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Assessment of the content that makes up your PhD thesis is critical to ascertain that there are no errors that spoil your efforts. In you leave out spelling and typo errors, or miss out on citations, or get the format wrong, all your hard work can go in vain. Editing and proofreading assistance is critical before you submit the thesis. Send in your documents to our accomplished thesis editors in Chennai for a systematic check of the thesis.

The process of our PhD thesis editing services start with going through the entire text and assessing the language and validity of data presented. If the vocabulary that is unsuitable for the academic report, we suggest changes in the language. If some facts and figures seem to be incongruent, then we will check the source of the same and make corrections.

Research on adaptive thermal comfort initiated after h Heat balance model of thermal comfort developed by Fanger (1972) spurred interest in the field. based on laboratory experiments. Adaptive approach relates indoor design temperature to outdoor meteorological or climatological parameters. This chapter assesses the thermal environmental conditions and then quantifies the thermal adaptation in naturally ventilated buildings located in Jaipur city, India, known for of its composite climate, India. The S study also quantifies the acceptable level of different thermal comfort variables and defines d the acceptable comfort bandwidth for the studied group. Adaptive approach is a person–environment approach and helps to evaluate s the acceptable level of comfort conditions considering the effect of thermal adaptation.

4.1 Field study of thermal comfort

A F field study of thermal comfort was conducted in 30 thirty naturally ventilated buildings in Jaipur city (26.82 oN, 75.80 oE, and + 390 msl) between started from April 11, 2011 and to May 10, 2013 using a questionnaire as shown in (Appendix-A1). Developed The questionnaire was administered to the subjects to record their comfort sensation and preferences of environment variables. Simultaneously, physical measurements of indoor thermal environment variables were also recorded nearer by to the subjects. Measurements of e nvironment parameters were taken at a height of ~1.1 m height from the floor level considering as per class-II protocol of field measurement.

4.1.1 Sample size

The S selection of subjects and quantifiable sample size is an indispensable important parameter in for the field study of thermal comfort. field research. During the study period, a total of 2,859 questionnaire responses were collected between 9:00 a.m. and to 6:00 p.m. local time. Questionnaire collected from the n Naturally ventilated buildings comprised of 63.34 % (N = 1,811) of the responses and the remaining samples relate belong to air -conditioned buildings. and their analysis is carried out in next chapter. Figure 4.1 (a) and (b) depict ed the monthly and seasonal distribution of samples collected in the for present study. field research. The M maximum number of responses (15.6 %) samples were collected during in February month whereas and the minimum questionnaire responses gathered in the December. month. Of the T total responses, 33% % of the samples were collected during form morning sessions (9:00 a.m. to 12:00 p.m.) and whereas 66.7% % (N = 1,227) subject responses accumulated in during the second half, of the study time i.e., 12:010 p.m. to 6:00 p.m.

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Editor’s comment: In the figure above, letter size is too small for comfortable reading. Increase wherever feasible, of course, uniformly. The nos. above bars in (a) are varyingly positioned Centralise them properly. The percentage figures on the bars exceed the bar width in the first four, of course, because of double digit nos. Adjust uniformly not exceeding bar width. The bars in (b) look obese and ugly. Manipulate to make them look beautiful. Again in (b), on x-axis, let it read as ‘Survey samples in different seasons’. Essentially, replace ‘for’ with ‘in’. See any paper in ‘Journal of Fluid Mechanics’ for beauty in figure presentation and uniformity in quality.

Research on adaptive thermal comfort initiated after heat balance model of thermal comfort developed by Fanger (1972) based on laboratory experiments. Adaptive approach relates indoor design temperature to outdoor meteorological or climatological parameters. This chapter assesses thermal environment conditions and then quantifies thermal adaptation in naturally ventilated buildings located in Jaipur city of composite climate, India. Study also quantifies the acceptable level of different thermal comfort variables and defined acceptable comfort bandwidth for the studied group. Adaptive approach is a person–environment approach and helps to evaluates acceptable comfort conditions considering effect of thermal adaptation.

4.1 Field study of thermal comfort

Additional options, reviewed below, allow you to configure FlowType.JS to fit your needs. These options include element size thresholds, font-size thresholds and font-size/line-height ratios. The element size thresholds will stop FlowType.JS from performing its magic once the element reaches beyond specific pixel dimensions. The font-size thresholds will stop FlowType.JS from resizing the text beyond certain font-sizes. Lastly, you have full control over the base font-size and line-height ratios, so that you can set your typography perfectly.

4.1.1 Sample size

Selection of subjects and quantifiable sample size is an indispensable parameter for thermal comfort field research. During the study period, total 2859 questionnaire responses were collected between 9:00 am to 6:00 pm. Questionnaire collected from the naturally ventilated buildings comprised of 63.34 % (N = 1811) and remaining samples belong to air conditioned buildings and their analysis is carried out in next chapter. Figure 4.1 (a) and (b) depicted the monthly and seasonal distribution of samples collected for present field research. Maximum 15.6 % samples were collected in February month whereas minimum questionnaire responses gathered in the December month. Total 33 % samples were collected form morning session (9:00 am to 12:00 pm) whereas 66.7 % (N=1227) subject responses accumulated in second half of the study time i.e. 12:00 pm to 6:00 pm.

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In the second phase, we check grammar and structure. Inconsistencies in sentence structure, logical flow, verbs and tenses, number agreement and other grammatical aspects are corrected.

Lastly, the presentation aspects are checked. In case there is a need to make improvements in tables and modules or illustrations, then we suggest the same. You can get back to our editorial team for an explanation on all comments or suggestions offered in the editing report.

If you are looking for PhD thesis editing services or proofreading services, write an email to us at info@thesishelpcenter.comand get in touch with our thesis editors in Chennai.

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