factor for upper class. Decrease in the importance of affordability resulted in increase in choice of mode change. It is the key factor in lower class, which prevented any mode change. Comfort is the second important factor perceived by the commuters, it is found to be slightly more important in Raipur than Jamshedpur. Importance of comfort in choice of mode however decreased down the socio economic groups. While trip duration seems statistically significant, its impact on mode change is less. This can be contributed to the fact that both the cities are medium size cities with average work trip length in terms of time; 19 minutes and 30 seconds in Raipur and 19 minutes in Jamshedpur. Short delay has considerably less important than other factors. For this study, private two wheelers are considered, Reliability is statistically significant in some case but not of much importance in users' perspective, because private two wheelers are the prime mode and its predictability and regularity are not issues in most of the cases. Maneuverability though seemed important in users' perspective is not statistically significant in inclement weather except cold and precipitation in Raipur and hot humid climate in Jamshedpur. This may be due to the fact that two wheelers are easy to manure in heavy traffic and the case study areas are plain sites, with respect to terrain. Though the above criteria are important for good trip, these do not impact choice of mode of travel in these cities. It is also noted that hot day is treated as normal day in both the cities with minimal changes. Even cold day in Jamshedpur had similar impact as hot day and normal day. Heavy rain has seen to exercise highest influence on the choice of mode change followed by very heavy rain, may be because of the reason that people tend to change other travel decisions like time of travel in extreme weather condition rather than mode. Light rain and cold with precipitation were also important in Raipur. Highest correlation of SES with mode change was observed cold with precipitation conditions in Jamshedpur, followed by very heavy rain, heavy rain and heat waves. This research consolidates the understanding regarding the factors influencing the choice of mode in transport across different socio-economic groups in inclement weather conditions in medium sized Indian cities. These results after further research can be utilized for forecasting two-wheeler transportation in inclement weather conditions for proper management of traffic. s1345689![Fig. 1 :](image-2.png "Raipur' s Fig. 1 :Fig. 3 :(Fig. 4 :Fig. 5 :Fig. 6 :Fig. 8 :Fig. 9 :") 1Fourteen variables are found important in modeselection, which are combined to form five factors,namely, Affordability, Comfort, and Trip duration,Reliability and Maneuverability. Criteria for modeselection are given in table 1. 2Year 2016Sl. NoStudy Weather description inScientific descriptionSummerWhenever,themaximumtemperature remains 40ºC or moreand minimum temperature is 5º C1.Hot dayor more above normal, it may be defined as Hot Day, provided itdoesn't satisfy the heat wave criteriagiven below. (Indian metrologicaldepartment Pune)2.Hot-humidRelative humidity of 60% or greater.3.Heat WaveHeat wave need not be considered till maximum temperature of astation reaches at least 40º C forPlains and at least 30º C for Hillyregions.a)Whennormalmaximumtemperature of a station is less thanor equal to 40º C. Heat WaveDeparture from normal is 5º C to 6ºstation reaches at least 40º C for Description of Raipur and Jamshedpur (Authority, 2008) (Jjnurm)Raipur AUJamshedpur AUPopulation1,122,5551,337,131Percentage of work force31.1125.68(%) in urban area, statewiseClimateTropical WetTropical Wet andand DryDry ClimateClimateElevation (m)298.15159Max temperature ( o C)4849Min Temperature( o C)51Precipitation(mm)13001200annuallyPercentageoftwo-6675wheeler 4ModeUpperUpper MiddleLower middleUpper lowerLower (Unit)Cycle0554768Automatedtwo37145100230WheelerCar2336100Auto rickshaw39950Bus4131530Cycle Rickshaw00000Walk00100 5ModeUpper UpperLowerUpperLowerMiddlemiddlelowerCycle03539710Automated15139126220twoWheelerCar843100Auto01660rickshawBus01120Cycle00000RickshawWalk00000b) Kuppuswamy's SES and Mode Change in DifferentWeather Conditions 6Inclement weatherconditionsPearson Chisquare valueRaipur Phi and Cramer's V valueRelationshipPearson Chisquare valueJamshedpur Phi and Cramer's V valueRelationshipHot?2 (4,N=430) =2.87,.082No?2 (4,N=444).062No relationp=.58=1.71,p=.789Year 2016Hot humid Heat wave?2 (4,N=430) =36.57, p<.001 ?2 (4,N=430) =51.99,.292 .348Fair Moderate?2 (4,N=444) =14.69, p=.005 ?2 (4,N=444).182 .258Little Fairp<.001=29.52,46p<.001Light rain?2 (4,N=430).350Moderate?2 (4,N=444).165LittleGlobal Journal of Researches in Engineering J ue III Version I ( ) Volume XVI IssHeavy rain Very heavy rain Cold Cold wave precipitation Cold with=52.592, p<.001 ?2 (4,N=430) =65.364, p<.001 ?2 (4,N=430) =56.294, p<.001 ?2 (4,N=430) =2.096,p=.718 ?2 (4,N=430) =18.89, p<.001 =46.059, p<.001 ?2 (4,N=430).390 .362 .070 .210 .327Moderate Moderate No relation Little Moderate=12.14, p=.016 ?2 (4,N=444) =34.105, p<.001 ?2 (4,N=444) =36.451, p<.001 ?2 (4,N=444) =.93, p=.92 ?2 (4,N=444) =9.259, p=.055 =37.918, p<.001 ?2 (4,N=444).277 .287 .046 .144 .292Fair Fair No relation No relation 7Inclement weatherRaipur SES ClassJamshedpur SES ClassconditionsUpperUpper middleLower middleUpper lowerLowerUpperUpper middleLower middleUpper lowerlowerHot2.70.70.700000.60.30Hot humid37.810.88.53.202012.14.92.60Heat wave64.924.318.39.5033.326.211.65.30Light rain43.210.17.72.1026.715.68.56.10Heavy rain67.627.014.18.4053.330.512.811.40Very heavy rain73.035.824.611.6053.332.612.812.30Cold2.71.41.40000.70.600Cold wave18.93.51.15.506.75.00.60.90Cold with precipitation56.827.718.36.3046.727.010.46.10c) Importance of five factors in mode change acrossManeuverability in nine different inclement weathernine inclement weather conditions.conditions. Further the graphs from 1 to 10 indicate theTable 8 Indicates the Spearman rho correlationweighted value of all the five factors acrossbetween mode change and five factors namelyKuppuswamy's Socioeconomic Classes.Affordability, Comfort, Trip duration, Reliability, and 8InclementRaipurJamshedpurweatherconditionsAffordabilityComfortTrip durationReliabilityManeuverabilityAffordabilityComfortTrip durationReliabilityManeuverabilityHot-.103.101 .071.002-.047.038 .087 .008 -.031 -.023Hot Humid-.555.332 .110.104-.002 -.268 .164 .034 -.042 -.107Heat Wave-.626.315 .174.136.039-.365 .095 -.004 .080 -.052Light Rain-.557.389 .259 -.059.094-.469 .303 .007 -.001 -.013Heavy Rain-.625.445 .102 -.020.027 -. 429 .218 .003.042 -.052Very Heavy-.588.430 .155.140.025-.359 .274 -.015 .069 -.024RainCold-.164.186 .110.032.001-.130 .096 -.045 -.042 .004Cold Wave-.424.282 .098 -.067 -.047 -.188 .131 -.006 -.002 .012Cold with-.644.376 .214.151.118-.376 .189 -.039 .116.063Precipitation © 2016 Global Journals Inc. (US) ## Global Journals Inc. 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